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Cu(II) Catalytic Reduction of Cr(VI) by Tartaric Acid Under the Irradiation of Simulated Solar Light

机译:模拟太阳光照射下酒石酸的Cu(II)催化还原Cr(VI)

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摘要

Cu(II) catalytic reduction of Cr(VI) by tartaric acid under the irradiation of simulated solar light was investigated through batch experiments at pHs from 3 to 6 and at temperatures from 15°C to 35°C. Results demonstrated that introduction of Cu(II) could markedly improve reduction of Cr(VI) in comparison with tartaric acid alone. Optimal removal of Cr(VI) was achieved at pH 4. Reduction of Cr(VI) increased with increasing temperatures and initial concentrations of Cu(II) and tartaric acid. The catalytic role of Cu(II) in the reduction of Cr(VI) was ascribed to the formation of Cu(II)-tartaric acid complex, which generated active reductive intermediates, including Cu(I) and tartaric acid radicals through a pathway of metal–ligand–electron transfer with light. Cu(II) photocatalytic reduction of Cr(VI) by tartaric acid followed pseudo zero-order kinetics with regard to Cr(VI), and the activation energy was calculated to be 21.48 kJ/mol. To date, such a role of Cu(II) has not been reported. The results from the present study are helpful in fully understanding the photochemical reductive behavior of Cr(VI) in the presence of both tartaric acid and Cu(II) in soil and aquatic environments.
机译:通过分批实验在3至6的pH值和15°C至35°C的温度下,研究了在模拟太阳光照射下酒石酸的Cu(II)对Cr(VI)的催化还原。结果表明,与单独的酒石酸相比,引入Cu(II)可以显着改善Cr(VI)的还原。在pH 4时,可以最佳去除Cr(VI)。Cr(VI)的还原量随温度和初始浓度的Cu(II)和酒石酸的增加而增加。 Cu(II)在Cr(VI)还原中的催化作用归因于Cu(II)-酒石酸配合物的形成,该配合物通过以下途径生成活性还原中间体,包括Cu(I)和酒石酸自由基。金属-配体-电子与光的转移。酒石酸的Cu(II)光催化还原Cr(VI)遵循关于Cr(VI)的拟零级动力学,其活化能经计算为21.48 kJ / mol。迄今为止,尚未报道Cu(II)的这种作用。本研究的结果有助于全面了解在土壤和水生环境中酒石酸和Cu(II)的存在下Cr(VI)的光化学还原行为。

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