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 微塑料影响土壤碳动态的潜在路径

 作者:He, G., Lu, M., Yang, Y.*, Zhang, Q., Liu, W.*, Rillig, M. C.
Growing concerns about plastic pollution and climate change worldwide are driving research into the effects of microplastics on carbon cycling. Although the impacts of microplastics on soil organic carbon (SOC) levels and carbon emissions have been demonstrated, their role in SOC sequestration remains understudied. Here we discuss how interactions between microplastics and organic matter may affect SOC sequestration through biological, geochemical and physical processes. Microplastics and co-occurring contaminants alter SOC content and quality by leaching dissolved organic matter (DOM) and affecting native SOC mineralization. These changes may influence the efficacy of the microbial carbon pump and mineral-associated organic carbon formation. Furthermore, microplastic surfaces adsorb DOM for long-term preservation and form hotspots for mineral–organic matter interactions, thereby altering carbon storage within soil aggregates. Consequently, a comprehensive understanding of the role of microplastics in soil carbon dynamics, from local to global scales, is essential to address both microplastic pollution and carbon neutrality.

全球塑料污染与气候变化问题日益严峻,推动学界聚焦微塑料对碳循环的影响机制。现有研究已证实微塑料可改变土壤有机碳含量与碳排放水平,但其对土壤有机碳固存的作用机制尚未明确。本文从生物、地球化学及物理过程视角,系统阐释微塑料与土壤有机质的相互作用对土壤有机碳固存的影响路径。微塑料及其伴生污染物可通过淋溶释放溶解性有机质、调控原生土壤有机碳矿化过程,改变土壤有机碳的含量与结构性质,进而影响微生物碳泵效率与矿物结合态有机碳的形成。同时,微塑料表面可吸附并长期封存溶解性有机质,构筑矿物-有机质相互作用热点区,重塑土壤团聚体的碳储存格局。综上,从局地至全球尺度全面揭示微塑料对土壤碳动态的调控机制,可为微塑料污染治理与碳中和目标实现提供重要理论支撑。

(来源:Nature Geoscience 2026  DOI: 10.1038/s41561-026-01935-0)