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首页> 外文期刊>The Science of the Total Environment >Chemical and bioassay assessment of waters related to hydraulic fracturing at a tight gas production site
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Chemical and bioassay assessment of waters related to hydraulic fracturing at a tight gas production site

机译:液压压裂液压燃气生产现场相关的水化学和生物测定评估

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摘要

Publicly available chemical assessments of hydraulic fracturing related waters are generally based on shale gas practices in the US. There is a lack of information on hydraulic fracturing related gas development from EU countries and more generally on other types of extractions. This research fills this knowledge gap by presenting chemical and bioassay assessments of hydraulic fracturing related waters from a tight gas development in the Netherlands. Fracturing fluid, flowback water and groundwater from surrounding aquifers before and after the actual fracturing were analysed by means of high resolution liquid chromatography tandem mass spectrometry, the Ames test and three chemical activated luciferase gene expression bioassays aimed at determining genotoxicity, oxidative stress response and polyaromatic hydrocarbon contamination.After sample enrichment a higher number of peaks can be found in both fracturing fluid and flowback samples. No dear differences in chemical composition were shown in the groundwater samples before and after hydraulic fracturing. Preliminary environmental fate data of the tentatively identified chemicals points towards persistence in water. Clear genotoxic and oxidative stress responses were found in the fracturing fluid and flowbadc samples. A preliminary suspect screening resulted in 25 and 36 matches in positive and negative ionisation respectively with the 338 possible suspect candidates on the list.Extensive measures relating to the handling, transport and treatment of hydraulic fracturing related waters are currently in place within the Dutch context. The results of the present study provide a scientific justification for such measures taken to avoid adverse environmental and human health impacts. (C) 2019 The Authors. Published by Elsevier B.V.
机译:液压压裂相关水化学评估通常基于美国的页岩气体实践。欧盟国家缺乏有关液压压裂相关气体开发的信息,更普遍地对其他类型的提取。本研究通过从荷兰的紧密天然气开发中提出液压压裂相关水域的化学和生物测定评估来填补这种知识差距。通过高分辨率液相色谱串联质谱分析实际压裂前后的含水液,返回水和地下水的含水量,AMES试验和三种化学活化的荧光素酶基因表达生物测定旨在确定遗传毒性,氧化应激反应和多芳烃烃污染。样品富集在压裂液和流量样品中可以发现较高数量的峰。在水力压裂之前和之后,在地下水样品中显示了化学成分的亲爱的差异。初步环境命运暂定鉴定的化学品朝向水中的持久性。在压裂液和流动的样品中发现了透明的遗传毒性和氧化应激应答。初步怀疑筛选,分别与338个可能的嫌疑候选人的正面和负离电离中的25和36次匹配。关于处理,运输和治疗液压压裂相关水域的扩张措施目前在荷兰语境中到位。本研究结果为避免不良环境和人类健康影响所采取的措施提供了科学理由。 (c)2019年作者。由elsevier b.v出版。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第10期|636-646|共11页
  • 作者单位

    Univ Utrecht Fac Geosci Copernicus Inst Sustainable Dev Utrecht Netherlands|KWR Watercycle Res Inst Nieuwegein Netherlands|Univ Amsterdam Inst Biodivers & Ecosyst Dynam Amsterdam Netherlands;

    KWR Watercycle Res Inst Nieuwegein Netherlands|Radboud Univ Nijmegen Dept Environm Sci Nijmegen Netherlands;

    Univ Utrecht Fac Geosci Copernicus Inst Sustainable Dev Utrecht Netherlands;

    KWR Watercycle Res Inst Nieuwegein Netherlands|Flemish Inst Technol Res VITO NV Unit Hlth Mol Belgium;

    KWR Watercycle Res Inst Nieuwegein Netherlands|Vitens NV Water Co Zwolle Netherlands;

    KWR Watercycle Res Inst Nieuwegein Netherlands;

    KWR Watercycle Res Inst Nieuwegein Netherlands|Univ Amsterdam Inst Biodivers & Ecosyst Dynam Amsterdam Netherlands;

    Univ Utrecht Fac Geosci Copernicus Inst Sustainable Dev Utrecht Netherlands|KWR Watercycle Res Inst Nieuwegein Netherlands|Univ Amsterdam Inst Biodivers & Ecosyst Dynam Amsterdam Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fracturing fluid; Flowback water; Groundwater; Non-target analysis; Ames test; CALUX test;

    机译:压裂液;回流水;地下水;非目标分析;AMES测试;CALUX测试;

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