Showing posts with label Pipeline. Show all posts
Showing posts with label Pipeline. Show all posts

Saturday, July 27, 2013

Tata Showcases Deepwater Pipeline Solutions at OTC

Tata Showcases Deepwater Pipeline Solutions at OTCTata Steel pipe laying. Source: Tata Steel

Tata Steel will demonstrate its ability to deliver pipeline solutions to some of the world's most challenging and complex projects at this year's Offshore Technology Conference (OTC) in Houston May 6-9 2013.

As global demand for key energy sources increases and the search for hydrocarbons takes the industry into deeper and more difficult environments, Tata Steel products will continue to play a vital part in their extraction and distribution offshore, meeting even the most demanding of offshore line pipe requirements.

The company has an extensive track record in every stage of hydrocarbon recovery, from exploration and drilling, oil and gas production and transportation through to refining, processing and developing renewable technologies.

Tata Steel recently completed a $150 million (GBP 100 million) project to provide pipe for the Discovery Producer Services L.L.C. (Discovery) gas pipeline in Keathley Canyon, Gulf of Mexico. Discovery is a 60:40 joint venture between Williams Partners L.P. and DCP Midstream Partners L.P. 

Tata Steel supplied Discovery's Keathley Canyon ConnectorTM with 214 miles (345 kilometers) of 20-inch diameter submerged arc welded line pipe, weighing more than 110,000 metric tonnes, which was manufactured at the company's 42-inch mill in Hartlepool, UK.  The pipe was laid at water depths of up to 7,380 feet (2,250 meters) and is designed to meet the required specification for deepwater conditions.

Richard Broughton, commercial manager for Pipelines & Petrochemical at Tata Steel, said: "Tata Steel applies decades of experience and expert knowledge to deliver strong, reliable and innovative pipeline solutions for challenging and complex projects around the world.

"At OTC this year, we will be showcasing our proven success in providing line pipe for deepwater conditions in the Gulf of Mexico, Brazil, the UKCS and Russia. Recent contracts have been awarded based on our excellent dimensional tolerance control, enabling us to offer enhanced deepwater anti-collapse properties, easy fit-up and fast lay rates."

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Monday, June 24, 2013

Plains All American To Build New Oil Pipeline in Texas

Plains All American Pipeline LP is building a new pipeline to bring oil from an increasingly fruitful West Texas field to the Corpus Christi and Houston refining markets, the company said Monday.

The pipeline, called the Cactus pipeline, is expected to start shipping up to 200,000 barrels of day of oil in the first quarter of 2015. It would be the latest venture allowing oil producers in West Texas' Permian Basin to send their crude directly to the U.S. Gulf Coast refining belt.

Plains expects the 310-mile pipeline, with an expected cost of up to $375 million, to carry sweet and sour crude to Texas coast. By avoiding the oil transport hub in Cushing, Okla., producers hope to avoid the glut there that has helped depress prices on oil from Cushing.

Plains said it has entered into a letter of intent with a third party regarding a long-term commitment for a majority of the Cactus pipeline's capacity and is in discussions with several potential shippers for the remaining capacity. The pipeline company did not identify the company which has made the commitment or the companies with which Plains has had negotiations.

Several companies have been attracted by the idea of delivering West Texas crude directly to the refineries that dot the U.S. coast of Gulf of Mexico. Sunoco Logistics Partners started shipping such crudes to the Houston area on its Permian Express pipeline in the first quarter. Around the same time, Magellan Midstream Partners LP (MMP) reversed its Longhorn Express pipeline to ship crude from the Permian Basin to Houston.

Plains noted that crude oil delivered through the Cactus pipeline will have access to rail-loading capacity at the Gardendale, Texas, station operated by Plains All American and access to the Eagle Ford barge-dock facility in the Corpus Christi area.

The pipeline company added that the Cactus pipeline capacity can be increased as demand warrants.

Plains has experienced strong demand as it benefits from a huge boost in the U.S. supply of onshore oil.

The company, which transports, stores and sells oil, receives fees for many of its services, so it is less affected by the volatility of oil and gas prices.

Copyright (c) 2013 Dow Jones & Company, Inc.

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Thursday, June 20, 2013

Coast Guard: Shell Pipeline Spills Oil Into Houston Area Bayou

An estimated 50 barrels of oil spilled from a pipeline operated by a subsidiary of Royal Dutch Shell PLC into a waterway outside Houston, according to the U.S. Coast Guard.

Shell clean-up crews were working to clear the crude out of Vince Bayou, a waterway that connects to the Houston Ship Channel, which leads into the Gulf of Mexico, said Coast Guard Petty Officer Steven Lehman. The spill was contained but the total amount of oil was still being verified, Officer Lehman said.

"That's a very early estimate--things can change," Officer Lehman said.

On April 3, about 700 barrels were found to have leaked from the West Colombia pipeline because of an unknown cause, with up to 60 of those barrels emerging in the bayou, Shell spokeswoman Kim Windon said. The pipeline had been shut down and isolated on March 29 after alarms alerted the company that oil may have leaked from the line.

Copyright (c) 2013 Dow Jones & Company, Inc.

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Wednesday, May 29, 2013

STATS Group in BP Pipeline Isolation Operation

Scottish oilfield services firm STATS Group reported Monday on a pipeline isolation operation it has completed for BP in the North Sea.

The firm said it has isolated a 24-inch oil export line on BP's Marnock ETAP spur line in the central North Sea in order to allow the replacement of a 16-inch valve.

STATS said that it deployed its 24-inch Remote Tecno Plug to isolate a pressure of 60 Bar, providing safe working conditions to allow valve replacement activities.

Steven Byers, STATS Group's isolation services managers, commented in a statement:

"The project was a success and enabled BP to complete maintenance works which were reliant on the plug providing an isolation. The client was happy with our flexible approach and willingness to interact to achieve the best outcome possible during a time critical window."

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Monday, May 27, 2013

STATS Group in BP Pipeline Isolation Operation

Scottish oilfield services firm STATS Group reported Monday on a pipeline isolation operation it has completed for BP in the North Sea.

The firm said it has isolated a 24-inch oil export line on BP's Marnock ETAP spur line in the central North Sea in order to allow the replacement of a 16-inch valve.

