HSE & Sustainability
The agency’s administrator said the program “does nothing to improve air quality.”
The project is expected to recover up to 300 MMscf/D of flared gas. Plans call for the recovered gas to be converted into treated dry gas, liquefied petroleum gas, and condensate for domestic use and export.
This research aims to harness the advanced capabilities of artificial intelligence, specifically deep learning and large language models, to develop a comprehensive system for detecting and explaining oil spills.
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This paper will discuss the importance of proactive operator monitoring (POM) as a safety barrier, explore some of the mechanisms by which monitoring can be defeated or degraded, and consider the kind of safeguards that might need to be put in place to prevent such degradation.
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Satelytics, a US-based geospatial analytics software startup, will receive $5 million from BP Ventures to develop its methane-detection technology and then scale its applications across the oil and gas sector.
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Two technologies that may play a part in the decarbonization of the UK energy business are carbon capture, use, and storage and the use of hydrogen for energy transportation and storage. This approach builds on the UK’s gas-network infrastructure, which can be repurposed to avoid becoming stranded.
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The Hydrogen Offshore Production project identifies an alternative to decommissioning by providing reuse options for offshore infrastructure. It aims to prove the feasibility of decentralized hydrogen generation, storage, and distribution to provide a bulk hydrogen solution.
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Approaches to carbon abatement using petroleum are discussed that have a strong chance to succeed in fulfilling technological and economic goals in reducing carbon.
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If we must reduce emissions to make our industry “greener,” what are some of the options that we can apply?
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The paper reviews the types of renewable energy used in oil and gas fields that have appeared in the literature. Use of renewables offers many advantages, including saving hydrocarbon resources, minimizing the oil industry’s GHG emissions, and enhancing its public image.
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With their gee-whiz—albeit artificial—intelligence, robots may be the industry’s answer to jobs deemed dangerous, dirty, distant, or dull.
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This paper presents novel approaches to carbon abatement using petroleum that have a strong chance to succeed in fulfilling technological and economic goals.
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Carbon dioxide (CO2) waterless fracturing uses liquid CO2 to replace water as the fracturing fluid in reservoir stimulation. The continuity and reliability of the blender are key factors determining performance of the operation.