利用壳聚糖作为天然凝结剂去除聚乙烯微塑料

Susiana Prasetyo, Christopher A. Santos, Asaf K. Sugih, Hans Kristianto
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引用次数: 0

摘要

塑料的广泛使用导致了环境污染和健康问题,因为它的持久性和微塑料的形成-小于5 毫米的颗粒是由较大的塑料分解产生的。这些微塑料构成了严重的环境威胁,特别是在水生生态系统中,它们是污染物的载体。人们已经探索了包括混凝在内的各种处理方法来减轻微塑料污染。在混凝剂中,壳聚糖(一种从几丁质中提取的天然多糖)由于其有效性和环境相容性而显示出前景。研究了壳聚糖对合成废水中聚乙烯微塑料的去除效果,重点考察了pH值和混凝剂用量的影响。结果表明,当pH为6.0,壳聚糖用量为100 mg/L时,以电荷中和为主要混凝机制,混凝效率最高,去除率为81.5 %。这些发现强调了壳聚糖作为减轻水处理中微塑料污染的环保方法的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of chitosan as a natural coagulant for polyethylene microplastic removal
The widespread use of plastic has led to environmental pollution and health issues due to its persistence and the formation of microplastics—particles smaller than 5 mm that arise from the breakdown of larger plastics. These microplastics pose significant environmental threats, especially in aquatic ecosystems, where they act as carriers for pollutants. Various treatment methods, including coagulation, have been explored to mitigate microplastic pollution. Among coagulants, chitosan—a natural polysaccharide derived from chitin—has shown promise due to its effectiveness and environmental compatibility. This study investigates the use of chitosan to remove polyethylene microplastics in synthetic wastewater, focusing on the effects of pH and coagulant dose. The results indicate that the highest coagulation efficiency, achieving an 81.5 % removal, occurs at a pH of 6.0 with a chitosan dose of 100 mg/L via charge neutralization as the primary coagulation mechanism. These findings emphasize chitosan's potential as an environmentally friendly approach to mitigating microplastic pollution in water treatment.
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