class='kwd-title'>Keywords: Water treatment, Ele'/> Electrochemical degradation of triclosan in aqueous solution. A study of the performance of an electro-Fenton reactor
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Electrochemical degradation of triclosan in aqueous solution. A study of the performance of an electro-Fenton reactor

机译:水溶液中三氯生的电化学降解。电芬顿反应堆性能研究

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摘要

class="kwd-title">Keywords: Water treatment, Electro-Fenton, Triclosan, Design of experiments, Advanced oxidation processes class="head no_bottom_margin" id="abs0010title">AbstractThe electro-Fenton degradation of Triclosan in aqueous solution was studied using a cylindrical reactor in which polarized carbon cloth electrodes and a cation exchange resin were employed. Using a factorial design of experiments approach, the effect of four variables (considering two levels for each one), was measured on four response parameters that reflect the electrooxidation efficiency of the electrochemical reactor. The results revealed that in all cases triclosan degradation was very efficient (above 95%) and that while there is a reasonable effect of all variables and their interactions, the one with the strongest influence on the process is the nature and magnitude of the ionic strength of the electrolytic solution. In this way, while the presence of a buffer species in this solution can keep the pH in a value that affects the generation of OH radicals from the Fenton mixture, a high ionic strength solution can promote the elimination of Fe ionic species from the reactor by decreasing resin Fe retention due to competition effects of other ions for the binding sites of the substrate. HPLC experiments of the effluent solutions, also revealed that the degradation by-products of triclosan were dependent on the nature and ionic strength of the electrolytic solution in the electro-Fenton process under study. Finally, comparison of the different operation modes, also suggested that electro-adsorption of Fe cationic species in the negatively polarized cathode surface, is the main factor that controls Fe ion retention within the reactor.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:水处理,电芬顿,三氯生,实验设计,高级氧化工艺 class =“摘要使用圆柱形反应器研究了三氯生在水溶液中的电芬顿降解,该反应器使用了极化碳布电极和阳离子交换树脂。使用实验方法的因子设计,在反映电化学反应器电氧化效率的四个响应参数上测量了四个变量(每个变量考虑两个级别)的影响。结果表明,在所有情况下,三氯生降解都非常有效(95%以上),尽管所有变量及其相互作用都有合理的影响,但对过程影响最大的是离子强度的性质和大小电解液。这样,虽然该溶液中存在缓冲剂物种可以使pH值保持在一定的值上,从而影响从Fenton混合物中生成 OH自由基,但高离子强度的溶液可以促进消除通过减少由于其他离子对底物结合位点的竞争作用而降低的树脂Fe保留量,可以减少反应器中的铁离子种类。流出液的HPLC实验还表明,在研究的电子芬顿工艺中,三氯生的降解副产物取决于电解液的性质和离子强度。最后,比较不同的操作模式,还表明在负极极化的阴极表面电吸附铁阳离子物种是控制反应器中铁离子保留的主要因素。

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