A review on microplastics degradation with MOF: Mechanism and action

Shibyendu Nikhar , Pawan Kumar , Mitun Chakraborty
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Abstract

Microplastics (MPs) constitute a serious threat to the environment due to their pervasiveness and potential negative effects on various life forms. The quest for novel methods targeting the degradation of MPs has increased in recent years. Recent studies and research, focussed on techniques like biodegradation, thermal degradation, pyrolization and nanoparticle-mediated microplastic degradation as a prominent way to overcome this issue. In the realm of emerging methodologies, metal-organic frameworks (MOFs) exhibit significant potential for MPs degradation. MOFs are highly porous 2D or 3D materials with a large surface area, adaptable chemical composition, and configurable pore size. These properties render MOFs suitable for the adsorption and degradation of MPs. The efficacy of MOF-mediated MPs degradation is dependent on the type of MOF, size, shape of MPs, and environmental conditions. They are also sustainable, efficient, and adaptable materials, making them suited for MPs degradation. This review examines diverse methodologies for the degradation of MPs, encompassing processes such as hydrolysis, oxidation, photo-degradation, bio-mimicking, phase transformation, and photoelectrochemical mechanisms. Future research prospects on the application of MOFs for MP degradation have also been addressed. MOF-mediated MP degradation is still in its infancy, but it has the potential to represent a significant advancement in this area. The last section of the review covers the field's obstacles and constraints, including ways to use MOFs for microplastic clean-up that are economical, environmentally friendly, and technically comprehensive.

利用 MOF 降解微塑料综述:机理与作用
微塑料(MPs)由于其普遍性和对各种生命形式的潜在负面影响,对环境构成了严重威胁。近年来,人们越来越多地寻求降解 MPs 的新方法。最近的研究集中于生物降解、热降解、热解和纳米颗粒介导的微塑料降解等技术,这些技术是解决这一问题的主要方法。在新兴方法领域,金属有机框架(MOFs)在降解 MPs 方面表现出巨大潜力。MOFs 是高度多孔的二维或三维材料,具有较大的表面积、可调整的化学成分和可配置的孔径。这些特性使 MOFs 适合于吸附和降解 MPs。MOF 介导的 MPs 降解效果取决于 MOF 的类型、MPs 的大小和形状以及环境条件。它们也是可持续、高效和适应性强的材料,因此适合用于降解 MPs。本综述探讨了降解 MPs 的各种方法,包括水解、氧化、光降解、生物模拟、相变和光电化学机制等过程。此外,还探讨了应用 MOFs 降解 MP 的未来研究前景。MOF 介导的 MP 降解仍处于起步阶段,但有可能代表这一领域的重大进展。综述的最后一部分涉及该领域的障碍和制约因素,包括如何经济、环保、技术全面地利用 MOFs 进行微塑料清理。
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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