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Titlebook: Coalbed Methane: Scientific, Environmental and Economic Evaluation; Maria Mastalerz,Miryam Glikson,Suzanne D. Golding Book 1999 Springer S

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发表于 2025-3-21 17:45:48 | 显示全部楼层 |阅读模式
书目名称Coalbed Methane: Scientific, Environmental and Economic Evaluation
编辑Maria Mastalerz,Miryam Glikson,Suzanne D. Golding
视频videohttp://file.papertrans.cn/229/228703/228703.mp4
图书封面Titlebook: Coalbed Methane: Scientific, Environmental and Economic Evaluation;  Maria Mastalerz,Miryam Glikson,Suzanne D. Golding Book 1999 Springer S
描述Coalbed gas has been considered a hazard since the early 19th century when the first mine gas explosions occurred in the United States in 1810 and France in 1845. In eastern Australia methane-related mine disasters occurred late in the 19th century with hundreds of lives lost in New South Wales, and as recently as 1995 in Queensland‘s Bowen Basin. Ventilation and gas drainage technologies are now in practice. However, coalbed methane recently is becoming more recognized as a potential source of energy; rather than emitting this gas to the atmosphere during drainage of gassy mines it can be captured and utilized. Both economic and environmental concerns have sparked this impetus to capture coalbed methane. The number of methane utilization projects has increased in the United States in recent years as a result, to a large extent, of development in technology in methane recovery from coal seams. Between 1994 and 1997, the number of mines in Alabama, Colorado, Ohio, Pennsylvania, Virginia, and West Virginia recovering and utilizing methane increased from 1 0 to 17. The Environmental Protection Agency estimates that close to 49 billion cubic feet (Bet) of methane was recovered in 1996,
出版日期Book 1999
关键词Ethan; Hydrothermal circulation; Methan; emissions; environment; exploration; formation; gas; geology; histor
版次1
doihttps://doi.org/10.1007/978-94-017-1062-6
isbn_softcover978-90-481-5217-9
isbn_ebook978-94-017-1062-6
copyrightSpringer Science+Business Media Dordrecht 1999
The information of publication is updating

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Defining Coalbed Methane Exploration Fairways: An Example from the Piceance Basin, Rocky Mountain Forols be synergistically combined. That synergism is absent in the marginally producing, hydrocarbon-overpressured Piceance Basin. As predicted from the coalbed methane producibility model, significant coalbed methane production (greater than 1 MMcf/d [28 Mm./d]) may be precluded in many parts of the
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Improving Coal Gas Recovery with Microbially Enhanced Coalbed Methane subsurface may potentially limit gas generation, indicating that permeability enhancement may be the most significant benefit of MECoM. Additional research, including microbial sampling of deeply buried bituminous coals to identify genetically unique bacterial consortia, is required to fully evalua
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Higher Hydrocarbon Gases in Southern Sydney Basin Coalsin most parts of the basin. Hydrocarbons, at depths shallower than about 600 m and close to the basin margins are essentially dry (depleted C.). At greater depth, however, the quantity of C. in the gas increases regularly with depth up to 12% at about 1200 m. Carbon isotope data for the southern par
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Mineral-Catalyzed Formation of Natural Gas during Coal Maturationse of natural gases, while those from thermal and catalytic cracking are vastly different. From chemical analysis of a pair of gas-producing and non-gas-producing coals it was found that significant, comparable amounts of iron are present. The available data are consistent with a model involving the
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