STATS said that it deployed its 24-inch Remote Tecno Plug to isolate a pressure of 60 Bar, providing safe working conditions to allow valve replacement activities.

Steven Byers, STATS Group's isolation services managers, commented in a statement:

"The project was a success and enabled BP to complete maintenance works which were reliant on the plug providing an isolation. The client was happy with our flexible approach and willingness to interact to achieve the best outcome possible during a time critical window."

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Sunday, May 5, 2013

Georgian Govt OKs Mtsare Khevi Pipeline for Frontera

Frontera Resources Corp. announced that it has received approval to proceed with the installation of the 5-mile (8-kilometer) pipeline and related facilities within the Mtsare Khevi field from the Georgian government. As previously announced, equipment required for the gas pipeline has been procured, mobilized, and stacked in the field and in key staging areas. First gas production is now expected within 120 days. The infrastructure will accommodate production from currently shut-in wells, and the Company is targeting production of approximately 2 million cubic feet per day of gas (57,000 cubic meters per day).

The Mtstare Khevi Field is situated within a larger play area of approximately 31 square miles (80 square kilometers) referred to as the Mtsare Khevi Gas Complex and encompasses gas targets found between 984 and 16,404 feet (300 and 5,000 meters) in depth. Based on Frontera's internal estimates, analysis has revealed significant gas potential throughout this area of up to approximately 1.2 trillion cubic feet of gas in place (28 billion cubic meters) and up to approximately 700 billion cubic feet of recoverable gas (19.8 billion cubic meters). An integrated geologic study, including data from a number of existing wells within the area such as the V-#18 well, previously referenced in the Company's Jan. 31, 2012 announcement, is currently in progress to better understand and define the extent of this potential throughout the greater Mtsare Khevi Gas Complex.

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Monday, April 29, 2013

Gregorian Govt OKs Mtsare Khevi Pipeline for Frontera

Frontera Resources Corp. announced that it has received approval to proceed with the installation of the 5-mile (8-kilometer) pipeline and related facilities within the Mtsare Khevi field from the Georgian government. As previously announced, equipment required for the gas pipeline has been procured, mobilized, and stacked in the field and in key staging areas. First gas production is now expected within 120 days. The infrastructure will accommodate production from currently shut-in wells, and the Company is targeting production of approximately 2 million cubic feet per day of gas (57,000 cubic meters per day).

The Mtstare Khevi Field is situated within a larger play area of approximately 31 square miles (80 square kilometers) referred to as the Mtsare Khevi Gas Complex and encompasses gas targets found between 984 and 16,404 feet (300 and 5,000 meters) in depth. Based on Frontera's internal estimates, analysis has revealed significant gas potential throughout this area of up to approximately 1.2 trillion cubic feet of gas in place (28 billion cubic meters) and up to approximately 700 billion cubic feet of recoverable gas (19.8 billion cubic meters). An integrated geologic study, including data from a number of existing wells within the area such as the V-#18 well, previously referenced in the Company's Jan. 31, 2012 announcement, is currently in progress to better understand and define the extent of this potential throughout the greater Mtsare Khevi Gas Complex.

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Sunday, April 28, 2013

US Coast Guard: Barge, Pipeline Burn After Crash; Oil Slick Visible

A fire is still burning nearly a full day after a tug pushing a barge crashed into a pipeline in a bayou south of New Orleans Tuesday evening, but the Coast Guard said there is no visible oil in the water.

Earlier Wednesday, the Coast Guard had said a mile-long sheen was visible near the site of the incident, but it now says that was actually ash from the burn of the liquefied gas in the pipeline.

The pipeline fire is now about 30% smaller than it was earlier in the day, the Coast Guard said in a news release.

The barge, which the Coast Guard said is still intact, was carrying 2,215 barrels of oil when the tug crashed into the pipeline in Bayou Perot in Lafourche Parish, about 30 miles south of New Orleans, according to the Coast Guard.

The pipeline, which transports liquefied petroleum gas, is owned by Chevron Corp. and the tug by Settoon Towing LLC, according to the Coast Guard.

A spokesman for Chevron said the company has shut in the pipeline, which connects the Venice, La., gas plant to the pump station in Paradis, La. The company said products are being rerouted to avoid the pipeline, and the company has mobilized emergency crews to help with the response.

The Coast Guard said all crew members were able to exit the tug, though the captain is reported to have suffered second- and third-degree burns.

ES&H, an oil-spill response organization, has deployed thousands of feet of containment boom, a skimmer, and several response vessels, the Coast Guard said. The Coast Guard will fly over the area Wednesday afternoon to assess the damage.

Copyright (c) 2012 Dow Jones & Company, Inc.

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Saturday, April 27, 2013

US Coast Guard: Barge, Pipeline Burn After Crash; Oil Slick Visible

A fire is still burning nearly a full day after a tug pushing a barge crashed into a pipeline in a bayou south of New Orleans Tuesday evening, but the Coast Guard said there is no visible oil in the water.

Earlier Wednesday, the Coast Guard had said a mile-long sheen was visible near the site of the incident, but it now says that was actually ash from the burn of the liquefied gas in the pipeline.

The pipeline fire is now about 30% smaller than it was earlier in the day, the Coast Guard said in a news release.

The barge, which the Coast Guard said is still intact, was carrying 2,215 barrels of oil when the tug crashed into the pipeline in Bayou Perot in Lafourche Parish, about 30 miles south of New Orleans, according to the Coast Guard.

The pipeline, which transports liquefied petroleum gas, is owned by Chevron Corp. and the tug by Settoon Towing LLC, according to the Coast Guard.

A spokesman for Chevron said the company has shut in the pipeline, which connects the Venice, La., gas plant to the pump station in Paradis, La. The company said products are being rerouted to avoid the pipeline, and the company has mobilized emergency crews to help with the response.

The Coast Guard said all crew members were able to exit the tug, though the captain is reported to have suffered second- and third-degree burns.

ES&H, an oil-spill response organization, has deployed thousands of feet of containment boom, a skimmer, and several response vessels, the Coast Guard said. The Coast Guard will fly over the area Wednesday afternoon to assess the damage.

Copyright (c) 2012 Dow Jones & Company, Inc.

