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pH 值对天然有机物存在下非晶态铁水羟化物光还原溶解动力学和机制的影响:对地表水中铁生物可利用性的启示。

Influence of pH on the Kinetics and Mechanism of Photoreductive Dissolution of Amorphous Iron Oxyhydroxide in the Presence of Natural Organic Matter: Implications to Iron Bioavailability in Surface Waters.

机构信息

School of Civil and Environmental Engineering, The University of New South Wales, Sydney, New South Wales 2052, Australia.

出版信息

Environ Sci Technol. 2020 Jun 2;54(11):6771-6780. doi: 10.1021/acs.est.0c01257. Epub 2020 May 21.

Abstract

In this study, we investigate the influence of pH on the kinetics and mechanism of photoreductive dissolution of amorphous iron oxyhydroxide (AFO) in view of the recognition that the light-mediated dissolution of iron oxides controls Fe availability in many natural waters. Our results show that both ligand-to-metal charge transfer (LMCT) and photogenerated superoxide (O) play an important role in AFO photoreductive dissolution in the presence of the chosen surrogate of natural organic matter, Suwannee river fulvic acid (SRFA). The pH dependence of LMCT-mediated AFO photoreductive dissolution is mainly controlled by the influence of pH on AFO solubility. A decrease in pH increases the concentration of the dissolved and more photolabile Fe(III)-SRFA complex present in equilibrium with AFO, a complex in which Fe(III) is readily reduced by LMCT. The pH dependence of superoxide-mediated Fe(III) reduction (SMIR) is also controlled by the influence of pH on AFO solubility with an increase in the dissolved inorganic Fe(III) concentration with the decrease in pH resulting in an increased rate of SMIR. No influence of pH was observed on the steady-state O concentration generated on SRFA irradiation as well as the O decay rate in the presence of SRFA, suggesting that the concentration and lifetime of O are not important factors in controlling the pH dependence of O-mediated AFO dissolution. Overall, the results of this study show that the impact of acidification of natural waters on Fe availability will be much more pronounced when Fe is present as iron oxyhydroxide compared to that observed when organically bound Fe dominates with this effect because of the strong dependency of iron oxyhydroxide solubility on pH. The increased rate and extent of dissolution of iron oxyhydroxides on the acidification of natural waters will also have implications to the fate of other contaminants (such as heavy metals and organic compounds) that may be present on the iron oxyhydroxide surface.

摘要

在这项研究中,我们研究了 pH 值对非晶态铁氢氧化物(AFO)光还原溶解动力学和机制的影响,因为认识到氧化铁的光介导溶解控制着许多天然水中的铁可用性。我们的结果表明,配体到金属电荷转移(LMCT)和光生超氧化物(O)在选择的天然有机物替代物苏万尼河富里酸(SRFA)存在的情况下,对 AFO 光还原溶解都起着重要作用。LMCT 介导的 AFO 光还原溶解的 pH 值依赖性主要受 pH 值对 AFO 溶解度的影响控制。随着与 AFO 处于平衡的溶解的和更具光活性的 Fe(III)-SRFA 络合物的浓度增加,pH 值降低,其中 Fe(III)很容易通过 LMCT 还原。超氧化物介导的 Fe(III)还原(SMIR)的 pH 值依赖性也受 pH 值对 AFO 溶解度的影响控制,随着 pH 值降低,溶解的无机 Fe(III)浓度增加,导致 SMIR 速率增加。在 SRFA 辐照下,观察到 pH 值对 SRFA 产生的稳定态 O 浓度和 O 在 SRFA 存在下的衰减率没有影响,这表明 O 的浓度和寿命不是控制 O 介导的 AFO 溶解的 pH 值依赖性的重要因素。总的来说,这项研究的结果表明,与有机结合的 Fe 为主时相比,当 Fe 以铁氢氧化物形式存在时,天然水酸化对 Fe 可用性的影响将更为明显,因为铁氢氧化物的溶解度对 pH 值有很强的依赖性。天然水酸化会导致铁氢氧化物的溶解速率和程度增加,这也将对其他污染物(如重金属和有机化合物)的命运产生影响,这些污染物可能存在于铁氢氧化物表面。

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