Bai Runhao, Liu Hongjin, Cui Jixiao, Wu Yan, Guo Xiaoyu, Liu Qin, Liu Qi, Gao Haihe, Yan Changrong, He Wenqing
Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Inner Mongolia Autonomous Region Agriculture Ecology and Resource Protection Center, Huhhot 010011, China.
J Hazard Mater. 2024 Mar 5;465:133472. doi: 10.1016/j.jhazmat.2024.133472. Epub 2024 Jan 10.
Microplastic pollution, a major global concern, has garnered increasing attention in agricultural ecosystem research. China's Hetao Irrigation District, vital for grain production in the Yellow River Basin, lacks sufficient research on microplastic pollution of agricultural soils. This study, based on a detailed background investigation and testing of 47 samples, is the first to elucidate the characteristics and potential influencing factors of microplastics in the Hetao Irrigation District. The abundance of microplastics in the farmland soil ranged from 1810 to 86331 items/kg, with 90% measuring below 180 µm and mainly in film and fragment forms. Predominant polymers were polyethylene (PE, 43.0%) and polyamide (PA, 27.8%). Key pollution influencers were identified as agricultural inputs, with low-density polyethylene (LDPE) being the most extensively used plastic type. The carbonyl index and hydroxyl indices of the detected LDPE microplastics ranged from 0.041 to 0.96 and 0.092 to 1.20, respectively. The study highlights the significance of mulching management and agronomic practices in shaping microplastic characteristics. Potential pollution sources include agricultural inputs, irrigation equipment, domestic waste, and tire wear. Proposed effective strategies include responsible plastic use, robust waste management, and irrigation system upgrades, establishing a foundation for future ecological risk assessments and effective management approaches in the Hetao Irrigation District. ENVIRONMENTAL IMPLICATION: The harmful substances studied in this paper are microplastics, which are widely distributed in the environment and have potential ecological risks. This study is the first to investigate the characteristics of microplastics in farmland soil within the Hetao Irrigation Area, a region that is of critical importance to agricultural production in the Yellow River Basin of China. The study provides comprehensive insights into the factors influencing the characteristics of microplastics and speculates on their sources. These findings offer a novel perspective on the assessment of microplastic contamination in the area and provide valuable recommendations for prevention and control measures.
微塑料污染是一个全球主要关注的问题,在农业生态系统研究中受到越来越多的关注。中国的河套灌区对黄河流域的粮食生产至关重要,但对农业土壤的微塑料污染缺乏充分研究。本研究基于详细的背景调查和对47个样本的检测,首次阐明了河套灌区微塑料的特征和潜在影响因素。农田土壤中微塑料的丰度范围为1810至86331个/千克,90%的微塑料尺寸小于180微米,主要呈薄膜和碎片形式。主要聚合物为聚乙烯(PE,43.0%)和聚酰胺(PA,27.8%)。确定主要污染影响因素为农业投入物,其中低密度聚乙烯(LDPE)是使用最广泛的塑料类型。检测到的LDPE微塑料的羰基指数和羟基指数分别为0.041至0.96和0.092至1.20。该研究强调了地膜覆盖管理和农艺措施对微塑料特征形成的重要性。潜在污染源包括农业投入物、灌溉设备、生活垃圾和轮胎磨损。提出的有效策略包括合理使用塑料、加强废物管理和升级灌溉系统,为河套灌区未来的生态风险评估和有效管理方法奠定了基础。环境影响:本文研究的有害物质是微塑料,其在环境中广泛分布并具有潜在生态风险。本研究首次调查了中国黄河流域对农业生产至关重要的河套灌区农田土壤中微塑料的特征。该研究全面深入地分析了影响微塑料特征的因素并推测了其来源。这些发现为该地区微塑料污染评估提供了新视角,并为预防和控制措施提供了有价值的建议。