Influence of soil characteristics and agricultural practices on microplastic concentrations in sandy soils and their association with heavy metal contamination

IF 3 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Monitoring and Assessment Pub Date : 2024-12-30 DOI:10.1007/s10661-024-13585-z
Akanksha Kumari, Sukalyan Chakraborty
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Abstract

Microplastics (MPs) seriously threaten soil quality and crop health, particularly in agricultural systems using plastic mulch and sewage sludge, with their abundance being strongly influenced by soil properties such as texture, structure, and chemical content. Considering this, the present study assessed MP contamination in arid agricultural soils, focusing on their abundance, morphology, composition, and association with heavy metals to evaluate environmental risks. Soil samples were collected from ten plastic-mulched fields and a control site across a 50 sq. km area. MPs were isolated using density separation and hydrogen peroxide digestion, with morphology categorized through microscopy and polymer composition analysed via FTIR. ICP-OES was used for elemental analysis. Statistical methods, including ANOVA, Pearson’s correlation, scatter plots, and PCA, were applied to examine the influence of soil quality on MP levels. Results showed significantly higher MP concentrations in mulched fields (1412 ± 529 particles) compared to the control (72 ± 41 particles), with MPs primarily consisting of fibres, films, fragments, and microbeads. Positive correlations were observed between MPs and soil properties such as clay content, moisture, and organic matter content. FTIR analysis identified eight polymer types, while heavy metals, mainly Fe and Ni, were found to accumulate within MPs. MP counts were positively correlated with mulching duration (r2 = 0.46 to 0.94), indicating increased contamination over time. These findings emphasize the role of soil properties on MP retention and potential risks posed to soil health and environmental sustainability, stressing the need for strategies to mitigate MP contamination in agriculture.

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土壤特性和农业实践对沙质土壤微塑料浓度的影响及其与重金属污染的关系
微塑料(MPs)严重威胁土壤质量和作物健康,特别是在使用塑料覆盖和污水污泥的农业系统中,它们的丰度受到土壤性质(如质地、结构和化学含量)的强烈影响。考虑到这一点,本研究评估了干旱农业土壤中的MP污染,重点关注它们的丰度、形态、组成以及与重金属的关系,以评估环境风险。土壤样本从10个覆盖了塑料的农田和一个50平方公里的对照地点收集。公里的区域。采用密度分离和双氧水消解法分离MPs,通过显微镜对其形态进行分类,并通过FTIR对聚合物组成进行分析。ICP-OES进行元素分析。统计方法,包括方差分析、Pearson相关、散点图和主成分分析,用于检验土壤质量对MP水平的影响。结果表明,与对照组(72±41个颗粒)相比,覆盖地的MPs浓度(1412±529个颗粒)显著高于对照组(72±41个颗粒),MPs主要由纤维、薄膜、碎片和微珠组成。MPs与粘土含量、水分和有机质含量等土壤性质呈正相关。FTIR分析发现了8种聚合物类型,而重金属,主要是铁和镍,在MPs中积累。MP计数与覆盖时间呈正相关(r2 = 0.46 ~ 0.94),表明污染随时间增加。这些研究结果强调了土壤性质对多聚农药滞留的作用以及对土壤健康和环境可持续性构成的潜在风险,强调需要制定减轻农业中多聚农药污染的战略。
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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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