Department of Environmental Science, Zhejiang University, Hangzhou 310058, China.
Department of Environmental Science, Zhejiang University, Hangzhou 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, Zhejiang University, Hangzhou 310058, China.
J Hazard Mater. 2021 Jun 15;412:125207. doi: 10.1016/j.jhazmat.2021.125207. Epub 2021 Jan 22.
Knowledge of nanoparticulate zero-valent iron (nZVI) transformation in soils and its relationship with the potential impacts on soil properties are crucial to evaluate the environmental implication and application of nZVI. This study investigated nZVI transformation and the effects on soil properties in eight soils with various ageing time and soil moisture content (SMC). Spherical nZVI was gradually oxidized, collapsed, and adhered to clay minerals, and crystalline maghemite and magnetite were the primary oxidation products. Compared with the flooded condition, nZVI oxidation was accelerated under 70% SMC but was limited under 30% SMC. Acidic soil with lower content of dissolved aromatic carbon was advantage to nZVI oxidation under the flooded condition, while carboxymethylcellulose coating and iron oxides on nZVI surface limited nZVI oxidation. The aged nZVI existed mainly in the form of association with soil mineral or organic matter rather than in ion-exchangeable or carbonate form. nZVI treatment promoted soil aromatic carbon sequestration and decreased soil redox potential, and the impacts of nZVI on soil pH, electrical conductivity, ζ-potential, dissolved organic carbon, and catalase and urease activities were dependent on soil type and SMC. The findings are of significance for the evaluation of the environmental risk and proper application of nZVI.
纳米零价铁(nZVI)在土壤中的转化及其与土壤性质潜在影响的关系是评估 nZVI 环境影响和应用的关键。本研究调查了 nZVI 在 8 种具有不同老化时间和土壤含水量(SMC)的土壤中的转化及其对土壤性质的影响。球形 nZVI 逐渐被氧化、坍塌,并附着在粘土矿物上,主要的氧化产物为晶态磁赤铁矿和磁铁矿。与水淹条件相比,nZVI 在 70%SMC 下的氧化速度加快,但在 30%SMC 下受到限制。在水淹条件下,低含量溶解芳香碳的酸性土壤有利于 nZVI 的氧化,而羧甲基纤维素涂层和 nZVI 表面的氧化铁则限制了 nZVI 的氧化。老化的 nZVI 主要以与土壤矿物或有机质结合的形式存在,而不是以离子交换或碳酸盐形式存在。nZVI 处理促进了土壤芳香碳的固定,降低了土壤氧化还原电位,nZVI 对土壤 pH 值、电导率、ζ-电位、溶解有机碳以及过氧化氢酶和脲酶活性的影响取决于土壤类型和 SMC。这些发现对于评估 nZVI 的环境风险和正确应用具有重要意义。