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油气开发生产废物再利用的处理方式。

Treatment modalities for the reuse of produced waste from oil and gas development.

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Arlington, 700 Planetarium Place, Arlington, TX 76019, USA.

Department of Chemistry and Biochemistry, The University of Texas at Arlington, 700 Planetarium Place, Arlington, TX 76019, USA; Affiliate of Collaborative Laboratories for Environmental Analysis and Remediation, The University of Texas at Arlington, Arlington, TX 76019, USA.

出版信息

Sci Total Environ. 2018 Dec 1;643:107-118. doi: 10.1016/j.scitotenv.2018.05.386. Epub 2018 Jun 21.

Abstract

Unconventional oil and gas development is achieved through a series of sub-processes, which utilize large amounts of water, proppant, and chemical additives to retrieve sequestered hydrocarbons from low permeability petroliferous strata. As a result, a large amount of wastewater is produced, which is traditionally disposed of via subsurface injection into non-productive stratum throughout the country. However, this method of waste management has been linked to the induction of seismic events in a number of regions across North America, calling into question the environmental stewardship and sustainability of subsurface waste disposal. Advancements in water treatment technologies have improved the efficacy and financial viability of produced water recycling for beneficial reuse in the oil and gas sector. This review will cover the various treatment options that are currently being utilized in shale energy basins to remove organic, inorganic, and biological constituents, as well as some emerging technologies that are designed to remove pertinent contaminants that would otherwise preclude the reuse of produced water for production well stimulation.

摘要

非常规油气开发通过一系列子过程来实现,这些子过程利用大量的水、支撑剂和化学添加剂从低渗透性含油地层中提取封存的碳氢化合物。因此,产生了大量的废水,传统上通过在全国范围内向非生产性地层进行地下注入来处理这些废水。然而,这种废物管理方法已经与北美的多个地区引发地震事件联系在一起,这使得地下废物处置的环境管理和可持续性受到质疑。水处理技术的进步提高了采出水再利用的效率和经济效益,使其可在油气领域得到有益的再利用。本综述将介绍目前在页岩能源盆地中用于去除有机、无机和生物成分的各种处理方法,以及一些旨在去除相关污染物的新兴技术,否则这些污染物将阻止采出水再用于生产井的增产。

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