Comparison of Methodologies for Microplastic Isolation through Multicriteria Analysis (AHP)

Valentina Phinikettou, I. Papamichael, I. Voukkali, A. Zorpas
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Abstract

Environmental pollution caused by microplastics has evolved into a global concern; however, limited knowledge exists about microplastics in soils due to the absence of standardized extraction methods. This research aimed to develop an inexpensive, rapid method with user-friendly and environmentally sustainable outcomes for microplastics retrieval. Three salt solutions (Sodium Chloride, Magnesium Sulfate, Sodium Hexametaphosphate) and an oil solution (canola oil) underwent evaluation for microplastics extraction through the flotation process due to the density and oleophilic properties of plastics. Four widely used plastic types, obtained through fragmentation using a grinding mill from clean new plastic containers or membranes, were subjected to analysis. The experimental procedures for microplastics retrieval varied among the evaluated solutions. Through a comprehensive multicriteria analysis, the saturated Sodium Chloride solution emerged as the optimal scenario for microplastics extraction, followed closely by the canola oil scenario. The recovery method utilizing Sodium Chloride demonstrated economic feasibility, safety, and reliability. This study provides valuable insights into an effective and sustainable approach for mitigating microplastic pollution in soil, offering a promising avenue for future environmental conservation efforts.
通过多标准分析(AHP)比较微塑料隔离方法
微塑料造成的环境污染已成为全球关注的问题;然而,由于缺乏标准化的提取方法,人们对土壤中微塑料的了解十分有限。本研究旨在开发一种成本低廉、快速、用户友好且环境可持续的微塑料提取方法。由于塑料的密度和亲油特性,研究人员对三种盐溶液(氯化钠、硫酸镁和六偏磷酸钠)和一种油溶液(菜籽油)进行了评估,以通过浮选过程提取微塑料。对四种广泛使用的塑料进行了分析,这四种塑料是从干净的新塑料容器或薄膜中用研磨机破碎得到的。不同评估方案的微塑料回收实验程序各不相同。通过综合多标准分析,饱和氯化钠溶液成为提取微塑料的最佳方案,菜籽油方案紧随其后。利用氯化钠的回收方法证明了其经济可行性、安全性和可靠性。这项研究为减轻土壤中微塑料污染的有效和可持续方法提供了宝贵的见解,为未来的环境保护工作提供了一条前景广阔的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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