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Fe(氢)氧化物和有机胶体介导 Cr(VI)污染稻田中胶体结合态铬的迁移。

Fe (hydr)oxides and organic colloids mediate colloid-bound chromium mobilization in Cr(VI) contaminated paddy soil.

机构信息

Guangdong Laboratory for Lingnan Modern Agriculture, Guangdong Provincial Key Laboratory of Agricultural & Rural Pollution Abatement and Environmental Safety, College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, China.

Institute of Quality Standard and Monitoring Technology for Agro-products of Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.

出版信息

Environ Pollut. 2024 Dec 15;363(Pt 1):125045. doi: 10.1016/j.envpol.2024.125045. Epub 2024 Sep 30.

Abstract

The association of chromium (Cr) with colloidal particles transport in contaminated sites can affect hexavalent chromium (Cr(VI)) migration and transformation, which is an important mechanism for Cr pollutants in soil and groundwater systems. Here, we investigated colloid and particle-bound Cr migration and transformation effects on rice Cr accumulation during different rice growth stages and different redox conditions in Cr(VI) contaminated soil by pot experiment. Results showed that 13-29% of soil Cr was water dispersible colloid-bound (100-1000 nm) form during rice growth. Using transmission electron microscopy - energy dispersion spectroscopy and asymmetric flow field - flow separation, we identified colloid-bound organic matter (OM) and iron (Fe), most likely in the form of Fe (hydr)oxides - clay composites, as the primary Cr carrier. Specifically, colloid-bound Cr was mainly associated with 125-350 nm soil particle size. Under different redox conditions, colloid- and nanoparticle-bound Cr concentration decreased with increasing nanoparticles zero-valent iron (nZVI) dose. Soil reoxidation promoted the colloid- and nanoparticle-bound Cr release due to the weakly crystalline Fe-(hydr)oxides reprecipitation. Further quantitative analysis showed that colloid-bound Cr concentrations were positively correlated with colloid-bound Mn concentrations during the whole rice growth soils. Most important of all, Cr content in rice grain was positively correlated with colloid-bound Cr significantly. This study provides a quantitative and size-resolved understanding of particle-bound Cr in paddy soils, highlighting the importance of colloid-bound Cr and Fe interactions in Cr geochemical cycle of paddy soil.

摘要

铬(Cr)与胶体颗粒在污染场地中的迁移有关,这会影响六价铬(Cr(VI))的迁移和转化,这是土壤和地下水系统中 Cr 污染物的重要机制。在这里,我们通过盆栽实验研究了胶体和颗粒结合态 Cr 在不同水稻生长阶段和不同氧化还原条件下对水稻 Cr 积累的迁移和转化的影响。结果表明,在水稻生长过程中,土壤 Cr 的 13%-29%呈水可分散胶体结合态(100-1000nm)。通过透射电子显微镜-能量色散光谱和不对称流场-流分离,我们确定胶体结合态有机物(OM)和铁(Fe),最有可能以 Fe(氢)氧化物-粘土复合物的形式,是 Cr 的主要载体。具体而言,胶体结合态 Cr 主要与 125-350nm 土壤颗粒大小有关。在不同的氧化还原条件下,随着纳米零价铁(nZVI)剂量的增加,胶体和纳米颗粒结合态 Cr 浓度降低。由于弱结晶 Fe-(氢)氧化物的再沉淀,土壤再氧化促进了胶体和纳米颗粒结合态 Cr 的释放。进一步的定量分析表明,在整个水稻生长土壤中,胶体结合态 Cr 浓度与胶体结合态 Mn 浓度呈正相关。最重要的是,水稻籽粒中的 Cr 含量与胶体结合态 Cr 显著正相关。本研究提供了对稻田土壤中颗粒结合态 Cr 的定量和尺寸分辨理解,强调了胶体结合态 Cr 和 Fe 相互作用在稻田土壤 Cr 地球化学循环中的重要性。

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