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首页> 外文期刊>Chemical engineering journal >Treatment of biorecalcitrant a-methylphenylglycine aqueous solutions with a solar photo-Fenton-aerobic biological coupling: Biodegradability and environmental impact assessment
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Treatment of biorecalcitrant a-methylphenylglycine aqueous solutions with a solar photo-Fenton-aerobic biological coupling: Biodegradability and environmental impact assessment

机译:日光-Fenton-好氧生物偶联剂处理难降解的α-甲基苯基甘氨酸水溶液的生物降解性和环境影响评估

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摘要

The photo-Fenton process under solar irradiation (SPF) was coupled to an aerobic activated sludge biological treatment carried out in a sequencing batch reactor (SBR). The effectiveness of the coupling for the treatment of aqueous solutions polluted with non-biodegradable α-methyl-phenylglycine (α-MPG) was evaluated. Respirometry was chosen as alternative to other conventional tests (BOD5/COD, Zahn-Wellens, Microtox~R) for the quantification of both biodegradability and toxic/inhibitory effect of the polluted water along the SPF time, the final goal being the determination of the suitable reaction time for chemical-biological coupling. The nitrification of the aqueous solution during the biological treatment, a process that might take place at the same time than the oxidation of organic matter and endogenous respiration, was evaluated along the different SBR cycles. Finally, a comparative life cycle assessment (LCA) of SPF and an integrated chemical-biological coupling (SPF-SBR) was carried out in order to identify the best alternative, from an environmental point of view, for the treatment of biorecalcitrant pollutants. The determination of the main impact factors of the biological treatment was also carried out. The results of the bench-scale study indicate that both the SPF and SPF-SBR treatments are environmentally friendly and effective alternative strategies for the treatment of water loaded with non-biodegradable compounds.
机译:将日光照射下的光芬顿工艺(SPF)与在顺序分批反应器(SBR)中进行的好氧活性污泥生物处理耦合。评价了偶联剂在处理被不可生物降解的α-甲基-苯基甘氨酸(α-MPG)污染的水溶液中的有效性。选择了呼吸测定法作为其他常规测试的替代方法(BOD5 / COD,Zahn-Wellens,Microtox®R),以量化SPF期间污水的生物降解性和毒性/抑制作用,最终目标是确定化学-生物偶联的合适反应时间。沿不同的SBR循环评估了生物处理过程中水溶液的硝化作用,该过程可能与有机物氧化和内源性呼吸同时发生。最后,进行了SPF的比较生命周期评估(LCA)和集成的化学-生物耦合(SPF-SBR),以便从环境角度确定用于处理难降解污染物的最佳替代方案。还进行了生物处理的主要影响因素的确定。基准规模研究的结果表明,SPF和SPF-SBR处理均是环保且有效的替代策略,用于处理负载有不可生物降解化合物的水。

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