Photocatalytic Degradation of Microplastics: Parameters Affecting Degradation

E. Kinyua, G. Nyakairu, E. Tebandeke, N. Odume
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Abstract

Recently, microplastics have emerged as a major environmental pollutant and have been documented globally. Several studies have shown that microplastics can accumulate heavy metals and persistent organic pollutants as they pass through the environment due to their functional groups interacting with and complex these substances. While conventional wastewater treatment methods can reduce a significant amount of microplastics, many still make their way into rivers and oceans worldwide from their effluents. One of the promising approaches to wastewater cleaning is photocatalysis. Although it has demonstrated a great potential for microplastic degradation, most trials are still lab-based and need to be scaled up for actual use. A crucial factor in determining the technology's capital cost for practical implementation is having a solid grasp of the kinetics and rate of degradation. In order to scale up the approach, it is necessary to optimize several operational parameters, such as surface area, temperature, the impact of pH, and light. This research examines various developed photocatalysts for the breakdown of microplastics. An in-depth understanding of the best variables for future designs of photocatalytic degradation of microplastic for industrial applications will result from analyzing these variables.
光催化降解微塑料:影响降解的参数
最近,微塑料已经成为一种主要的环境污染物,并在全球范围内得到了记录。几项研究表明,微塑料在通过环境时会积累重金属和持久性有机污染物,因为它们的官能团与这些物质相互作用并使其复杂化。虽然传统的废水处理方法可以减少大量的微塑料,但仍有许多微塑料从废水中进入世界各地的河流和海洋。光催化是一种很有前途的污水净化方法。虽然它已经证明了微塑料降解的巨大潜力,但大多数试验仍然是基于实验室的,需要扩大规模以实际使用。决定该技术实际实施的资本成本的一个关键因素是对动力学和降解速率的牢固掌握。为了扩大这种方法的规模,有必要优化几个操作参数,如表面积、温度、pH值的影响和光。本研究考察了用于微塑料分解的各种已开发的光催化剂。通过对这些变量的分析,可以深入了解用于工业应用的微塑料光催化降解未来设计的最佳变量。
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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