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在表面放电等离子体系统与活性炭耦合作用下增强去除微污染水源水中腐殖酸。

Enhanced removal of humic acid from micro-polluted source water in a surface discharge plasma system coupled with activated carbon.

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, Shaanxi Province, People's Republic of China.

Key Laboratory of Plant Nutrition and the Agri-Environment in Northwest China, Ministry of Agriculture, Yangling, 712100, Shaanxi, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2017 Sep;24(27):21591-21600. doi: 10.1007/s11356-017-9807-6. Epub 2017 Jul 26.

Abstract

Surface discharge plasma (SDP) combined with activated carbon (AC) was employed to eliminate dissolved organic matter from micro-polluted source water, with humic acid (HA) as the model pollutant. Synergistic effect on HA removal was observed in the SDP-AC system; HA removal efficiency reached 60.9% within 5-min treatment in the SDP-AC system with 5.0 g AC addition, whereas 16.7 and 17.4% of HA were removed in sole SDP system and AC adsorption, respectively. Scanning electron microscope and Boehm titration analysis showed that chemical reactions between active species and functional groups of AC occurred. The existence of isopropanol or benzoquinone exhibited inhibitive effects on HA removal in the SDP system, while these inhibitive effects were weakened in the SDP-AC system. The influences of AC on ozone equivalent concentration and HO concentration were evaluated, and there were approximately 39 and 20% decline in ozone equivalent concentration and HO concentration within 6-min treatment in the SDP-AC system, respectively, compared with those in the sole SDP system. Dissolved organic carbon, specific ultraviolet absorbance, and UV absorption ratios analysis demonstrated that the SDP treatment destroyed the chromophoric groups, double bonds, and aromatic structure of HA molecules, and these destructive actions were strengthened by AC.

摘要

采用表面放电等离子体(SDP)与活性炭(AC)联用技术去除微污染水源水中的溶解性有机物,以腐殖酸(HA)为模型污染物。在 SDP-AC 体系中观察到了协同去除 HA 的效果;在添加 5.0 g AC 的 SDP-AC 体系中,5 min 内 HA 的去除效率达到 60.9%,而在单独的 SDP 体系和 AC 吸附中,HA 的去除率分别为 16.7%和 17.4%。扫描电子显微镜和 Boehm 滴定分析表明,活性物种与 AC 官能团之间发生了化学反应。异丙醇或苯醌的存在对 SDP 体系中 HA 的去除表现出抑制作用,而在 SDP-AC 体系中,这些抑制作用减弱。评估了 AC 对臭氧当量浓度和 HO 浓度的影响,与单独的 SDP 体系相比,在 SDP-AC 体系中,处理 6 min 内臭氧当量浓度和 HO 浓度分别下降了约 39%和 20%。溶解有机碳、比紫外吸收值和紫外吸收比值分析表明,SDP 处理破坏了 HA 分子的生色团、双键和芳香结构,而 AC 增强了这些破坏作用。

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