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Life cycle analysis for PFOS decomposition in supercritical water

机译:超临界水中全氟辛烷磺酸分解的生命周期分析

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Perfluorooctane sulfonic acid (PFOS) could be commonly detected in water bodies around many cities in China recently,which mainly comes from the industrial production and utilization in the fabric processing,metal plating,semiconductor manufacturing and fire-fighting foam.China is currently one of the few countries with increasing PFOS production and usage,so the treatment and safe disposal of PFOS pollutants is critical to effectively protect human health from those toxic chemicals.Life cycle assessment (LCA) by Simapro 7.2 was carried out in this paper to study the environmental impacts concerned with the treatment of PFOS in supercritical water,and proven process for the decomposition of PFOS pollutants with high concentration.This study focuses on not only the main environmental factors from emissions of toxic pollutants,but also the influence from technical characteristics of the iron-induced supercritical water technology including energy and substances consumption during treatment processes.The results of LCA were supposed to be provided for the environmental officials and factory managers as a theoretical basis for the PFOS technology selection and management.
机译:全氟辛烷磺酸(PFOS)最近在中国许多城市的水体中普遍检测到,主要来自于织物加工,金属电镀,半导体制造和消防泡沫的工业生产和利用。中国目前是少数几个全氟辛烷磺酸生产和使用量增加的国家,因此对全氟辛烷磺酸污染物的处理和安全处置对于有效保护人体免受这些有毒化学物质的危害至关重要。本文通过Simapro 7.2进行了生命周期评估(LCA),以研究环境在超临界水中处理全氟辛烷磺酸的影响以及高浓度全氟辛烷磺酸污染物分解的可靠过程。本研究不仅关注有毒污染物排放的主要环境因素,还关注铁的技术特性的影响。诱导的超临界水技术,包括治疗期间的能源和物质消耗nt过程。应该将LCA的结果提供给环境官员和工厂经理,作为PFOS技术选择和管理的理论基础。

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