Environmental Regulatory Drivers for Coal Bed Methane Research and Development

Environmental Regulatory Drivers for Coal Bed Methane Research and Development
Author:
Publisher:
Total Pages: 12
Release: 2002
Genre:
ISBN:


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In 1999, the National Petroleum Council (NPC) stated that the resource base for meeting growing natural gas demands in the United States is adequate. A significant and increasing portion of natural gas production (8% by 2015) is expected to come from coal bed methane (CBM). The NPC cautions that for this to occur, certain factors, including compliance with environmental requirements, must be addressed. Numerous federal, state, and local programs address a variety of environmental issues, including water quality and quantity, air quality, wildlife, noise, and visibility. This paper examines existing and potential environmental regulatory requirements that could affect the timely development and production of CBM resources in the United States. Such an examination can help technology developers and policy makers target areas for research and development (R & D), demonstration, and implementation to help facilitate cost-effective CBM development and production to meet the nation's natural gas demands. It can also help identify R & D areas that will give rule-making bodies the information they need to incorporate more science into the regulatory development process.

Management and Effects of Coalbed Methane Produced Water in the Western United States

Management and Effects of Coalbed Methane Produced Water in the Western United States
Author: National Research Council
Publisher: National Academies Press
Total Pages: 238
Release: 2010-11-15
Genre: Science
ISBN: 0309154324


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In some coalbeds, naturally occurring water pressure holds methane-the main component of natural gas-fixed to coal surfaces and within the coal. In a coalbed methane (CBM) well, pumping water from the coalbeds lowers this pressure, facilitating the release of methane from the coal for extraction and use as an energy source. Water pumped from coalbeds during this process-CBM 'produced water'-is managed through some combination of treatment, disposal, storage, or use, subject to compliance with federal and state regulations. CBM produced water management can be challenging for regulatory agencies, CBM well operators, water treatment companies, policy makers, landowners, and the public because of differences in the quality and quantity of produced water; available infrastructure; costs to treat, store, and transport produced water; and states' legal consideration of water and produced water. Some states consider produced water as waste, whereas others consider it a beneficial byproduct of methane production. Thus, although current technologies allow CBM produced water to be treated to any desired water quality, the majority of CBM produced water is presently being disposed of at least cost rather than put to beneficial use. This book specifically examines the Powder River, San Juan, Raton, Piceance, and Uinta CBM basins in the states of Montana, Wyoming, Colorado, New Mexico, and Utah. The conclusions and recommendations identify gaps in data and information, potential beneficial uses of CBM produced water and associated costs, and challenges in the existing regulatory framework.

Just Energy Transitions and Coal Bed Methane

Just Energy Transitions and Coal Bed Methane
Author: Theresia Betty Sumarno
Publisher: Springer Nature
Total Pages: 251
Release: 2021-10-18
Genre: Political Science
ISBN: 3030854906


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This book discusses how Coal Bed Methane (CBM) could help the acceleration of the energy transition in a ‘just’ way in Indonesia, due to the country's potential CBM reserves (and current dependence on climate damaging coal). Developing countries face multiple challenges in achieving their energy transitions. CBM in Indonesia could potentially be a catalyst for energy transition and subsequently improve access to energy. However, CBM faces numerous challenges and although Indonesia first developed its domestic CBM sector over more than a decade ago, they are still to implement this successfully. This book exposes the challenges and opportunities of CBM, exploring what lessons other countries could learn from Indonesia to improve the industry with a view to achieving energy transition and climate change targets. This book will be an invaluable reference for researchers and practitioners working in this field.

Coalbed Methane: Scientific, Environmental and Economic Evaluation

Coalbed Methane: Scientific, Environmental and Economic Evaluation
Author: M. Mastalerz
Publisher: Springer Science & Business Media
Total Pages: 581
Release: 2013-03-09
Genre: Science
ISBN: 9401710627


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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, meaning that this amount was not released into the atmosphere. It is estimated that in the same year total emissions of methane equaled 45. 7 Bcf. Other coal mines are being investigated at present, many ofwhich appear to be promising for the development of cost-effective gas recovery.

