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首页> 外文期刊>Chemical engineering journal >Decontamination of polluted discharge waters from surface treatment industries by pressure-driven membranes: Removal performances and environmental impact
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Decontamination of polluted discharge waters from surface treatment industries by pressure-driven membranes: Removal performances and environmental impact

机译:压力驱动膜对表面处理行业的污染废水进行净化处理:去除性能和环境影响

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In this study, the feasibility of implementing a pressure-driven membrane process to remove toxicity from industrial discharge waters was investigated. Several kinds of membranes from reverse osmosis (RO) to tight ultrafiltration (UF) were tested and nanofiltration (NF) was found to be the most relevant process for such a problematic. The performances of heavy metals removal by a NF membrane was thoroughly analyzed firstly for synthetic solutions and afterwards for a real effluent from French surface treatment industry. The removal performances were found to be higher than 90% irrespective of the solution investigated. Numerical simulations have shown that steric exclusions alone cannot explain such removals, and electric and dielectric contributions also contribute to separation performances. Finally, the environmental impact of a NF step was examined through two bioassays. These ecotoxicological tests have shown that metallic synthetic solutions fully lose their toxicity after NF treatment whereas industrial discharge water led to a non-negligible detrimental influence, in spite of the noteworthy rejection of metal ions. This toxicity could probably be attributed to other non-metallic pollutants. To investigate their contribution to this residual toxicity, an analysis of organic micro-pollutants (PAHs, VOCs and APs) present in the effluent has therefore been carried out before and after filtration but their amount in the permeate stream was not sufficient to explain its residual toxicity.
机译:在这项研究中,研究了实施压力驱动膜工艺去除工业废水中毒性的可行性。测试了从反渗透(RO)到紧密超滤(UF)的几种膜,发现纳滤(NF)是解决此类问题的最相关方法。首先通过合成纤维溶液彻底分析了通过NF膜去除重金属的性能,然后分析了法国表面处理行业的真实废水。无论所研究的溶液如何,其去除性能均高于90%。数值模拟表明,单独的空间排斥不能解释这种去除,并且电和电介质的贡献也有助于分离性能。最后,通过两个生物测定法检查了NF步骤的环境影响。这些生态毒理学测试表明,金属合成溶液在经过NF处理后完全丧失了毒性,而工业废水却导致了不可忽略的有害影响,尽管金属离子明显被排斥。这种毒性可能归因于其他非金属污染物。为了研究它们对这种残留毒性的贡献,因此在过滤前后对废水中存在的有机微污染物(PAH,VOC和AP)进行了分析,但其在渗透物流中的含量不足以解释其残留量。毒性。

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