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Degrading two endocrine disrupting chemicals from water by UV irradiation with the presence of nanophotocatalysts

机译:纳米光催化剂的存在下,通过紫外线辐射从水中降解两种内分泌干扰物

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The photocatalytic degradation of two selected endocrine disrupting chemicals (EDCs), namely phenol and resorcinol was investigated in TiO_2 and ZnO aqueous suspensions under UV irradiation. These catalysts were investigated for crystallinity, surface area and optical properties. The effects of various operating parameters including the photocatalyst dosage, solution pH, initial substrate concentration and the presence of second substrate on photocatalytic degradation were studied. Under optimized conditions, ZnO showed greater degradation and mineralization activities as it absorbed more light quanta than TiO_2. Several degradation intermediates were detected using HPLC, which allowed the proposal of tentative pathways for the photocatalytic degradation of phenol and resorcinol. By investigating the effect of various radical scavengers, it showed that the photocatalytic degradation of phenol and resorcinol took place mainly via the hydroxyl radicals. The ZnO photocatalyst was also reused for several times and without considerable loss of activity. Compared to the single solutions, the degradation efficiencies of binary solutions decreased. The difference between the observed rate constants of phenol and resorcinol in binary solutions became lesser compared to the cases in single solutions. Furthermore, the photocatalytic degradation of either single or binary substrates in aqueous solutions satisfactorily obeyed the pseudo-first-order kinetics.
机译:研究了两种选择的内分泌干扰化学物质(EDCs),即苯酚和间苯二酚在紫外光下在TiO_2和ZnO水悬浮液中的光催化降解。研究了这些催化剂的结晶度,表面积和光学性质。研究了各种操作参数,包括光催化剂的用量,溶液的pH值,初始底物浓度和第二种底物的存在对光催化降解的影响。在最佳条件下,ZnO比TiO_2吸收更多的光量子,表现出更大的降解和矿化活性。使用HPLC检测了几种降解中间体,这提出了光催化降解苯酚和间苯二酚的初步途径。通过研究各种自由基清除剂的作用,表明苯酚和间苯二酚的光催化降解主要通过羟基自由基发生。 ZnO光催化剂也可以重复使用几次,并且活性不会显着降低。与单一解决方案相比,二元解决方案的降级效率降低。与单一溶液相比,二元溶液中苯酚和间苯二酚的速率常数之间的差异变得更小。此外,在水溶液中单个或二元底物的光催化降解令人满意地服从了拟一级动力学。

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