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低密度聚乙烯和可生物降解的聚乳酸-聚己二酸/对苯二甲酸丁二酯塑料对大麦中体土壤氮素分配和动态的影响不同。

LDPE and biodegradable PLA-PBAT plastics differentially affect plant-soil nitrogen partitioning and dynamics in a Hordeum vulgare mesocosm.

机构信息

Organic Geochemistry Unit, School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, UK.

School of Natural Sciences, Bangor University, Bangor, Gwynedd LL57 2UW, UK.

出版信息

J Hazard Mater. 2023 Apr 5;447:130825. doi: 10.1016/j.jhazmat.2023.130825. Epub 2023 Jan 18.

DOI:10.1016/j.jhazmat.2023.130825
PMID:36708602
Abstract

Micro and macroplastics are emerging contaminants in agricultural settings, yet their impact on nitrogen (N) cycling and partitioning in plant-soil-microbial systems is poorly understood. In this mesocosm-scale study, spring barley (Hordeum vulgare L.) was exposed to macro or microplastic produced from low density polyethylene (LDPE) or biodegradable plastic at concentrations equivalent to 1, 10 and 20 years of plastic mulch film use. Partitioning of N-labelled fertiliser into plant biomass, soil and leachate yielded a partial mass balance. Soil N partitioning was probed via compound-specific N-stable isotope analyses of soil microbial protein. Concentration-dependent decreases in plant N uptake occurred with increased leached nitrogen for LDPE microplastic. Assimilation into soil microbial protein was higher for biodegradable plastics, which we associate with early-stage biodegradable plastic degradation. Partitioning of N into inorganic soil N pools was affected by LDPE size, with lower assimilation into the microbial protein pool. While microplastics and macroplastics altered soil N cycling, the limited impacts on plant health indicated the threshold for negative effects was not reached at agriculturally relevant concentrations. This study highlights the difference between conventional and biodegradable plastics, and emphasises that the interplay of micro and macroplastics on soil N cycling must be considered in future studies.

摘要

微塑料和 宏塑料是农业环境中新兴的污染物,但它们对植物-土壤-微生物系统中氮(N)循环和分配的影响还知之甚少。在这项中观尺度研究中,春大麦(Hordeum vulgare L.)暴露于由低密度聚乙烯(LDPE)或可生物降解塑料制成的宏或微塑料中,浓度相当于塑料覆盖膜使用 1、10 和 20 年。通过对土壤微生物蛋白进行特定于化合物的氮稳定同位素分析,对 N 标记肥料在植物生物量、土壤和淋出液中的分配进行了部分质量平衡分析。土壤 N 的分配通过土壤微生物蛋白的化合物特异性 N 稳定同位素分析进行了探测。随着 LDPE 微塑料中淋出氮的增加,植物 N 吸收的浓度依赖性下降。可生物降解塑料的同化作用更高,我们将其与可生物降解塑料的早期降解阶段联系起来。N 分配到无机土壤 N 库中受到 LDPE 大小的影响,其同化作用较低。虽然微塑料和宏塑料改变了土壤 N 循环,但对植物健康的影响有限表明,在农业相关浓度下,尚未达到负面影响的阈值。本研究强调了传统塑料和可生物降解塑料之间的差异,并强调在未来的研究中必须考虑微塑料和宏塑料对土壤 N 循环的相互作用。

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