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控释肥包膜微塑料如何通过调节土壤中铁形态和 DOC 含量来动态影响镉的有效性?

How do controlled-release fertilizer coated microplastics dynamically affect Cd availability by regulating Fe species and DOC content in soil?

机构信息

Institute of Plan Nutrition, Resources and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.

出版信息

Sci Total Environ. 2022 Dec 1;850:157886. doi: 10.1016/j.scitotenv.2022.157886. Epub 2022 Aug 8.

Abstract

Microplastics (MPs) affect the accumulation of heavy metals by regulating the soil environment. However, studies on the dynamic effects of microplastics on the available states of heavy metals in soil are lacking. In particular, how controlled-release fertilizer coated microplastics can synergistically change the avsilable states of heavy metals in soil by affecting soil physical and chemical properties and microbial community structure is still lacking. The dynamic effect of polyurethane (PU) MPs on the effective state of soil cadmium (Cd; DGTCd), at different particle sizes and concentrations, was studied in situ by diffusive gradient in thin-films (DGT) for the first time. The bioavailability, soil chemical properties, and microbial effects of PU MPs on Cd depend on PU particle size and concentration; high-concentration (1 %) PU MPs cause a significant increase in DGT-Cd concentration. The addition of PU MPs decreased soil pH and dissolved organic carbon (DOC), while increasing the absolute zeta value, Fe(II) and Mn(II), in a manner dependent on particle size, concentration, and culture time. Correlation analysis combined with path analysis showed that PU MPs affected the effective state of Cd by changing soil properties, among which Fe(II) content and DOC were important factors controlling the activation of Cd. Meanwhile, changes in soil properties and heavy metal availability correlated significantly with microbial community composition, suggesting that PU MPs may indirectly impact heavy metal activity by affecting microorganisms and functional genes associated with C and Fe cycling. Therefore, when the concentration of PU MPs is higher than 1 %, we should strengthen ecological risk prevention and control of the compound pollution of controlled-release fertilizer coated microplastics and heavy metals in farmland soil.

摘要

微塑料(MPs)通过调节土壤环境影响重金属的积累。然而,关于微塑料对土壤中重金属有效态的动态影响的研究还很少。特别是,控释肥包膜微塑料如何通过影响土壤理化性质和微生物群落结构来协同改变土壤中重金属的有效态还缺乏研究。本研究首次通过扩散梯度薄膜(DGT)原位研究了不同粒径和浓度的聚氨酯(PU) MPs 对土壤镉(Cd;DGTCd)有效态的动态影响。PU MPs 的生物有效性、土壤化学性质和对 Cd 的微生物效应取决于 PU 颗粒大小和浓度;高浓度(1%)的 PU MPs 会导致 DGT-Cd 浓度显著增加。添加 PU MPs 会降低土壤 pH 值和溶解性有机碳(DOC),同时会增加绝对 ζ 值、Fe(II)和 Mn(II),这取决于颗粒大小、浓度和培养时间。相关性分析和路径分析表明,PU MPs 通过改变土壤性质来影响 Cd 的有效态,其中 Fe(II)含量和 DOC 是控制 Cd 活化的重要因素。同时,土壤性质和重金属有效性的变化与微生物群落组成显著相关,这表明 PU MPs 可能通过影响与 C 和 Fe 循环相关的微生物和功能基因间接影响重金属的活性。因此,当 PU MPs 的浓度高于 1%时,我们应加强对农田土壤中控释肥包膜微塑料和重金属复合污染的生态风险防控。

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