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Friday, April 26, 2013

Gregorian Govt OKs Mtsare Khevi Pipeline for Frontera

Frontera Resources Corp. announced that it has received approval to proceed with the installation of the 5-mile (8-kilometer) pipeline and related facilities within the Mtsare Khevi field from the Georgian government. As previously announced, equipment required for the gas pipeline has been procured, mobilized, and stacked in the field and in key staging areas. First gas production is now expected within 120 days. The infrastructure will accommodate production from currently shut-in wells, and the Company is targeting production of approximately 2 million cubic feet per day of gas (57,000 cubic meters per day).

The Mtstare Khevi Field is situated within a larger play area of approximately 31 square miles (80 square kilometers) referred to as the Mtsare Khevi Gas Complex and encompasses gas targets found between 984 and 16,404 feet (300 and 5,000 meters) in depth. Based on Frontera's internal estimates, analysis has revealed significant gas potential throughout this area of up to approximately 1.2 trillion cubic feet of gas in place (28 billion cubic meters) and up to approximately 700 billion cubic feet of recoverable gas (19.8 billion cubic meters). An integrated geologic study, including data from a number of existing wells within the area such as the V-#18 well, previously referenced in the Company's Jan. 31, 2012 announcement, is currently in progress to better understand and define the extent of this potential throughout the greater Mtsare Khevi Gas Complex.

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Wednesday, April 17, 2013

Brent Pipeline System Restarts after 5-Day Shutdown

TAQA Bratani reported late Thursday morning (UK time) that the Brent pipeline system in the UK North Sea has restarted after a temporary shutdown March 2.

The company said that it has begun the process of restoring the flow of an estimated 80,000 barrels of oil per day (bopd) into the Brent pipeline system.

The pipeline system, operated by TAQA, was shut down Saturday after what the company described as a "small hydrocarbon release" was detected within one of the Cormorant Alpha platform's legs. Soon afterwards, TAQA removed 71 non-essential personnel from the platform as a precaution.

The leak was the second such incident to involve a particular leg of the Cormorant Alpha platform. In mid-January the Brent Pipeline System was shut down for several days after hydrocarbons were detected in the leg.

But TAQA said Thursday that investigations have found that there is no connection between the pipeline system and the pipeline involved in the release.

Cormorant Alpha usually handles approximately 90,000 bopd, feeding the Brent Pipeline System. According to Oil & Gas UK the fields that use the pipeline system account for around 10 percent of UK production.

A former engineer, Jon is an award-winning editor who has covered the technology, engineering and energy sectors since the mid-1990s. Email Jon at jmainwaring@rigzone.com.

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Thursday, April 11, 2013

Iraq Begins Design of $18B Oil Pipeline to Jordan

AMMAN - Oil-rich Iraq has started technical work on a planned $18 billion oil-export pipeline from Basra in southern Iraq to the Jordanian port of Aqaba on the Red Sea, bypassing the Strait of Hormuz, senior Iraqi oil officials said Thursday.

If realized, the pipeline would deliver a significant export outlet for Iraq's growing crude-oil production, which rose by 15% last year as the country focused on rejuvenating its energy sector. It could also provide an alternative to seaborne transport of oil through the Strait of Hormuz after Iranian officials threatened last year that they could block the potential chokepoint if the West didn't ease pressure on the country over its nuclear program.

Iraq has signed some 11 post-war oil deals, three gas agreements, and four oil and gas exploration contracts with international energy companies.

The first phase of the 1,680-kilometer oil pipeline will export some 1 million barrels a day from Basra, which pumps around 2.3 million barrels a day, or about 70% of Iraq's total oil production, Basra Governor Khalid Abdul Samad Khalaf said at an Iraqi conference in Amman.

The second phase will export a further 1.25 million barrels a day to the Syrian Banias port in the Mediterranean, said Jamal Faleh Hassan, head of designs section at the State Company for Oil Projects, an affiliate of the Iraqi oil ministry.

"Our priority now is to set up the part of the pipeline which goes to Aqaba in Jordan, while the part to Syria has been delayed because of the [security] situation there," he said.

Pipeline developers from the U.S., Canada, Germany, Japan and China attended the Amman conference, organizers said.

The Iraqi oil ministry has already awarded Canadian consultant SNC-Lavalin Group Inc. (SNC.T) a contract worth between $13 million and $14 million to carry out front-end engineering designs, said Mr. Hassan. The company is expected to finish the FEED work in the next three months, he said.

The 680-kilometer section of the pipeline located inside Iraq--which would extend from Basra to Haditha, northwest of Baghdad in the western Anbar province near the Jordan border--will be financed by the Iraqi government, said Sabah Abdul Kadhim al-Saedi, deputy head of the contracts office at the Iraqi oil ministry.

The Iraqi and Jordanian governments will choose investors to fund, build and operate the remaining 1,000 kilometers inside Jordan.

A gas pipeline will be built parallel to the oil pipeline to supply gas to power stations that will be constructed along the route. Some three pumping stations and three power stations will be built in Iraq to operate the pipeline. In the Jordan section, there will also be three pumping stations, Mr. Hassan said.

The project will also build storage facilities near Basra and Haditha with a total capacity of 28 million barrels, he said.

The gas-pipeline section inside Iraq will have a transport capacity of 350 million cubic feet a day to feed power stations operating the pipeline in Iraq.

The Jordan section will handle some 258 million cubic feet a day. About 100 million cubic feet a day of that gas will go to Jordan for domestic use while the remainder will be used to operate the pipeline inside Jordan.

Out of the 1 million barrels a day of oil exports, about 150,000 barrels a day will go to Jordan for domestic use as the Jordanian government has requested, Mr. Hassan said.

Jordan is dependent on imported oil and gas, as 96% of its needs come from other markets. The pipeline, if built, could easily meet all of Jordan's needs.

Last year, the Paris-based International Energy Agency estimated that Iraq would be able to pump up to 6.1 million barrels a day in 2020 and 8.3 million barrels a day in 2035. Iraq said it would be able to reach 8 million to 9 million barrels a day in 2020.

The bulk of Iraqi crude oil exports are handled by the southern oil terminals in the Gulf, where Iraq is pumping between 2.1 million and 2.2 million barrels a day while 350,000 to 400,000 barrels a day are handled by the Iraq-Turkey pipeline to the Mediterranean port of Ceyhan.

Copyright (c) 2012 Dow Jones & Company, Inc.

