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This report provides a summary and analysis of the current ROV fleet...
The guidance presents a systematic process for the onshore oil and gas industry to identify and assess potential measures to improve water efficiency via incorporating the principles of water stewardship, integrating water resource management
This awareness briefing provides an overview of water management in the onshore development and production of oil and gas from shale.
Statoil, an international energy company, expanding activities
within shale oil and gas in a sustainable mannerShaping water management plans to meet local risks. Eni corporate worldwide oil and gas, petrochemical, refining and engineering operations.
ConocoPhillips undertakes the first pilot of the tool at the Surmont 1 Oil Sands development in Canada.
This guide presents a systematic process for the onshore industry to select water sources that best meet project needs within the broader context of local or regional water management.
This report evaluates a range of oil detection sensors and oceanographic vehicles and their overall compatibility for detecting and tracking oil in water. Oil detection sensors include in situ contact sensors that utilize either direct or indirect sensing methods and surface remote sensors that utilize either passive or active sensing methods. Oceanographic vehicles include autonomous underwater vehicles (AUVs), autonomous surface vehicles (ASVs), and manned surface vessels.
In late 2013, Ipieca co-hosted a webinar and workshop with the Global Environmental Management Initiative (GEMI) focused on water risk assessment tools, including the Ipieca Global Water Tool (GWT) for Oil and Gas, a customised version of the World Business Council for Sustainable Development (WBCSD) Global Water Tool, the GEMI Local Water Tool (LWT)
Despite the best intentions of an on-water response to an oil spill at sea or in a river, the likelihood is that at least some of the spilled oil will eventually reach the shoreline. (Revision 2016)