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共沉淀草酸铅/钙中铅的溶解度和矿物结构。

Lead Solubility and Mineral Structures of Coprecipitated Lead/Calcium Oxalates.

机构信息

International Joint Research Center for Persistent Toxic Substances, College of Environmental and Resource Sciences , Zhejiang University , Hangzhou , Zhejiang 310058 , China.

Department of Civil and Environmental Engineering, McCormick School of Engineering and Applied Science , Northwestern University , Evanston , Illinois 60208 , United States.

出版信息

Environ Sci Technol. 2019 Dec 3;53(23):13794-13801. doi: 10.1021/acs.est.9b05638. Epub 2019 Nov 12.

Abstract

Low-molecular-weight organic acids such as oxalate, which are ubiquitous in the environment, can control the solubility and bioavailability of toxic metals such as Pb in soils and water by influencing complexation and precipitation reactions. Here, we investigated Pb solubility in relation to Pb-oxalate precipitation at pH 5.0 in the absence and presence of calcium (Ca), a common cation in environmental matrices. At Pb mole fractions less than 0.10, sequestration of Pb into Ca oxalate to form a solid solution substantially lowered Pb solubility relative to that of pure Pb oxalate to an extent inversely proportional to the Pb mole fraction. Small Pb/Ca solid-solution distribution coefficients at these low mole ratios was largely attributed to the stronger complexation of Pb compared to Ca with oxalate to form soluble metal-oxalate complexes, which in turn limited Pb incorporation into the Ca-oxalate crystal lattice. Characterization of the Pb/Ca-oxalate coprecipitates by X-ray diffraction, optical microscopy, and Fourier transform infrared spectroscopy revealed that the whewellite (Ca-oxalate monohydrate) structure was destabilized by substitution of small amounts of Pb into the lattice, and thus, the formation of the Ca-oxalate dihydrate (weddellite) was favored over the monohydrate. At Pb mole fractions above 0.20, discrete crystallites of Pb oxalate were identified. These new findings imply that Pb/Ca-oxalate coprecipitates in the presence of Ca could reduce the solubility of Pb in Pb-contaminated acid soils.

摘要

低分子量有机酸,如草酸盐,在环境中无处不在,通过影响络合和沉淀反应,可以控制土壤和水中有毒金属如 Pb 的溶解度和生物利用度。在这里,我们研究了在 pH 5.0 下不存在和存在钙(Ca)时 Pb 与 Pb-草酸盐沉淀的关系,钙是环境基质中常见的阳离子。在 Pb 摩尔分数小于 0.10 的情况下,Pb 被螯合到 Ca 草酸盐中形成固溶体,与纯 Pb 草酸盐相比,Pb 的溶解度大大降低,其程度与 Pb 摩尔分数成反比。在这些低摩尔比下,较小的 Pb/Ca 固溶体分配系数主要归因于 Pb 与草酸盐形成可溶性金属草酸盐络合物的络合能力强于 Ca,这反过来又限制了 Pb 掺入到 Ca-草酸盐晶格中。通过 X 射线衍射、光学显微镜和傅里叶变换红外光谱对 Pb/Ca-草酸盐共沉淀物的表征表明,由于少量 Pb 取代晶格,Whewellite(Ca-草酸盐一水合物)结构失稳,因此有利于形成 Ca-草酸盐二水合物(Weddellite)而不是一水合物。在 Pb 摩尔分数高于 0.20 时,鉴定出了 Pb 草酸盐的离散晶相。这些新发现意味着在 Ca 存在下的 Pb/Ca-草酸盐共沉淀物可能会降低 Pb 在 Pb 污染酸性土壤中的溶解度。

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