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Proposal for applying a component-based mixture approach for ecotoxicological assessment of fracturing fluids

机译:关于将基于组分的混合方法应用于压裂液生态毒理学评估的提案

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Hydraulic fracturing is increasingly being used to produce gas from unconventional resource sites for energy supply. Therefore, concerns about risks of this technology related to human health and the environment have to be addressed. Among the major issues is the potential contamination of surrounding water systems by chemical additives used in fracturing fluids. In this study, the ecotoxicological hazards of fracturing fluids, both, their individual components (chemicals) as well as their mixtures (product) were assessed using a component-based mixture approach. For five exemplary fracturing fluids, 40-90 wt% of the contained substances could unambiguously be defined in their chemical identity. The concentrations used in the applied fluid mixture were considered as (maximum) exposure concentrations. For components with mass fractions between 10 and 74 wt%, the effect concentrations for acute and chronic toxicity of fish, daphnia and algae were retrieved from experimental databases and through predictive modeling. The hazard indices calculated from the ratio of exposure to effect concentration were >1 for all fracturing fluids, using different scenarios. This indicated a hazard from the undiluted fracturing fluids. The assessment framework presented in this study allows for dealing with data gaps and uncertainties in a tiered fashion and in particular accommodates for combined effects resulting from chemical mixtures. It might be employed for ecotoxicological risk assessment of products containing chemical mixtures and optimization of their environmental performance.
机译:水力压裂被越来越多地用于从非常规资源站点生产天然气来进行能源供应。因此,必须解决对该技术与人类健康和环境有关的风险的担忧。主要问题之一是压裂液中使用的化学添加剂对周围水系统的潜在污染。在这项研究中,使用基于组分的混合方法评估了压裂液的生态毒理危害,包括其单独的组分(化学物质)及其混合物(产品)。对于五种示例性的压裂液,可以明确定义其化学成分为40-90 wt%。在所施加的流体混合物中使用的浓度被认为是(最大)暴露浓度。对于质量分数在10至74 wt%之间的组分,从实验数据库和通过预测模型中检索出鱼类,水蚤和藻类的急性和慢性毒性作用浓度。在不同情况下,从所有压裂液的暴露量与效果浓度之比计算得出的危险指数均大于> 1。这表明未稀释的压裂液有危害。本研究提出的评估框架允许以分层的方式处理数据缺口和不确定性,特别是适应化学混合物产生的综合影响。它可用于评估含有化学混合物的产品的生态毒理风险,并优化其环境性能。

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