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Effect of electrochemical cell structure on natural organic matter (NOM) removal from surface water through electrocoagulation (EC)

机译:电化学电池结构对通过电凝(EC)从地表水中去除天然有机物(NOM)的影响

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This study analyzed the effect of electrocoagulation cell construction on NOM removal from Finnish surface water. Three types of cells were used in this research: one that only had aluminum electrodes, one that had aluminum anodes and inert cathodes, and one that had inert anodes and aluminum cathodes. Main water quality parameters such as TOC, apparent color, and concentrations of residual metals were measured from the samples. A statistical model was made from the results using partial least squares (PLSs) regression. According to the results, electrocoagulation was able to produce high quality water with low NOM concentration. Lowest measured TOC concentration was 4.02 mg/1 (78% removal). The potential applications of water after the treatment could be potable water or industrial fresh water. Aluminum originating from the anodes or cathodes had similar NOM removal efficiency. According to TOC and ζ-Potential results, the mechanism of NOM removal was similar to chemical coagulation in different pHs. It seems that in low pH, double layer compression was the main destabilization mechanism whereas in higher pH, adsorption and bridging dominated.
机译:这项研究分析了电凝结池构造对芬兰地表水中NOM去除的影响。这项研究使用了三种类型的电池:一种仅具有铝电极,一种具有铝阳极和惰性阴极,另一种具有惰性阳极和铝阴极。从样品中测量出主要的水质参数,例如TOC,表观颜色和残留金属的浓度。使用偏最小二乘(PLS)回归从结果建立统计模型。根据结果​​,电凝能够产生低NOM浓度的高质量水。测得的最低TOC浓度为4.02 mg / 1(去除率78%)。处理后水的潜在用途可能是饮用水或工业淡水。源自阳极或阴极的铝具有相似的NOM去除效率。根据TOC和ζ电位结果,NOM去除的机理类似于在不同pH值下的化学混凝。似乎在低pH下,双层压缩是主要的去稳定机理,而在高pH下,吸附和桥联作用占主导。

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