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Comparative electrochemical degradation of the herbicide tebuthiuron using a flow cell with a boron-doped diamond anode and identifying degradation intermediates

机译:使用流池与硼掺杂的金刚石阳极使用流动细胞的除草剂Tebuthiuron的比较电化学降解并鉴定降解中间体

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The electrochemical degradation of tebuthiuron (TBH; 100 mg L (1)) was carried out under enhanced mass transport conditions (using a flow cell with a BDD anode), while investigating the effect of solution pH, absence and presence of Cl ions in the supporting electrolyte solution (0.1 mol L (1) Na2SO4), and current density (j = 10, 30, 50 mA cm (2)) on the herbicide degradation and resulting oxidation intermediates. The enhanced mass transport conditions led to significantly improved performances, comparatively to previous results obtained with a common electrochemical cell. The solution pH or presence of Cl ions did not affect the TBH removal rate. However, the COD removal rate, despite being independent of pH, was significantly faster in the presence of Cl ions, most probably due to false results caused by organochlorinated intermediates. In the absence of Cl ions in solution, the TBH removal rate increased with j, whereas the COD removal rate was not affected, but significantly increased removal rates were attained in the presence of Cl ions, most probably because of increased formation of organochlorines. As expected, higher values of the general and mineralization current efficiencies as well as lower energy consumptions per unit TOC mass removed (ECTOC) were attained at 10 mA cm (2); in the absence of Cl ions, complete removal of TBH and 80% removal of TOC were attained with ECTOC = 0.2 kW h g (1) (less than 1/10 of those for electrolyses using a conventional electrochemical cell). From the identified intermediates, an initial TBH oxidation pathway like those of coupled processes involving photochemistry is expected. Most carboxylic acid intermediates were removed or being removed by the end of the electrolyses (except tartronic acid, which accumulated). As expected, organochlorinated intermediates were identified in the presence of Cl ions, but were completely removed by the end of the electrolyses. In summary, the electrochemical degradation of TBH in the presence of Cl ions is not advantageous; no significant improvement in the TBH and TOC removal rates, or in the energy expense, is achieved and the formation of organochlorines is a real possibility. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Tebuthiuron(TBH; 100mg L(1))的电化学降解在增强的质量转运条件下进行(使用具有BDD阳极的流动池),同时研究溶液pH,不存在和Cl离子存在的影响在除草剂降解并产生氧化中间体的电流溶液(0.1mol L(1)Na 2 SO 4)和电流密度(J = 10,30,50mA(2))。增强的质量传输条件导致显着改善的性能,相对较常见的具有普通电化学电池获得的结果。 Cl离子的溶液pH或存在不影响TBH去除率。然而,在Cl离子的存在下,尽管属于pH的COD去除率,但在Cl离子存在下显着更快,大部分可能是由于由有机氯中间体引起的虚假结果。在溶液中没有Cl离子的情况下,TBH去除率随J增加而增加,而CO CL离子存在下降率明显增加的去除率,大部分可能是由于有机氯的形成增加。如预期的那样,在10 mA cm(2)时,达到了较高的一般和矿化电流效率的值以及每单位TOC质量(Ecctoc)的较低的能量消耗;在没有Cl离子的情况下,通过Ectoc = 0.2kW H(1)(使用常规电化学电池的电解少于1/10),完成TBH和80%去除TOC的去除。从所鉴定的中间体中,预期初始TBH氧化途径,如涉及光化学的耦合过程。除去大多数羧酸中间体或通过电解的末端除去或除去(除了累积的萘乙酸)。正如预期的那样,在Cl离子存在下鉴定有机氯中间体,但是通过电解的末端完全除去。总之,CL离子存在下TBH的电化学降解是不利的;无明显改善TBH和TOC去除率,或以能量为代价,并且有机氯的形成是真正的可能性。 (c)2017 Elsevier Ltd.保留所有权利。

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