Coal Bed Methane

Coal Bed Methane
Author: Pramod Thakur
Publisher: Elsevier
Total Pages: 435
Release: 2014-06-14
Genre: Science
ISBN: 0128010894


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Coal Bed Methane: From Prospect to Pipeline is the proceedings of the 25th anniversary of the North American Coal Bed Methane Forum. It provides the latest advancements in the production of coal bed methane covering a variety of topics, from exploration to gas processing, for commercial utilization. Additionally, it presents the origin of gas in coal, reservoir engineering, control of methane in coal mines, production techniques, water management, and gas processing. The vast coal resources in the United States continue to produce tremendous amounts of natural gas, contributing to a diverse range energy assets. Following a rapid advancement and subsequent plateau in technological developments, this book captures the full life cycle of a well and offers petroleum geologists and engineers a single source of a broad range of coal bed methane applications. This book addresses crucial technical topics, including exploration and evaluation of coal bed reservoirs; hydraulic fracturing of CBM wells; coal seam degasification; and production engineering and processing, among others. It also covers legal issues, permitting, and economic analysis of CBM projects. Edited by a team of coal bed methane experts from industry, academia and government who have more than 75 years of combined experience in the field Authored by well-recognized members of the gas and coal industry, universities, US government departments, such as the Department of Energy and the National Institute of Occupational Safety and Health (NIOSH) More than 200 figures, photographs, and illustrations aid in the understanding of the fundamental concepts Presents the full scope of improvements in US energy independence, coal mine safety, and greenhouse gas emissions

Coalbed Methane

Coalbed Methane
Author: Karen Campbell
Publisher: West Coast Environmental Law
Total Pages: 34
Release: 2006
Genre: Coalbed methane
ISBN: 9780919365285


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Coalbed Methane

Coalbed Methane
Author:
Publisher:
Total Pages: 82
Release: 2005
Genre:
ISBN:


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This report presents preliminary findings of a review conducted to gain an understanding of the issues related to coalbed methane (CBM) development in Alberta and to make recommendations to ensure its responsible development. The findings reflect input from issue-specific working groups and from public feedback received at a series of information sessions held across the province in 2004. The report is divided into sections reflecting the main issues identified: the environmental impact of water produced from CBM operations; impacts of CBM development on the land surface & air quality; the royalty regime; land tenure, including conflicts over ownership of CBM rights; and broad-based issues such as public consultation, project planning & disclosure, and regulatory co-ordination. This is followed by description of an industry initiative to develop a best practices manual for CBM operators. The final section addresses broader issues not specific to CBM such as noise problems, timing of hearings, accountability of land agents, and disturbance to wildlife. Appendices include a glossary and a summary of regulatory requirements for CBM activities in Alberta.

Coalbed Methane Extraction

Coalbed Methane Extraction
Author: Robert M. Davidson
Publisher:
Total Pages: 72
Release: 1995
Genre: Coalbed methane
ISBN:


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This report reviews the extraction of methane from coalbeds as a resource in its own right and not as a mining hazard, emission or by-product.

Best Practice Guidance for Effective Methane Drainage and Use in Coal Mines

Best Practice Guidance for Effective Methane Drainage and Use in Coal Mines
Author: United Nations Publications
Publisher: UN
Total Pages: 112
Release: 2016
Genre: Political Science
ISBN:


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Today coal supplies around 30 per cent of global primary energy and 40 per cent of global electricity. Coal extraction has become increasingly challenging as shallow reserves are exhausted and deeper seams, with significant content of methane, are mined. Societies are demanding and expecting safer mine working conditions, and greater environmental stewardship from the coal industry. The global coal industry, national governments, trade unions, and worker safety advocates are concerned that the frequency and severity of methane explosions, especially in emerging economies, are unacceptably high. Coal mine methane (CMM) only becomes flammable and creates an explosion hazard when allowed to mix with air. Methane-rich gases, generally containing 80 per cent to 95 per cent methane at underground mining depths, occur naturally in coal seams and are released as CMM when coal seams are disturbed by mining activities. Methane is an explosive gas in the range of 5 per cent to 15 per cent methane in air. The application of best practices for methane drainage and use is critical to reduce methane-related accidents and explosions that all too often accompany coal mining, while also contributing to environmental protection through reduction of greenhouse gas (GHG) emissions. Good mining practices need to be transferred to all countries to ensure that risks are managed professionally and effectively. No mine, even in the most developed countries, is free from safety risks. Regardless of location or mining conditions, it is possible to significantly reduce the risk of methane related incidents and explosions. Good safety practice in coal mines is to reduce explosion risk by preventing the occurrence of explosive mixtures and, where practical, by monitoring and rapidly diluting explosive mixtures to safe concentrations.