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Tuesday, April 9, 2013

Subsea 7 Wins Talisman Pipeline Contract

Oilfield services firm Subsea 7 announced Wednesday that it has been awarded a contract to install pipeline bundles at Talisman Sinopec Energy UK's Montrose Area Redevelopment Project.

The contract, valued at $285 million, will see Subsea 7 deliver two three-mile pipeline bundles that will tie back the Cayley field to the new bridge-linked platform (BLP) at the Montrose facility. The contract scope also includes the procurement, fabrication and installation of an 11-mile production pipeline, water injection pipeline, gas lift pipeline and control umbilical to tie back the Shaw field to the BLP.

Subsea 7 said that engineering and project management will begin immediately from the firm's Aberdeen office with offshore operations starting in 2014.

Steph McNeill, Subsea 7's Vice President for UK and Canada, commented in a statement:

"This contract award continues our long-standing business relationship with Talisman. The complexity of this project further illustrates our bundle system’s unique ability to offer a highly cost-effective single product which neatly integrates all necessary pipelines and control lines."

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Friday, April 5, 2013

Subsea 7 Wins Talisman Pipeline Contract

Oilfield services firm Subsea 7 announced Wednesday that it has been awarded a contract to install pipeline bundles at Talisman Sinopec Energy UK's Montrose Area Redevelopment Project.

The contract, valued at $285 million, will see Subsea 7 deliver two three-mile pipeline bundles that will tie back the Cayley field to the new bridge-linked platform (BLP) at the Montrose facility. The contract scope also includes the procurement, fabrication and installation of an 11-mile production pipeline, water injection pipeline, gas lift pipeline and control umbilical to tie back the Shaw field to the BLP.

Subsea 7 said that engineering and project management will begin immediately from the firm's Aberdeen office with offshore operations starting in 2014.

Steph McNeill, Subsea 7's Vice President for UK and Canada, commented in a statement:

"This contract award continues our long-standing business relationship with Talisman. The complexity of this project further illustrates our bundle system’s unique ability to offer a highly cost-effective single product which neatly integrates all necessary pipelines and control lines."

Generated by readers, the comments included herein do not reflect the views and opinions of Rigzone. All comments are subject to editorial review. Off-topic, inappropriate or insulting comments will be removed.

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Wednesday, April 3, 2013

Subsea 7 Wins Talisman Pipeline Contract

Oilfield services firm Subsea 7 announced Wednesday that it has been awarded a contract to install pipeline bundles at Talisman Sinopec Energy UK's Montrose Area Redevelopment Project.

The contract, valued at $285 million, will see Subsea 7 deliver two three-mile pipeline bundles that will tie back the Cayley field to the new bridge-linked platform (BLP) at the Montrose facility. The contract scope also includes the procurement, fabrication and installation of an 11-mile production pipeline, water injection pipeline, gas lift pipeline and control umbilical to tie back the Shaw field to the BLP.

Subsea 7 said that engineering and project management will begin immediately from the firm's Aberdeen office with offshore operations starting in 2014.

Steph McNeill, Subsea 7's Vice President for UK and Canada, commented in a statement:

"This contract award continues our long-standing business relationship with Talisman. The complexity of this project further illustrates our bundle system’s unique ability to offer a highly cost-effective single product which neatly integrates all necessary pipelines and control lines."

Generated by readers, the comments included herein do not reflect the views and opinions of Rigzone. All comments are subject to editorial review. Off-topic, inappropriate or insulting comments will be removed.

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Monday, March 18, 2013

Companies Detail 800-Mile Alaska Gas Pipeline

Exxon Mobil Corp., ConocoPhillips, BP PLC and TransCanada Corp. said Friday they plan to develop a natural-gas pipeline from Alaska's North Slope to a port where the gas would be prepared for export as part of a project expected to cost $45 billion to $65 billion.

The companies provided some details for the proposed Alaska gas pipeline in a letter to Alaska Gov. Sean Parnell.

Under the companies' plan, or "concept," an 800-mile pipeline would be built with the capacity to ship 3 billion to 3.5 billion cubic feet of gas to an area near a port where the gas would be turned into a liquid. The liquefied natural gas would be stored in tanks and loaded onto tankers from a loading jetty with two berths, according to a plan attached to the letter. In addition to those facilities, a natural-gas treatment facility would be built on the North Slope, near Prudhoe Bay, near where the gas would be produced.

The liquefaction plant would be built on a 400-acre to 600-acre site and be able to process 15 million to 18 million tons of gas a year, executives with the comapnies said in the letter.

"We remain committed to responsibly developing the State's considerable resources and will keep you advised of our progress," read the letter, which was signed by Randy Broiles at Exxon Mobil, Trond-Erik Johansen at ConocoPhillips, Janet Weiss at BP and Tony Palmer at TransCanada.

If built, the gas pipeline and export facility would be one of the largest LNG projects in the world, said Mr. Parnell, who has strongly supported development of Alaska's gas and a pipeline to ship the gas to overseas markets. As part of an agreement with the state, the companies promised to provide periodic updates on their pipeline-development plans.

"I am pleased the companies met the benchmarks," Mr. Parnell said in a statement. "I look forward to working with them as they advance this public-private partnership."

Copyright (c) 2012 Dow Jones & Company, Inc.

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Saturday, March 16, 2013

Companies Detail 800-Mile Alaska Gas Pipeline

Exxon Mobil Corp., ConocoPhillips, BP PLC and TransCanada Corp. said Friday they plan to develop a natural-gas pipeline from Alaska's North Slope to a port where the gas would be prepared for export as part of a project expected to cost $45 billion to $65 billion.

The companies provided some details for the proposed Alaska gas pipeline in a letter to Alaska Gov. Sean Parnell.

Under the companies' plan, or "concept," an 800-mile pipeline would be built with the capacity to ship 3 billion to 3.5 billion cubic feet of gas to an area near a port where the gas would be turned into a liquid. The liquefied natural gas would be stored in tanks and loaded onto tankers from a loading jetty with two berths, according to a plan attached to the letter. In addition to those facilities, a natural-gas treatment facility would be built on the North Slope, near Prudhoe Bay, near where the gas would be produced.

The liquefaction plant would be built on a 400-acre to 600-acre site and be able to process 15 million to 18 million tons of gas a year, executives with the comapnies said in the letter.

