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小分子有机酸在水铁矿上对六价铬的光催化还原作用。

Photocatalytic reduction of Cr(VI) by small molecular weight organic acids over schwertmannite.

机构信息

College of Sciences, Nanjing Agricultural University, Nanjing, PR China.

出版信息

Chemosphere. 2012 Oct;89(7):832-7. doi: 10.1016/j.chemosphere.2012.05.001. Epub 2012 May 29.

Abstract

In this study, a series of bath experiments was carried out to investigate the photoreduction of Cr(VI) by small molecular weight organic acids (SOAs) over schwertmannite, a mineral found in acid mine drainage (AMD). The results demonstrated that schwertmannite or SOAs alone was unable to effectively transform Cr(VI) to Cr(III) even if exposed to an illumination of mimic solar light. However, an addition of schwertmannite significantly enhanced the reduction of Cr(VI) by SOAs under the same condition. For example, 100μM Cr(VI) was almost completely removed within 50min in the presence of both schwertmannite (0.6gL(-1)) and oxalic acid (300μM) at pH 3.0. The photocatalytic reduction of Cr(VI) was strongly influenced by pH, the initial concentrations and the structures of SOAs. Of the tested three SOAs, the reaction rates of photocatalytic reduction of Cr(VI) were in the order of oxalic acid>citric acid>tartaric acid. The reaction obeyed to zero-order kinetics with respect to Cr(VI) with excess SOAs. A possible mechanism for photoreduction of Cr(VI) by SOAs over schwertmannite was proposed. Fe(III) on the surface of schwertmannite was dissolved by SOAs, and then Fe(III)-SOA complexes with high photochemical activity formed. Further, Fe(II) together with organic acid radicals, CO(2)(-) and O(2)(-), was generated through a metal-ligand-charge-transfer pathway (MLCT), leading to a rapid reduction of Cr(VI).

摘要

在这项研究中,进行了一系列的浴实验,以研究小分子有机酸(SOAs)在黄钾铁矾(AMD 中发现的一种矿物)上对 Cr(VI)的光还原作用。结果表明,即使暴露在模拟太阳光下,黄钾铁矾或 SOAs 本身也无法有效地将 Cr(VI)转化为 Cr(III)。然而,在相同条件下,添加黄钾铁矾可显著增强 SOAs 对 Cr(VI)的还原作用。例如,在 pH 值为 3.0 时,在黄钾铁矾(0.6gL(-1))和草酸(300μM)的存在下,100μM 的 Cr(VI)在 50min 内几乎完全被去除。Cr(VI)的光催化还原受 pH、初始浓度和 SOAs 结构的强烈影响。在所测试的三种 SOAs 中,光催化还原 Cr(VI)的反应速率按草酸>柠檬酸>酒石酸的顺序排列。对于过量 SOAs,反应对 Cr(VI)遵循零级动力学。提出了 SOAs 在黄钾铁矾上光还原 Cr(VI)的可能机制。SOAs 溶解黄钾铁矾表面的 Fe(III),然后形成具有高光化学活性的 Fe(III)-SOA 配合物。此外,通过金属配体电荷转移途径(MLCT)生成 Fe(II)和有机酸自由基、CO(2)(-)和 O(2)(-),导致 Cr(VI)的快速还原。

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