微塑料
萃取(化学)
环境科学
废物管理
环境化学
生化工程
环境工程
工程类
化学
色谱法
作者
Ekta Gupta,Virendra Kumar Mishra,Anju Patel,Pankaj Kumar Srivastava
出处
期刊:NanoImpact
[Elsevier]
日期:2024-07-01
卷期号:35: 100525-100525
标识
DOI:10.1016/j.impact.2024.100525
摘要
The ubiquitousness of microplastics (<5 mm) has become a pressing environmental concern globally due to the extensive use of plastics. Microplastics have been well-studied in aquatic environments but not well-characterized in soils. Present analytical processes to quantify microplastics accurately in soil samples are quite challenging and require improved and validated analytical steps to eliminate the obscurities and biases. We aimed to develop an effective method for the extraction and quantification of microplastics from soil samples. Different ratios of low-(NaCl) and high-density solutions (ZnCl 2 / NaBr) were tested to determine the most efficient combination for density-dependent separation of microplastics from soil. The combination of low- (1:6) and high-density (1:3) solutions {as weight of soil(g)/volume of density solution(ml)} accounted for 95% recovery of the spiked microplastic particles from soil samples. Likewise, different soil-to-solution ratios of H 2 O 2 were tested for the removal of soil organic matter with heating and non-heating steps. Prior removal of organic matter from soil samples achieved a clear supernatant that facilitated 99% recovery of microplastic particles. The validation of individually spiked microplastic particles of small (10-100 μm) and large scale (100-5000 μm) resulted in recovery ranging from 88 to 99%. A validated modified method with prior digestion followed by density-dependent separation was further tested using the field samples with microplastic contamination. The microplastics of different shapes, sizes, colours and polymeric compositions were reported efficiently and well characterized in the field-collected soil samples using this method. • Systematic and improved analytical steps of microplastic estimation are required. • Density dependent separation needs proper ratios of low and high density solutions. • A prior H 2 O 2 based digestion step for soil organic matter removal proved efficient. • A modified combined method has been validated with 99% recovery of spiked particles.
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