"We remain committed to responsibly developing the State's considerable resources and will keep you advised of our progress," read the letter, which was signed by Randy Broiles at Exxon Mobil, Trond-Erik Johansen at ConocoPhillips, Janet Weiss at BP and Tony Palmer at TransCanada.

If built, the gas pipeline and export facility would be one of the largest LNG projects in the world, said Mr. Parnell, who has strongly supported development of Alaska's gas and a pipeline to ship the gas to overseas markets. As part of an agreement with the state, the companies promised to provide periodic updates on their pipeline-development plans.

"I am pleased the companies met the benchmarks," Mr. Parnell said in a statement. "I look forward to working with them as they advance this public-private partnership."

Copyright (c) 2012 Dow Jones & Company, Inc.

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Tuesday, March 12, 2013

Norway Oil Min: Statoil Pipeline May Pave Way for Permanent Arctic Hub

Norway Oil Min: Statoil Pipeline May Pave Way for Permanent Arctic Hub

Statoil ASA's plan to bring oil by pipeline from the Barents Sea to a new terminal in the country's far north could pave the way for a permanent hub in the Arctic, Norway's Minister of Petroleum and Energy Ola Borten Moe said Tuesday.

"I am a huge optimist to what we may see in the Barents Sea," Mr. Moe told Dow Jones Newswires in an interview. "It seems Statoil and others are getting the hang of this, and that could mean huge, huge activity for generations. That is entirely good news."

A new terminal at Veidnes near Honningsvag will service oil from Skrugard and Havis, which has estimated reserves of between 400 million and 600 million barrels of oil.

Both Statoil and the minister were optimistic about the potential for more discoveries in the Barents Sea, which has not yet been thoroughly explored. Statoil expects to conclude a drilling campaign this summer, and said it's able to connect more pipelines to the new terminal if more oil is found.

"The facility is also flexible, and can take more resources than Skrugard and Havis. It's for the future," Mr. Moe said.

Norway is expected to open a formerly disputed area in the southeast Barents Sea for oil drilling this summer, following a deal with Russia.

"I want to be an optimist too, but we won't know until we have found something," said Ivar Aasheim, Statoil's director for field development in Norway.

The company is already part of two Barents Sea developments. It's operating in the Snohvit gas field and the Melkoya liquefied natural gas plant in Hammerfest, and has a 35% stake in the Eni SpA operated Goliat oil field, expected on stream in late 2013.

"This is a new petroleum province for Norway. That's good for Norway and very good the northern part of Norway," Mr. Moe told a small gathering of reporters, Statoil executives and Members of Parliament who were invited to eat cake at his office in the Norwegian capital. "We're having a little party here."

Statoil said it would deliver a plan for development and operation for Skrugard and Havis by 2014 and start production in 2018, expecting to produce up to 200,000 barrels a day.

"Statoil has worked steadily, mapping the resources up there," Mr. Aasheim said. "Skrugard and Havis is in a way our breakthrough in the Barents Sea."

Statoil is the main operator of Skrugard and Havis, with a 50% stake. Eni SpA has a 30% stake and state-owned Petoro AS--which manages Norway's direct ownership in oil and gas fields--has a 20% stake.

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Sunday, March 10, 2013

Can Leak Detection End the Pipeline Impasse?

Pipelines used to be things that were just built without blinking. It is said that there are enough pipelines now in the US to encircle the Earth 25 times with enough left over to also tie a bow around it. Today, getting a pipeline built is not so easy - there are too many environmental concerns and the industry has become highly polarized. But here's one thing that could bring everyone together: pipeline safety technology. And it's something we all want, especially for those who live along the thousands of miles of aging pipeline routes that carry hazardous liquids.

Spawned by research that started in space, remote-sensing technology designed to detect dangerous leaks in pipelines has the potential to provide the neutral ground for decisions to be made and consensus to be formed. The clincher: This technology is not only affordable -it saves money and could eventually save the industry.

In an exclusive interview with Oilprice.com, Adrian Banica, founder and CEO of Synodon - the forerunner in leak detection systems - discusses:

How a technology that started in space has the potential to quell intensifying protestsWhy Keystone XL will eventually be a reality - sooner rather than laterHow remote sensing technology can fingerprint pipeline leaksHow remote sensing technology can find the little leaks before they become big leaks—at no extra costWhy North America's new pipelines aren't the problem and why the focus should be on aging pipelines that are going to experience a lot more leaksHow this technology could bring the industry and environmentalists togetherHow external leak detection can save lives in high-risk areas

James Stafford: Now that pipelines are the hottest topic on the oil and gas scene and have found themselves on the frontline of conflict between environmentalists and the industry, high-tech leak detection systems such as Synodon's remote sensing technology seem to be offering a way out of the chaos. Can you put this into perspective for us?

Adrian Banica: Yes. In North America alone, there are upwards of a million kilometers of transmission pipelines - and this does not even count the gathering and distribution pipelines. What we offer is attractive to both sides in this conflict: environmentalists want it and the industry can afford it.

Methods for inspecting pipelines have existed for many decades. What we're providing is a better way of doing it. Synodon's technology offers an accurate and precise method of oil and gas leak detection. This technology detects small leaks before they become big leaks.

James Stafford: In layman's terms, how does it work?

Adrian Banica: It is relatively simple. Synodon has developed a remote sensing technology that can measure very small ground level concentrations of escaped gas from an aircraft flying overhead. This "realSens" technology is mounted on a helicopter and piloted by GPS over a pipeline.

Think of this gas sensor as a big infrared camera that is particularly adept at detecting very, very small color changes in the infrared spectrum. The color changes that we detect are caused by various gasses that the instrument looks at. Every gas in nature absorbs and colors the infrared light that passes through it in a very specific way. From the shade of the color, we can also infer how much methane or ethane we can see with our instruments. In effect, it's like a color fingerprint of the gas.

James Stafford: Can you give us a sense of how this technology has evolved into what it is today—essentially the potential tool for bringing environmentalists and industry leaders together over the pipeline issue?

Adrian Banica: Yes. It started in space. Back in the 1990s, I was aware of technology being developed for various space programs, including Canada's and NASA's. I was looking for technologies that could solve oil and gas problems, but that were also novel, unique. That is how the whole idea started: It was matching a technology that the Canadian Space Agency funded to develop an instrument that measured carbon monoxide and methane from orbit.

