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Water Use and Management in the Bakken Shale Oil Play in North Dakota

机译:北达科他州巴肯页岩油矿区的用水和管理

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摘要

Oil and natural gas development in the Bakken shale play of North Dakota has grown substantially since 2008. This study provides a comprehensive overview and analysis of water quantity and management impacts from this development by (1) estimating water demand for hydraulic fracturing in the Bakken from 2008 to 2012; (2) compiling volume estimates for maintenance water, or brine dilution water; (3) calculating water intensities normalized by the amount of oil produced, or estimated ultimate recovery (EUR); (4) estimating domestic water demand associated with the large oil services population; (5) analyzing the change in wastewater volumes from 2005 to 2012; and (6) examining existing water sources used to meet demand. Water use for hydraulic fracturing in the North Dakota Bakken grew 5-fold from 770 million gallons in 2008 to 4.3 billion gallons in 2012. First-year wastewater volumes grew in parallel, from an annual average of 1135 000 gallons per well in 2008 to 2 905 000 gallons in 2012, exceeding the mean volume of water used in hydraulic fracturing and surpassing typical 4-year wastewater totals for the Bamett, Denver, and Marcellus basins. Surprisingly, domestic water demand from the temporary oilfield services population in the region may be comparable to the regional water demand from hydraulic fracturing activities. Existing groundwater resources are inadequate to meet the demand for hydraulic fracturing, but there appear to be adequate surface water resources, provided that access is available.
机译:自2008年以来,北达科他州巴肯页岩气田中的石油和天然气开发有了实质性增长。该研究通过以下方式对水量及其管理影响进行了全面概述和分析:(1)估算巴肯油田水力压裂的用水需求2008年至2012年; (2)编制维护用水或盐水稀释水的体积估算; (3)计算以产油量标准化的水强度,或估算的最终采收率(EUR); (4)估算与大量石油服务人口有关的国内需水量; (5)分析2005年至2012年废水量的变化; (6)检查满足需求的现有水源。北达科他州巴肯的水力压裂用水量从2008年的7.7亿加仑增长到2012年的43亿加仑,增长了5倍。第一年的废水量也平行增长,从每口井年均1135 000加仑的水增长到2008年的2口。 2012年为900.5万加仑,超过了水力压裂的平均用水量,并超过了Bamett,Denver和Marcellus流域的典型4年废水总量。出乎意料的是,该地区临时油田服务人群的国内需水量可与水力压裂活动产生的地区需水量相媲美。现有的地下水资源不足以满足水力压裂的需求,但只要有可及的条件,似乎就有足够的地表水资源。

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  • 来源
    《Environmental Science & Technology》 |2016年第6期|3275-3282|共8页
  • 作者单位

    ORISE Fellow at U.S. Department of Energy, 1000 Independence Ave SW, Washington, D.C. 20S8S, United States;

    Environmental Sdence Division, Argonne National Laboratory, 955 L'Enfant Plaza SW, Suite 6000, Washington, D.C. 20024, United States;

    School of Earth, Energy, and Environmental Sciences, Woods Institute for the Environment, and Precourt Institute for Energy, Stanford University, Stanford, California 94305, United States;

    School of Earth, Energy, and Environmental Sciences, Stanford University, Stanford, California 94305, United States;

    School of Earth, Energy, and Environmental Sciences and Precourt Institute for Energy, Stanford University, Stanford, California 94305, United States;

    School of Earth, Energy, and Environmental Sciences, Stanford University, Stanford, California 94305, United States;

    Saint Lawrence University, 23 Romoda Drive, Canton, New York 13617, United States;

    Environmental Sdence Division, Argonne National Laboratory, 955 L'Enfant Plaza SW, Suite 6000, Washington, D.C. 20024, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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