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芬顿和改性芬顿氧化法与膜蒸馏耦合处理采出水的评价:效益、挑战和出水毒性。

Evaluation of Fenton and modified Fenton oxidation coupled with membrane distillation for produced water treatment: Benefits, challenges, and effluent toxicity.

机构信息

Department of Environment, Land and Infrastructure Engineering (DIATI), Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Turin, Italy.

Department of Chemistry, Università di Torino, Via Pietro Giuria 5, 10125 Turin, Italy.

出版信息

Sci Total Environ. 2021 Nov 20;796:148953. doi: 10.1016/j.scitotenv.2021.148953. Epub 2021 Jul 15.

Abstract

Membrane distillation is a promising technology to desalinate hypersaline produced waters. However, the organic content can foul and wet the membrane, while some fractions may pass into the distillate and impair its quality. In this study, the applicability of the traditional Fenton process was investigated and preliminarily optimized as a pre-treatment of a synthetic hypersaline produced water for the following step of membrane distillation. The Fenton process was also compared to a modified Fenton system, whereby safe iron ligands, i.e., ethylenediamine-N,N'-disuccinate and citrate, were used to overcome practical limitations of the traditional reaction. The oxidation pre-treatments achieved up to 55% removal of the dissolved organic carbon and almost complete degradation of the low molecular weight toxic organic contaminants. The pre-treatment steps did not improve the productivity of the membrane distillation process, but they allowed for obtaining a final effluent with significantly higher quality in terms of organic content and reduced Vibrio fischeri inhibition, with half maximal effective concentration (EC) values up to 25 times those measured for the raw produced water. The addition of iron ligands during the oxidation step simplified the process, but resulted in an effluent of slightly lower quality in terms of toxicity compared to the use of traditional Fenton.

摘要

膜蒸馏是一种有前途的淡化高盐生产水的技术。然而,有机物含量会使膜堵塞和润湿,而某些馏分可能会进入馏出物并降低其质量。在这项研究中,考察了传统芬顿工艺的适用性,并初步优化了作为膜蒸馏后续步骤的合成高盐生产水的预处理。还将芬顿工艺与改良的芬顿系统进行了比较,在该系统中使用安全的铁配体,即乙二胺四乙酸二钠和柠檬酸盐,以克服传统反应的实际限制。氧化预处理可去除高达 55%的溶解有机碳,并几乎完全降解低分子量有毒有机污染物。预处理步骤并没有提高膜蒸馏过程的生产力,但它们允许获得最终流出物,在有机含量方面具有更高的质量,并且降低了发光弧菌的抑制作用,其半最大有效浓度 (EC) 值比原始生产水高 25 倍。在氧化步骤中添加铁配体简化了该过程,但与使用传统芬顿相比,流出物的毒性略低。

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