So the idea then was if one can detect methane from space, why couldn't we adapt that technology to detect methane by flying it on a plane? In 2000, I founded Synodon in order to monetize and commercialize this.

James Stafford: How effective are automated leak detection systems?

Adrian Banica: They are typically only able to detect high level leaks above 1% of the pipeline flow. They measure the volume of the product that passes a sensor (flow measurements) and the pressure in the pipeline--if there is a leak the pressure will be lower downstream from it, among other things. However, as a recent report from the Department of Transportation in the US points out, these systems only detect a leak at best about 40% of the time, irrespective of how big a leak is.

It is also important to differentiate between catastrophic leaks and small leaks. For catastrophic leaks, most pipelines use these flow meters which operate 24/7. But smaller leaks can only be detected by performing an above-ground survey either by foot patrol, vehicle or aircraft. The predominant technologies used would be sampling gas sensors, thermal cameras, laser detection or our remote sensing system.

James Stafford: So this remote sensing technology uses a sort of "fingerprinting" to detect leaks, but we understand that it has much more to offer the industry …

Adrian Banica: Yes. The core offering is the technology we developed for natural gas and liquid hydrocarbon leak detection, but there is a basket of services designed to reduce the overall costs for our clients. During our leak detection surveys, we collect a lot of different types of data such as visual images, thermal images and very, very accurate GPS information. We've repackaged all those data sets into new value-added products.

We can provide these extra services without incurring additional costs.

For instance, we could offer some of those services for new construction, in which case it would speed up the process of getting all the information required for the necessary regulatory filings.

The most important thing, as I mentioned earlier, is trying to find small leaks before they become large leaks. All our services and all the data we provide are geared towards preventative maintenance. We sought to add services beyond leak protection because all pipeline operators still need to get their other data sets from somewhere. We are consolidating everything they need in a very cost effective and efficient manner.

James Stafford: A late-2012 study on leak detection by the U.S. Department of Transportation Pipeline and Hazardous Materials Safety Administration (PHMSA) has brought this subject to the forefront. Dr. David Shaw, one of the report's authors, says that pipeline leaks, ruptures, and spill are "systematically causing more and more property damage…in bad years you have $5 billion in damages due to pipeline-related accidents". The logic of the study is that pipleline operators could be spending 10 times more on leak detection given what kind of damages they are being awarded now.

Adrian Banica: Yes, the study makes the most valid point here, and that is that leak detection systems represent a bottom line savings, not an expense. For instance, Dr. Shaw has pointed out that pipeline companies would likely be justified in spending $10 million per year for every 400 miles of pipelines because they are already spending more than that on public property damage.

We have demonstrated that we can detect a leak that is less than 1 liter/min or 380 gallons/day. If our technology was deployed every 30 days and the leak were to happen in the middle of this period (on average), the total spill would be 5,700 gallons (380x15 days), which is 50 times smaller than the standard technology daily leak rate. That's a huge difference.

Another difference is that pipeline operators pay around $12 per hour to have personnel walk the pipeline, and they can only catch leaks that are close enough for them to see.

James Stafford: Could leak detection systems also save lives?

Adrian Banica: Yes. The PHMSA study points out that 44% of these old hazardous liquid pipelines are in High Consequence Areas (HCAs)—which means that peoples' lives are at risk if they blow up. We're talking about 44% of over 170,000 miles of these pipelines. On a public platform, this alone should lend a new urgency to the leak detection debate. The point is that remote—or external—sensors can head off a dangerous leak faster than an internal system.

The challenge then is to convince pipeline operators to adopt external technologies that actually detect leaks rather than relying on the inconsistencies of visual detection, which sooner or later would see the pools of oil, but it might be a while.

James Stafford: Is the market ready for this technology?

Adrian Banica: The market is ready, but not necessarily because of leak detection—it's the overall basket we discussed earlier.
There is a tremendous need in the industry for remote leak detection. But we had to account for budget constraints within our potential clients. We think we've developed a technology that's very capable of providing the information our customers are looking for and doing so at a competitive price they are willing to pay.

We've been operating on the North American market for the last 2.5 years. It's a very large market that has lately been in the eye of the media and the environmentalists. We're talking about over 55 companies in Canada and almost 700 pipeline operators in the US, where some 100 companies operate or control roughly 80% of the pipeline infrastructure. It is also a regulated market, and regulators require operators to perform some level of leak detection surveys.

James Stafford: Will Keystone XL—or the San Bruno pipeline explosion—have any notable impact on the regulatory environment or the market for remote sensing technology?

Adrian Banica: Personally I don't think that either of these will impact the leak detection practices in the industry. Rather, the driver will be the aging pipelines which will continue to have incidents and spills which the public will not accept.

James Stafford: And how is this playing out on the regulatory scene?

Adrian Banica: Congress passed a new law a year ago on this topic. The US regulators have yet to act on new regulations based on this law, but the trend is indeed there. Pipeline companies are concerned about potential upcoming new regulations and are working with the regulators to try and come up with proactive solutions and preempt their moves. There are a lot of discussions going on in the US on this topic right now and the regulator has proposed a set of new rules which are out for comment and discussion in the industry. It is a slow and drawn out process.

James Stafford: Everyone is waiting for the Obama administration to make a decision on Keystone, and while most analysts seem to think it will be given the final green light, the protest movement shows no sign of letting up. How do you see this playing out?

Adrian Banica: With the governor of Nebraska now approving it, I think the administration has no choice and no excuses for not approving it.

James Stafford: Would regulations governing pipeline safety actually boost support for Keystone XL?

Adrian Banica: Personally, I don't think so. The most vocal opposition for Keystone comes from the side of the environmental movement that does not want to see the pipelines build in order to decrease our overall dependence on oil rather than their concern for spills. So it is a philosophical position based on decreasing CO2 emissions rather than one based on spills in the environment which will not be appeased by regulations.

James Stafford: What about any potential regulatory protection leak detection systems could offer pipeline companies?

Adrian Banica: The benefit to our customers is that they can demonstrate due diligence and that they have employed the best techniques available to ensure pipeline integrity. They will be covered if there is any court action or regulatory action. The value of our data in case something does happen could be quite substantial.

