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受污染洪泛区土壤的季节性增氧会将 Zn 释放到孔隙水中。

Seasonal Oxygenation of Contaminated Floodplain Soil Releases Zn to Porewater.

机构信息

Earth System Science Department, Stanford University, Stanford, California 94305, United States.

Centre IRD Nouméa, Nouméa 98848, New Caledonia.

出版信息

Environ Sci Technol. 2023 Mar 28;57(12):4841-4851. doi: 10.1021/acs.est.2c08764. Epub 2023 Mar 14.

DOI:10.1021/acs.est.2c08764
PMID:36917499
Abstract

Soil zinc contamination is a major threat to water quality and sensitive ecosystems. While Zn itself is not redox-active in soils, transitions in soil redox conditions may promote mobilization of Zn from common Zn hosts, including Mn(IV)/Fe(III)-(hydr)oxides and sulfide precipitates, leading to elevated concentrations of dissolved Zn in surface and groundwater and thus a potential increase in Zn transport and uptake. Here, we examined the impacts of hydrologic fluctuations and coupled redox transitions on Zn partitioning in contaminated riparian soil in a mountain watershed. We found that oxygenation of the soil profile during low water conditions caused a spike in porewater Zn concentrations, driven by oxidative dissolution of amorphous ZnS and weak partitioning of Zn to Fe(III)-(hydr)oxides, hydroxy-interlayer vermiculite, and vermiculite. In contrast to Pb, released Zn did not immediately adsorb to Fe(III)-(hydr)oxides or particulate organic matter due to less-favorable sorption of Zn than that of Pb and, further, decreased Zn sorption at slightly acidic pH. As aridification intensifies and groundwater levels decline throughout the western United States, contaminated floodplain soils in mountain watersheds may be frequently oxygenated, leading to increased mobilization of dissolved Zn, which will amplify the threat Zn poses to water quality and ecosystem health.

摘要

土壤锌污染是对水质和敏感生态系统的主要威胁。尽管 Zn 在土壤中本身没有氧化还原活性,但土壤氧化还原条件的转变可能会促进常见 Zn 宿主(包括 Mn(IV)/Fe(III)-(水合)氧化物和硫化物沉淀)中的 Zn 迁移,导致地表水和地下水中溶解 Zn 的浓度升高,从而增加 Zn 的迁移和吸收。在这里,我们研究了水文波动和耦合氧化还原转变对山区流域受污染河岸带土壤中 Zn 分配的影响。我们发现,在低水位条件下,土壤剖面的氧化作用导致孔水 Zn 浓度飙升,这是由非晶质 ZnS 的氧化溶解以及 Zn 向 Fe(III)-(水合)氧化物、羟基间层蛭石和蛭石的弱分配驱动的。与 Pb 不同,由于 Zn 的吸附不如 Pb 有利,并且在略酸性 pH 值下 Zn 的吸附减少,因此释放的 Zn 不会立即吸附到 Fe(III)-(水合)氧化物或颗粒有机物质上。随着干旱化的加剧和美国西部地下水水位的下降,山区流域受污染的洪泛区土壤可能会经常被氧化,导致溶解 Zn 的迁移增加,这将放大 Zn 对水质和生态系统健康的威胁。

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