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Removal of dichloroacetic acid from drinking water by using adsorptive ozonation

机译:吸附臭氧化法去除饮用水中的二氯乙酸

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Chloroacetic acids, formed during the disinfection process in potable water production, are considered to pose a potential risk to human health. This article deals with dichloroacetic acid (DCAA) removal from drinking water by using a process of bentonite based adsorptive ozonation. This process is formed by combined addition of ozone, bentonite and Fe3+. During the reaction, DCAA is removed by the joint effect of adsorption, ozonation and catalytic oxidation. In addition, under the effect of the adsorption, natural organic matters (NOM) can be adsorbed onto the bentonite surface, resulting in a reduced scavenging effect toward HO· radicals, and hence eliminate the negative effect of NOM on DCAA removal. At the initial stage of the reaction, Fe3+ is rapidly hydrolyzed to polycations and adsorbed onto the bentonite surface or into its structural layers. This positively charges the surface of the bentonite and increases its surface area, resulting in a strong adsorption of HA or DCAA. Furthermore, Fe3+ catalyzes ozone decomposition to form HO· thus further improving the efficiency. The adsorptive ozonation has been shown to be potentially advantageous in destruction of toxic, dissolved pollutants in drinking water, and appears to have great potential for a wide range of treatment applications.
机译:饮用水生产中在消毒过程中形成的氯乙酸被认为会对人体健康构成潜在风险。本文涉及通过使用基于膨润土的吸附性臭氧化工艺从饮用水中去除二氯乙酸(DCAA)。该过程是通过合并添加臭氧,膨润土和Fe 3 + 形成的。在反应过程中,DCAA通过吸附,臭氧化和催化氧化的联合作用而被除去。此外,在吸附作用下,天然有机物(NOM)可以吸附在膨润土表面上,导致对HO·自由基的清除作用降低,因此消除了NOM对DCAA去除的负面影响。在反应的初始阶段,Fe 3 + 迅速水解为聚阳离子,并吸附在膨润土表面或其结构层中。这使膨润土的表面带正电并增加其表面积,从而导致HA或DCAA的强烈吸附。此外,Fe 3 + 催化臭氧分解形成HO·,从而进一步提高了效率。吸附性臭氧化已被证明在破坏饮用水中有毒,溶解的污染物方面具有潜在的优势,并且在广泛的治疗应用中具有巨大的潜力。

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