There may be small differences in the regulations with the US being somewhat stricter and tighter than the Canadian regulations. So there are a few more incentives for US based customers to use our service.

James Stafford: Protests continue over the Enbridge pipeline in Vancouver, for instance. How could this play out. Could big pipeline players like Enbridge be able to embrace something like your technology to quell some of those protests?

Adrian Banica: This is a good case in point. Yes they absolutely could, and should. I'm very firm on that answer and I think they are looking at it. Enbridge is a customer of ours already in the United States and they're very aware of what we offer and do.

James Stafford: So these are early days for commercial viability?

Adrian Banica: These are very early days, and we have just turned the corner from a science concept into something that is commercially realizable. We spent 2011 and 2012 working very hard to penetrate the industry and to convince clients that this is not a science project anymore—this is a genuine commercially viable technology. We are now starting to see the adoption of our technology and services. So I believe we are at the tipping point and by no means do I think that shareholders have missed the boat.

James Stafford: Adrian, thank you for your time. This has been a very interesting discussion and the topic is one we will be following closely over the coming months. Hopefully we will get a chance to talk later in the year to see if any of the developments discussed have come to pass.

Adrian Banica: Absolutely, I'd be delighted to catch up later in the year.

Source: http://oilprice.com/Interviews/Can-Leak-Detection-End-the-Pipeline-Impasse-Interview-with-Adrian-Banica.html

Generated by readers, the comments included herein do not reflect the views and opinions of Rigzone. All comments are subject to editorial review. Off-topic, inappropriate or insulting comments will be removed.

View the original article here

Saturday, March 9, 2013

Can Leak Detection End the Pipeline Impasse?

Pipelines used to be things that were just built without blinking. It is said that there are enough pipelines now in the US to encircle the Earth 25 times with enough left over to also tie a bow around it. Today, getting a pipeline built is not so easy - there are too many environmental concerns and the industry has become highly polarized. But here's one thing that could bring everyone together: pipeline safety technology. And it's something we all want, especially for those who live along the thousands of miles of aging pipeline routes that carry hazardous liquids.

Spawned by research that started in space, remote-sensing technology designed to detect dangerous leaks in pipelines has the potential to provide the neutral ground for decisions to be made and consensus to be formed. The clincher: This technology is not only affordable -it saves money and could eventually save the industry.

In an exclusive interview with Oilprice.com, Adrian Banica, founder and CEO of Synodon - the forerunner in leak detection systems - discusses:

How a technology that started in space has the potential to quell intensifying protestsWhy Keystone XL will eventually be a reality - sooner rather than laterHow remote sensing technology can fingerprint pipeline leaksHow remote sensing technology can find the little leaks before they become big leaks—at no extra costWhy North America's new pipelines aren't the problem and why the focus should be on aging pipelines that are going to experience a lot more leaksHow this technology could bring the industry and environmentalists togetherHow external leak detection can save lives in high-risk areas

James Stafford: Now that pipelines are the hottest topic on the oil and gas scene and have found themselves on the frontline of conflict between environmentalists and the industry, high-tech leak detection systems such as Synodon's remote sensing technology seem to be offering a way out of the chaos. Can you put this into perspective for us?

Adrian Banica: Yes. In North America alone, there are upwards of a million kilometers of transmission pipelines - and this does not even count the gathering and distribution pipelines. What we offer is attractive to both sides in this conflict: environmentalists want it and the industry can afford it.

Methods for inspecting pipelines have existed for many decades. What we're providing is a better way of doing it. Synodon's technology offers an accurate and precise method of oil and gas leak detection. This technology detects small leaks before they become big leaks.

James Stafford: In layman's terms, how does it work?

Adrian Banica: It is relatively simple. Synodon has developed a remote sensing technology that can measure very small ground level concentrations of escaped gas from an aircraft flying overhead. This "realSens" technology is mounted on a helicopter and piloted by GPS over a pipeline.

Think of this gas sensor as a big infrared camera that is particularly adept at detecting very, very small color changes in the infrared spectrum. The color changes that we detect are caused by various gasses that the instrument looks at. Every gas in nature absorbs and colors the infrared light that passes through it in a very specific way. From the shade of the color, we can also infer how much methane or ethane we can see with our instruments. In effect, it's like a color fingerprint of the gas.

James Stafford: Can you give us a sense of how this technology has evolved into what it is today—essentially the potential tool for bringing environmentalists and industry leaders together over the pipeline issue?

Adrian Banica: Yes. It started in space. Back in the 1990s, I was aware of technology being developed for various space programs, including Canada's and NASA's. I was looking for technologies that could solve oil and gas problems, but that were also novel, unique. That is how the whole idea started: It was matching a technology that the Canadian Space Agency funded to develop an instrument that measured carbon monoxide and methane from orbit.

So the idea then was if one can detect methane from space, why couldn't we adapt that technology to detect methane by flying it on a plane? In 2000, I founded Synodon in order to monetize and commercialize this.

James Stafford: How effective are automated leak detection systems?

Adrian Banica: They are typically only able to detect high level leaks above 1% of the pipeline flow. They measure the volume of the product that passes a sensor (flow measurements) and the pressure in the pipeline--if there is a leak the pressure will be lower downstream from it, among other things. However, as a recent report from the Department of Transportation in the US points out, these systems only detect a leak at best about 40% of the time, irrespective of how big a leak is.

It is also important to differentiate between catastrophic leaks and small leaks. For catastrophic leaks, most pipelines use these flow meters which operate 24/7. But smaller leaks can only be detected by performing an above-ground survey either by foot patrol, vehicle or aircraft. The predominant technologies used would be sampling gas sensors, thermal cameras, laser detection or our remote sensing system.

James Stafford: So this remote sensing technology uses a sort of "fingerprinting" to detect leaks, but we understand that it has much more to offer the industry …

Adrian Banica: Yes. The core offering is the technology we developed for natural gas and liquid hydrocarbon leak detection, but there is a basket of services designed to reduce the overall costs for our clients. During our leak detection surveys, we collect a lot of different types of data such as visual images, thermal images and very, very accurate GPS information. We've repackaged all those data sets into new value-added products.

We can provide these extra services without incurring additional costs.

