Zhang Jiajia, Liu Jiawei, Ding Wencheng, Zhang Baogui, Zhao Meng, Zou Guoyuan, Chen Yanhua
Institute of Plant Nutrition, Resources and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.
College of Land Science and Technology, China Agricultural University, Beijing 100193, China.
J Hazard Mater. 2025 Mar 15;486:137084. doi: 10.1016/j.jhazmat.2024.137084. Epub 2025 Jan 3.
Organic compost is a significant carrier of microplastics (MPs) entering agricultural soil. However, the extent of MPs pollution during composting, a widely employed organic waste treatment technology, remains unknown. This study investigated MPs dynamic pollution characteristics during composting and compost products using agricultural wastes as raw materials and quantitatively evaluated ecological risks of MPs pollution. Sorting/screening before and after composting significantly reduced MPs abundance by 29.4 % and 32.1 %, respectively, but substantial quantities of MPs persisted in final compost products. Microplastics were mainly 0.5-1 mm (30.3 %), colored fibers/fragments composed of PP/PE, PE, or PP. Regardless of whether plastics in raw materials were sorted, composting increased MPs abundance from 5133-7867 items kg in raw materials to 5667-11200 items kg in compost products and smaller MPs (<1 mm) proportion from 48.5 % to 54.4 %, while significantly decreased size from 1328 μm to 1093 μm. After composting, MPs exhibited rougher morphologies (folds, cracks, and grooves) and adhered to more mineral colloids, and the pollution level increased. Collectively, composting treatment enhances MPs pollution risk both during composting process and in compost products. These findings present a theoretical reference for the establishment of limit standards for MPs in organic compost.
有机堆肥是微塑料进入农业土壤的重要载体。然而,作为一种广泛应用的有机废物处理技术,堆肥过程中的微塑料污染程度仍不清楚。本研究调查了以农业废弃物为原料的堆肥及堆肥产品过程中微塑料的动态污染特征,并定量评估了微塑料污染的生态风险。堆肥前后的分拣/筛选分别使微塑料丰度显著降低了29.4%和32.1%,但最终堆肥产品中仍残留大量微塑料。微塑料主要为0.5-1毫米(30.3%),由PP/PE、PE或PP组成的彩色纤维/碎片。无论原料中的塑料是否经过分拣,堆肥都会使微塑料丰度从原料中的5133-7867个/千克增加到堆肥产品中的5667-11200个/千克,使较小微塑料(<1毫米)的比例从48.5%增加到54.4%,同时尺寸从1328微米显著减小到1093微米。堆肥后,微塑料呈现出更粗糙的形态(褶皱、裂缝和凹槽),并附着更多的矿物胶体,污染水平增加。总体而言,堆肥处理在堆肥过程和堆肥产品中都会增加微塑料的污染风险。这些研究结果为制定有机堆肥中微塑料的限量标准提供了理论参考。