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Titlebook: Deep Oil Spills; Facts, Fate, and Eff Steven A. Murawski,Cameron H. Ainsworth,Dana L. We Book 2020 Springer Nature Switzerland AG 2020 oil

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發(fā)表于 2025-3-21 18:02:19 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Deep Oil Spills
副標(biāo)題Facts, Fate, and Eff
編輯Steven A. Murawski,Cameron H. Ainsworth,Dana L. We
視頻videohttp://file.papertrans.cn/265/264651/264651.mp4
概述Prepared by an authorship drawn from academic researchers, oil production companies, and government scientists and contractors.Includes research sponsored by the government that has only recently been
圖書封面Titlebook: Deep Oil Spills; Facts, Fate, and Eff Steven A. Murawski,Cameron H. Ainsworth,Dana L. We Book 2020 Springer Nature Switzerland AG 2020 oil
描述The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans.? Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago.? The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures.? In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills.? Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production.
出版日期Book 2020
關(guān)鍵詞oil spills; marine biology; underwater spills; deep spills; impact modeling; oceanography; dispersant; Deep
版次1
doihttps://doi.org/10.1007/978-3-030-11605-7
isbn_ebook978-3-030-11605-7
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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Ursula Hoffmann-Lange,Wilhelm Bürklinustry and government regulators as “ultra-deep” production. A number of factors make ultra-deep exploration and production much more challenging than shallow-water plays, including strong ocean currents, extremely high pressures and low temperatures at the sea bottom, varied sub-bottom rock and sedi
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Ethnische Zugeh?rigkeit und Geschlechtnge of dimensional scales. It is also an applied and pragmatic field where research is expected to produce a better assessment and improved response of any spill incident. This summary chapter reviews at an introductory level the important physical and chemical factors relevant to deep oil blowouts,
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Der deutsche Vereinigungsprozess 1989/90s propagation and fate in the ocean, whether with regard to rising time to the surface, drift by ocean currents, dissolution or biodegradation. While a large 8 mm droplet might rise to the sea surface within minutes or hours, microdroplets <100?μm may take weeks or months to surface, if at all. On t
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Siegfried Mielke,Christian Br?uermath of a deep-sea blowout. It is also indispensable for the development and adjustment of oil fate modeling tools that estimate the subsea distribution of oil masses. So far, to estimate the oil distribution throughout the water column and the expected surfacing times, a couple of well-known correl
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Konzeptionen für die Nachkriegsdemokratiesant were applied during emergency response efforts. Thus, the DWH incident raised new challenges with regard to predictions of petroleum hydrocarbon (PHC) biodegradation and the fate of discharged hydrocarbons in the deep sea, which is permanently cold (~4?°C) and exposed to high hydrostatic pressu
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https://doi.org/10.1007/978-3-322-94354-5the oil into the water phase. The partitioning behavior of individual organic compounds between petroleum and water phases is influenced by their molecular properties and by the pressure, the temperature, and the composition of bulk oil and surrounding water. The traditional shake flask technique fo
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