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TiO_2-assisted photocatalytic degradation of humic acids: Effect of copper ions

机译:TiO_2辅助光催化降解腐殖酸:铜离子的影响

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The present study investigated the removal efficiency of aqueous humic acid solutions by TiO_2 photocatalytic degradation in the presence of Cu(II) species. The pseudo-first-order kinetics revealed rate constants as 9.87 × 10~(-3), 7.19 × 10~(-3), 3.81 × 10 ~(-3) min~(-1) for Color_(436), UV_(254) and TOC, respectively. Comparatively, lower rate constants were attained with respect to photocatalytic degradation of humic acid. Considering the source-dependent diverse chemical and spectral characteristics of NOM, a particular interaction would be expected for humic acid with Cu(II) species (0.1mgL~(-1)). The presence of copper ions significantly altered the photocatalytic degradation kinetics of humic acids in relation to the concentration effects of humic acid as expressed by spectroscopic parameters and TOC. Batch equilibrium adsorption experiments revealed a distinct Langmuirian-type adsorptive behavior of humic acid onto TiO_2 both in terms of UV_(254) and Color_(436) and a C-type adsorption isotherm was attained for TOC. K_F values displayed an inconsistent effect of Cu(II) species, while adsorption intensity factor 1 < 1 denoted a prevailing favorable type of adsorption for Color_(436) and UV _(254). Because of the role of intra- and intermolecular interactions between copper ions and humic molecular size fractions, spectroscopic techniques were also employed for the assessment of the adsorption as well as photocatalytic degradation efficiencies.
机译:本研究研究了Cu(II)物种存在下TiO_2光催化降解对腐殖酸水溶液的去除效率。拟一阶动力学揭示了Color_(436),UV_的速率常数分别为9.87×10〜(-3),7.19×10〜(-3),3.81×10〜(-3)min〜(-1)。 (254)和TOC。比较而言,就腐殖酸的光催化降解而言,可获得较低的速率常数。考虑到NOM的依赖于源的多种化学和光谱特征,预计腐殖酸与Cu(II)物种(0.1mgL〜(-1))有特殊的相互作用。相对于由光谱参数和TOC表示的腐殖酸的浓度效应,铜离子的存在显着改变了腐殖酸的光催化降解动力学。间歇平衡吸附实验表明,无论是UV_(254)还是Color_(436),腐殖酸对TiO_2都有明显的朗缪尔型吸附性能,并且TOC达到了C型吸附等温线。 K_F值显示出对Cu(II)种类的不一致影响,而吸附强度因子1 / n <1表示Color_(436)和UV_(254)的主要吸附类型。由于铜离子和腐殖质分子级分之间的分子内和分子间相互作用的作用,光谱技术也被用于评估吸附以及光催化降解效率。

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