Department of Plant Biotechnology, Atta-ur-Rahman School of Applied Biosciences, National University of Sciences and Technology, Islamabad, Pakistan.
Department of Agronomy, Faculty of Crop Production Sciences, The University of Agriculture Peshawar, Pakistan; Plant Science Research Unit, USDA-ARS, Raleigh, NC, USA.
Environ Pollut. 2023 Sep 1;332:121810. doi: 10.1016/j.envpol.2023.121810. Epub 2023 May 16.
Plastics have become an emerging pollutant threatening the sustainability of agroecosystems and global food security. Biochar, a pro-ecosystem/negative carbon emission technology can be exploited as a circular approach for the conservation of plastics contaminated agricultural soils. However, relatively few studies have focused on the effects of biochar on plant growth and soil biochemical properties in a microplastic contaminated soil. This study investigated the effects of a cotton stalk (Gossypium hirsutum L.) biochar on plant growth, soil microbes, and enzyme activity in PVC microplastic (PVC-MPs) contaminated soil. Biochar amendment increased shoot dry matter production in PVC-MPs contaminated soil. However, PVC-MPs alone significantly reduced the soil urease and dehydrogenase activity, soil organic and microbial biomass carbon, bacterial/fungal community percentage, and their abundance (16S rRNA and 18S rRNA genes, respectively). Interestingly, biochar amendment with PVC-MPs significantly alleviated the hazardous effects. Principal component and redundancy analysis of the soil properties, bacterial 16S rRNA genes, and fungal ITS in the biochar-amended PVC-MPs treatments revealed that the observed traits formed an obvious cluster compared to non-biochar treatments. To sum up, this study indicated that PVC-MPs contamination was not benign, while biochar shielded the hazardous effects and sustained soil microbial functionality.
塑料已成为威胁农业生态系统可持续性和全球粮食安全的新兴污染物。生物炭作为一种有利于生态系统/负碳排放的技术,可以被开发为一种保护受塑料污染的农业土壤的循环方法。然而,很少有研究关注生物炭对微塑料污染土壤中植物生长和土壤生化特性的影响。本研究调查了棉花秸秆(Gossypium hirsutum L.)生物炭对聚氯乙烯微塑料(PVC-MPs)污染土壤中植物生长、土壤微生物和酶活性的影响。生物炭的添加增加了 PVC-MPs 污染土壤中地上部分干物质的产生。然而,单独的 PVC-MPs 显著降低了土壤脲酶和脱氢酶活性、土壤有机碳和微生物生物量碳、细菌/真菌群落百分比及其丰度(16S rRNA 和 18S rRNA 基因)。有趣的是,生物炭与 PVC-MPs 的共添加显著减轻了其危害性。土壤特性、细菌 16S rRNA 基因和真菌 ITS 的主成分和冗余分析表明,与非生物炭处理相比,观察到的特征形成了一个明显的聚类。总之,本研究表明,PVC-MPs 污染并非良性的,而生物炭则减轻了其危害性并维持了土壤微生物功能。