Research progress on degradation of biodegradable micro-nano plastics and its toxic effect mechanism on soil ecosystem

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
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Abstract

Biodegradable plastics (BPs) are known to decompose into micro-nano plastics (BMNPs) more readily than conventional plastics (CPs). Given the environmental risks posed by BMNPs in soil ecosystems, their impact has garnered increasing attention. However, research focusing on the toxic effects of BMNPs on soils remains relatively limited. The degradation process and duration of BMNPs in soil are influenced by numerous factors, which directly impact the toxic effects of BMNPs. This highlights the urgent need for further research. In this context, this review delineates the classification of BPs, investigates the degradation processes of BPs along with their influencing factors, summarizes the toxic effects on soil ecosystems, and explores the potential mechanisms that underlie these toxic effects. Finally, it provides an outlook on related research concerning BMNPs in soil. The results indicate that specific BMNPs release additives at a faster rate during decomposition, degradation, and aging, with certain compounds exhibiting increased bioavailability. Importantly, a substantial body of research has shown that BMNPs generally manifest more pronounced toxic effects in comparison to conventional micro-nano plastics (CMNPs). The toxic effects associated with BMNPs encompass a decline in soil quality and microbial biomass, disruption of nutrient cycling, inhibition of plant root growth, and negative impacts on invertebrate reproduction, survival, and fertilization rates. The rough and complex surfaces of BMNPs contribute to increased mechanical damage to tested organisms, enhance absorption by microorganisms, and disrupt normal physiological functions. Notably, the toxic effects of BMNPs on soil ecosystems are influenced by factors including concentration, type of BMNPs, exposure conditions, degradation products, and the nature of additives used. Therefore, it is crucial to standardize detection technologies and toxicity testing conditions for BMNPs. In conclusion, this review provides scientific evidence that supports effective prevention and management of BMNP pollution, assessment of its ecological risks, and governance of BMNPs-related products.

Abstract Image

可生物降解微纳米塑料降解及其对土壤生态系统毒害作用机制的研究进展
众所周知,生物降解塑料(BPs)比传统塑料(CPs)更容易分解成微纳米塑料(BMNPs)。鉴于 BMNPs 在土壤生态系统中造成的环境风险,其影响已引起越来越多的关注。然而,有关 BMNPs 对土壤毒性影响的研究仍相对有限。BMNPs 在土壤中的降解过程和持续时间受到多种因素的影响,这些因素直接影响到 BMNPs 的毒性效应。这凸显了进一步研究的迫切性。在此背景下,本综述划分了 BPs 的分类,研究了 BPs 的降解过程及其影响因素,总结了其对土壤生态系统的毒性效应,并探讨了这些毒性效应的潜在机制。最后,报告对土壤中 BMNPs 的相关研究进行了展望。研究结果表明,特定的 BMNPs 在分解、降解和老化过程中会以更快的速度释放添加剂,其中某些化合物的生物利用率更高。重要的是,大量研究表明,与传统的微纳米塑料(CMNPs)相比,BMNPs 通常会产生更明显的毒性效应。与 BMNPs 相关的毒性效应包括:土壤质量和微生物生物量下降,养分循环受到破坏,植物根系生长受到抑制,以及对无脊椎动物的繁殖、存活和受精率产生负面影响。BMNPs 粗糙而复杂的表面增加了对受测生物的机械损伤,促进了微生物的吸收,并破坏了正常的生理功能。值得注意的是,BMNPs 对土壤生态系统的毒性效应受多种因素的影响,包括浓度、BMNPs 类型、暴露条件、降解产物以及所用添加剂的性质。因此,规范 BMNPs 的检测技术和毒性测试条件至关重要。总之,本综述为有效预防和管理 BMNP 污染、评估其生态风险以及治理 BMNPs 相关产品提供了科学依据。
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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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