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宏观和光谱评估 Fe(II)与 Al-氧化物上的 As(III)和 As(V)共吸附。

Macroscopic and Spectroscopic Assessment of the Cosorption of Fe(II) with As(III) and As(V) on Al-Oxide.

机构信息

Rutgers University , Department of Earth & Environmental Sciences, 101 Warren Street, Newark, New Jersey 07102, United States.

出版信息

Environ Sci Technol. 2015 Nov 17;49(22):13369-77. doi: 10.1021/acs.est.5b04525. Epub 2015 Nov 10.

Abstract

The cosorption of Fe(II) with As(III) and As(V) in anoxic suspensions of γ-Al2O3 at pH 7.5 was investigated with batch kinetic experiments and synchrotron EXAFS analyses. Single-sorbate results showed that Fe(II) formed secondary Fe(II)-Al(III)-layered double hydroxide (LDH) phases during reaction with the Al-oxide sorbent, whereas As(III) and As(V) formed inner-sphere surface complexes. The kinetics and mechanisms of Fe(II) and As(III) sorption were identical in dual-sorbate and single-sorbate experiments, indicating that the processes involved operate independently. In contrast, As(V) and Fe(II) interacted strongly during cosorption. Fe(II) enhanced the rate and extent of As(V) removal from solution, but did not affect the mechanism of As(V) adsorption. Conversely, As(V) hindered the formation of Fe(II)-Al(III)-LDH, slowing down precipitation at low As(V) concentrations and preventing it at high concentrations. This was attributed to interference of adsorbed As(V) with the Al supply needed for Fe(II)-Al(III)-LDH precipitation, possibly combined with enhanced surface complexation of Fe(II) cations promoted by anionic As(V) surface species. No evidence was found for redox reactions between Fe(II) and As(V) or As(III), or for precipitation of Fe-arsenic phases. These results improve our understanding of the geochemistry of Fe(II) and arsenic in reducing environments, and demonstrate the utility of mechanistic studies on geochemically complex model systems.

摘要

在 pH 值为 7.5 的缺氧悬浮液中,使用批动力学实验和同步辐射 EXAFS 分析研究了 Fe(II)与 As(III)和 As(V)的共吸附。单溶质结果表明,Fe(II)在与氧化铝吸附剂反应时形成了次生 Fe(II)-Al(III)-层状双氢氧化物 (LDH) 相,而 As(III)和 As(V)形成了内圈表面络合物。在双溶质和单溶质实验中,Fe(II)和 As(III)的吸附动力学和机制是相同的,表明涉及的过程是独立运作的。相比之下,As(V)和 Fe(II)在共吸附时会强烈相互作用。Fe(II)会提高 As(V)从溶液中去除的速率和程度,但不会影响 As(V)吸附的机制。相反,As(V)会阻碍 Fe(II)-Al(III)-LDH 的形成,在低 As(V)浓度下减缓沉淀速度,而在高浓度下则阻止沉淀。这归因于吸附的 As(V)干扰了 Fe(II)-Al(III)-LDH 沉淀所需的 Al 供应,可能与阴离子 As(V)表面物种促进的 Fe(II)阳离子表面络合增强相结合。没有发现 Fe(II)和 As(V)或 As(III)之间存在氧化还原反应的证据,也没有发现 Fe-砷相的沉淀。这些结果提高了我们对还原环境中 Fe(II)和砷的地球化学的理解,并证明了对地球化学复杂模型系统进行机制研究的有用性。

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