Centre for Nanobiotechnology, Vellore Institute of Technology, Vellore, Tamil Nadu, 632014, India.
Departamento de Bioloxía Vexetal e Ciencias do Solo, Área de Edafoloxía e Química Agrícola, Facultade de Ciencias de Ourense, Universidade de Vigo, As Lagoas S/N, 32004, Ourense, Spain.
Environ Geochem Health. 2024 Feb 17;46(3):85. doi: 10.1007/s10653-023-01800-8.
The instantaneous growth of the world population is intensifying the pressure on the agricultural sector. On the other hand, the critical climate changes and increasing load of pollutants in the soil are imposing formidable challenges on agroecosystems, affecting productivity and quality of the crops. Microplastics are among the most prevalent pollutants that have already invaded all terrestrial and aquatic zones. The increasing microplastic concentration in soil critically impacts crop plants growth and yield. The current review elaborates on the behaviors of microplastics in soil and their impact on soil quality and plant growth. The study shows that microplastics alter the soil's biophysical properties, including water-holding capacity, bulk density, aeration, texture, and microbial composition. In addition, microplastics interact with multiple pollutants, such as polyaromatic hydrocarbons and heavy metals, making them more bioavailable to crop plants. The study also provides a detailed insight into the current techniques available for the isolation and identification of soil microplastics, providing solutions to some of the critical challenges faced and highlighting the research gaps. In our study, we have taken a holistic, comprehensive approach by analysing and comparing various interconnected aspects to provide a deeper understanding of all research perspectives on microplastics in agroecosystems.
世界人口的瞬间增长正在加剧农业部门的压力。另一方面,气候变化的临界点和土壤中污染物负荷的增加,给农业生态系统带来了巨大的挑战,影响了作物的生产力和质量。微塑料是最普遍的污染物之一,已经侵入了所有陆地和水生区。土壤中微塑料浓度的增加严重影响了作物的生长和产量。本综述详细阐述了微塑料在土壤中的行为及其对土壤质量和植物生长的影响。研究表明,微塑料改变了土壤的生物物理特性,包括持水能力、容重、通气性、质地和微生物组成。此外,微塑料与多环芳烃和重金属等多种污染物相互作用,使它们更容易被作物吸收。该研究还详细介绍了目前用于分离和识别土壤微塑料的技术,为解决面临的一些关键挑战提供了方案,并强调了研究差距。在我们的研究中,我们通过分析和比较各种相互关联的方面,采取了一种整体、全面的方法,提供了对农业生态系统中微塑料所有研究观点的更深入理解。