微塑料
生物可分解塑胶
农业生态系统
土壤质量
农学
生物量(生态学)
土壤健康
环境科学
聚乳酸
生物塑料
土壤水分
化学
农业
土壤有机质
生物
废物管理
生态学
土壤科学
工程类
聚合物
有机化学
作者
Juncong Chu,Jie Zhou,Yue Wang,Davey L. Jones,Junyong Ge,Yadong Yang,Robert W. Brown,Huadong Zang,Zhaohai Zeng
标识
DOI:10.1016/j.envpol.2022.120556
摘要
Bioplastics (biodegradable plastics) potentially offer an encouraging alternative to conventional (petroleum-based) plastics. In practice, bioplastics inevitably generate a large number of bio-microplastics (bio-MPs, diameter <5 mm) during the degradation progress. However, the impact of bio-MPs on plant and soil health within agroecosystems remains incomplete. Here, a field study was conducted to investigate the effect of two shapes (fiber and powder) of pure polylactic acid (PLA) bio-MPs on oat (Avena sativa L.) and soybean (Glycinemax (L.) Merr.) growth and soil health. Our results showed that PLA application at a representative soil loading rate of 0.2% (w/w) had no significant effect on soil enzyme activities, soil physicochemical properties (soil water content, pH, etc.), root characteristics, plant biomass, and crop yield. Thus, we conclude that soil quality, plant health, and ecosystem multifunctionality were not affected by PLA over one growing season (5 months) in the presence of either bio-MP shape (fiber and powder) for either crop species (oat and soybean). Overall, PLA based bio-MPs may not pose a significant threat to agroecosystem functions in the short term (days to months) in the field, thus may provide a viable environmentally benign solution to replace traditional non-biodegradable plastics in agroecosystems.
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