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Competitive adsorption amongst dichloroacetic acid, dibromochloromethane, benzene and carbaryl on activated carbon

机译:二氯乙酸,二溴甲烷,苯和碳酸中的竞争性吸附在活性炭上

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For the advanced treatment of drinking water by activated carbon, the effects of adsorption on removal of dichloroacetic acid, dibromochloromethane, benzene and carbaryl in water, as well as the competitive adsorption between these pollutants were investigated with three different activated carbon (new carbon, regenerated carbon and used carbon). The results showed that good effect of the adsorption was achieved using the new carbon and regenerated carbon compared with the used one; competitive adsorption, depending upon the adsorption capacity or point position of the activated carbon and the diffusion velocity, adsorption strength, structure and functional groups of the pollutants, was available for the removal of organic compounds; it was capable for sodium hypochlorite to have redox reaction with the pollutants and accelerate the desorption of organic compounds which had been adsorbed in the activated carbon, and the concentration of the pollutants in water, therefore, became unstable.
机译:对于通过活性炭的饮用水的先进治疗,吸附对水中除去二氯乙酸,二溴甲烷,苯和碳酸的影响,以及三种不同的活性炭(新碳,再生)研究了这些污染物之间的竞争吸附。碳和二手碳)。结果表明,使用新的碳和再生碳与使用的碳,实现了吸附的良好效果;竞争吸附,取决于活性炭的吸附容量和点位置以及污染物的扩散速度,吸附强度,结构和官能团,可用于除去有机化合物;它能够对次氯酸钠进行氧化还原反应与污染物进行氧化还原反应,加速已吸附在活性炭中的有机化合物的解吸,因此水中污染物的浓度变得不稳定。

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