For instance, we could offer some of those services for new construction, in which case it would speed up the process of getting all the information required for the necessary regulatory filings.

The most important thing, as I mentioned earlier, is trying to find small leaks before they become large leaks. All our services and all the data we provide are geared towards preventative maintenance. We sought to add services beyond leak protection because all pipeline operators still need to get their other data sets from somewhere. We are consolidating everything they need in a very cost effective and efficient manner.

James Stafford: A late-2012 study on leak detection by the U.S. Department of Transportation Pipeline and Hazardous Materials Safety Administration (PHMSA) has brought this subject to the forefront. Dr. David Shaw, one of the report's authors, says that pipeline leaks, ruptures, and spill are "systematically causing more and more property damage…in bad years you have $5 billion in damages due to pipeline-related accidents". The logic of the study is that pipleline operators could be spending 10 times more on leak detection given what kind of damages they are being awarded now.

Adrian Banica: Yes, the study makes the most valid point here, and that is that leak detection systems represent a bottom line savings, not an expense. For instance, Dr. Shaw has pointed out that pipeline companies would likely be justified in spending $10 million per year for every 400 miles of pipelines because they are already spending more than that on public property damage.

We have demonstrated that we can detect a leak that is less than 1 liter/min or 380 gallons/day. If our technology was deployed every 30 days and the leak were to happen in the middle of this period (on average), the total spill would be 5,700 gallons (380x15 days), which is 50 times smaller than the standard technology daily leak rate. That's a huge difference.

Another difference is that pipeline operators pay around $12 per hour to have personnel walk the pipeline, and they can only catch leaks that are close enough for them to see.

James Stafford: Could leak detection systems also save lives?

Adrian Banica: Yes. The PHMSA study points out that 44% of these old hazardous liquid pipelines are in High Consequence Areas (HCAs)—which means that peoples' lives are at risk if they blow up. We're talking about 44% of over 170,000 miles of these pipelines. On a public platform, this alone should lend a new urgency to the leak detection debate. The point is that remote—or external—sensors can head off a dangerous leak faster than an internal system.

The challenge then is to convince pipeline operators to adopt external technologies that actually detect leaks rather than relying on the inconsistencies of visual detection, which sooner or later would see the pools of oil, but it might be a while.

James Stafford: Is the market ready for this technology?

Adrian Banica: The market is ready, but not necessarily because of leak detection—it's the overall basket we discussed earlier.
There is a tremendous need in the industry for remote leak detection. But we had to account for budget constraints within our potential clients. We think we've developed a technology that's very capable of providing the information our customers are looking for and doing so at a competitive price they are willing to pay.

We've been operating on the North American market for the last 2.5 years. It's a very large market that has lately been in the eye of the media and the environmentalists. We're talking about over 55 companies in Canada and almost 700 pipeline operators in the US, where some 100 companies operate or control roughly 80% of the pipeline infrastructure. It is also a regulated market, and regulators require operators to perform some level of leak detection surveys.

James Stafford: Will Keystone XL—or the San Bruno pipeline explosion—have any notable impact on the regulatory environment or the market for remote sensing technology?

Adrian Banica: Personally I don't think that either of these will impact the leak detection practices in the industry. Rather, the driver will be the aging pipelines which will continue to have incidents and spills which the public will not accept.

James Stafford: And how is this playing out on the regulatory scene?

Adrian Banica: Congress passed a new law a year ago on this topic. The US regulators have yet to act on new regulations based on this law, but the trend is indeed there. Pipeline companies are concerned about potential upcoming new regulations and are working with the regulators to try and come up with proactive solutions and preempt their moves. There are a lot of discussions going on in the US on this topic right now and the regulator has proposed a set of new rules which are out for comment and discussion in the industry. It is a slow and drawn out process.

James Stafford: Everyone is waiting for the Obama administration to make a decision on Keystone, and while most analysts seem to think it will be given the final green light, the protest movement shows no sign of letting up. How do you see this playing out?

Adrian Banica: With the governor of Nebraska now approving it, I think the administration has no choice and no excuses for not approving it.

James Stafford: Would regulations governing pipeline safety actually boost support for Keystone XL?

Adrian Banica: Personally, I don't think so. The most vocal opposition for Keystone comes from the side of the environmental movement that does not want to see the pipelines build in order to decrease our overall dependence on oil rather than their concern for spills. So it is a philosophical position based on decreasing CO2 emissions rather than one based on spills in the environment which will not be appeased by regulations.

James Stafford: What about any potential regulatory protection leak detection systems could offer pipeline companies?

Adrian Banica: The benefit to our customers is that they can demonstrate due diligence and that they have employed the best techniques available to ensure pipeline integrity. They will be covered if there is any court action or regulatory action. The value of our data in case something does happen could be quite substantial.

There may be small differences in the regulations with the US being somewhat stricter and tighter than the Canadian regulations. So there are a few more incentives for US based customers to use our service.

James Stafford: Protests continue over the Enbridge pipeline in Vancouver, for instance. How could this play out. Could big pipeline players like Enbridge be able to embrace something like your technology to quell some of those protests?

Adrian Banica: This is a good case in point. Yes they absolutely could, and should. I'm very firm on that answer and I think they are looking at it. Enbridge is a customer of ours already in the United States and they're very aware of what we offer and do.

James Stafford: So these are early days for commercial viability?

Adrian Banica: These are very early days, and we have just turned the corner from a science concept into something that is commercially realizable. We spent 2011 and 2012 working very hard to penetrate the industry and to convince clients that this is not a science project anymore—this is a genuine commercially viable technology. We are now starting to see the adoption of our technology and services. So I believe we are at the tipping point and by no means do I think that shareholders have missed the boat.

James Stafford: Adrian, thank you for your time. This has been a very interesting discussion and the topic is one we will be following closely over the coming months. Hopefully we will get a chance to talk later in the year to see if any of the developments discussed have come to pass.

Adrian Banica: Absolutely, I'd be delighted to catch up later in the year.

Source: http://oilprice.com/Interviews/Can-Leak-Detection-End-the-Pipeline-Impasse-Interview-with-Adrian-Banica.html

Generated by readers, the comments included herein do not reflect the views and opinions of Rigzone. All comments are subject to editorial review. Off-topic, inappropriate or insulting comments will be removed.

View the original article here