School of Environment, Tsinghua University, Beijing 100084, China.
Korea Biochar Research Center, APRU Sustainable Waste Management Program & Division of Environmental Science and Ecological Engineering, Korea University, Seoul 02841, Republic of Korea.
J Hazard Mater. 2022 May 15;430:128503. doi: 10.1016/j.jhazmat.2022.128503. Epub 2022 Feb 16.
Microplastic (MP), an emerging contaminant, is globally prevalent and poses potential environmental threats and ecological risks to both aquatic and terrestrial ecosystems. When MPs enter into natural environments, they may serve as artificial substrates for microbial colonization and plastisphere formation, providing new ecological niches for microorganisms. Recent studies of the plastisphere have focused on aquatic ecosystems. However, our understanding of the soil plastisphere e.g. its formation process, microbial ecology, co-transport of organic pollutants and heavy metals, and effects on biogeochemical processes is still very limited. This review summarizes latest methods used to explore the soil plastisphere, assesses the factors influencing the microbial ecology of the soil plastisphere, and sheds light on potential ecological risks caused by the soil plastisphere. The formation and succession of soil plastisphere communities can be driven by MP characteristics and soil environmental factors. The soil plastisphere may affect a series of ecological processes, especially the co-transport of environmental contaminants, biodegradation of MPs, and soil carbon cycling. We aim to narrow the knowledge gap between the soil and aquatic plastisphere, and provide valuable guidance for future research on the soil plastisphere in MP-contaminated soils.
微塑料(MP)作为一种新兴污染物,在全球范围内广泛存在,对水生和陆地生态系统均构成潜在的环境威胁和生态风险。当 MPs 进入自然环境时,它们可能成为微生物定殖和塑料体形成的人工基质,为微生物提供新的生态位。目前,对塑料体的研究主要集中在水生生态系统。然而,我们对土壤塑料体的了解,例如其形成过程、微生物生态学、有机污染物和重金属的共同迁移以及对生物地球化学过程的影响,仍然非常有限。本综述总结了最新用于探索土壤塑料体的方法,评估了影响土壤塑料体微生物生态学的因素,并探讨了土壤塑料体可能带来的潜在生态风险。土壤塑料体群落的形成和演替可以受到 MP 特征和土壤环境因素的驱动。土壤塑料体可能会影响一系列生态过程,特别是环境污染物的共同迁移、MP 的生物降解以及土壤碳循环。我们旨在缩小土壤和水生塑料体之间的知识差距,并为未来研究 MP 污染土壤中的土壤塑料体提供有价值的指导。