微塑料在农业土壤中的积累:存在、潜在影响、提取和当前生物修复方法的证据

Varsha Yadav, Saveena Dhanger, Jaigopal Sharma
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引用次数: 3

摘要

几十年前,微塑料在水生生态系统中的存在得到了证实,但目前的研究表明,微塑料(MPs)是普遍存在的环境问题,并证明了我们的生活被塑化,因为微塑料存在于食物、空气、水和土壤中。陆地生态系统中多聚塑料的存在早已被人们所认识,此外,所有关于微塑料进入农田土壤的证据都表明它们在农田土壤中逐渐积累。虽然以往的研究主要集中在海洋系统,但目前正在研究MPs在农业栽培土壤中日益增加的毒性以及MPs积累引起生物毒性的方面。它们可能会损害作物的产量,使它们的根系无法通过在根系附近积聚而从土壤中吸收水分和养分。MPs已经侵入了陆地食物链,它们已经在牲畜、蚯蚓和农作物的排泄物中被检测到。MPs在与污水污泥、塑料地膜、有机肥和蚯蚓堆肥长期相互作用的农田土壤中含量丰富。本文综述了目前农业土壤中微塑料积累的证据,从而揭示了微塑料对作物植物、土壤特性和土壤微生物的潜在损害,并最终通过食物链到达人类。它还涵盖了土壤微塑料提取、处理和可能的生物修复策略的最新进展。
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Microplastics accumulation in agricultural soil: Evidence for the presence, potential effects, extraction, and current bioremediation approaches
Decades ago, microplastic presence was corroborated in aquatic ecosystem, but revelations from current studies indicate microplastics (MPs) as ubiquitous environmental concern and demonstrate our plasticized life, because of microplastic existent in food, air, water, and soil. Existence of MPs in terrestrial ecosystem is long recognized now and additionally, all the evidence that has been found for microplastic entering the farm soils indicated that they are gradually accumulating in the agricultural soil. While previous studies focused extensively on marine systems, the increasing toxicity of MPs in agricultural cultivated soils and the aspects of MPs being accumulated causing bio-toxification are being looked upon presently. They potentially damage the yield of crop plants making their roots unable to uptake water and nutrients from the soil by accumulating near the roots. MPs have already invaded the terrestrial food chain and they have been detected in excreta of livestock animals along with earthworms and crop plants. MPs are abundant in farm soil that has interacted with sewage-sludge, plastic mulching sheets, organic fertilizers, and vermicompost for a long duration. This review focuses on current evidence of microplastic accumulation in farm soil, thereby enlightening the potential damages to crop plants, soil properties, soil microbes while ultimately reaching humans via the food chain. It also covers the recent advances for soil microplastic extraction, treatment, and possible bioremediation strategies.
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