Centre for Clinical and Nutritional Chemistry, University of the Punjab, Lahore 54000, Pakistan.
Department of Chemistry, University of Engineering and Technology, Lahore-54000, Pakistan.
J Contam Hydrol. 2024 Jul;265:104380. doi: 10.1016/j.jconhyd.2024.104380. Epub 2024 Jun 4.
Due to rapid urbanization, there have been continuous environmental threats from different pollutants, especially from microplastics. Plastic products rapidly proliferate significantly contributing to the occurrence of micro-plastics, which poses a significant environmental risk. These microplastics originated from diverse sources and are characterized by their persistent and widespread occurrence; human health and the entire ecosystem are adversely affected by them. The removal of microplastics not only requires innovative technologies but also efficient materials capable of effectively eliminating them from our environment. The progress made so far has highlighted the advantages of utilizing the dimensional and structural properties of nanomaterials to increase the effectiveness of existing methods for micro-plastic treatment, aiming for a more sustainable approach to their removal. In the current review, we demonstrate a thorough overview of the sources, occurrences, and potential harmful effects of microplastics, followed by a further discussion of promising technologies used for their removal. An in-depth examination of both advantages and a few limitations of all these given technologies, including physical, chemical, and biological approaches, has been discussed. Additionally, the review explores the use of nanomaterials as an effective means to overcome obstacles and improve the efficiency of microplastic elimination methods. n conclusion, this review addresses, current challenges in this field and outlines the future perspectives for further research in this domain.
由于城市化进程的加快,各种污染物不断对环境构成威胁,尤其是微塑料。塑料制品的迅速普及极大地促成了微塑料的产生,这给环境带来了重大风险。这些微塑料来源多样,具有持久性和广泛存在的特点,对人类健康和整个生态系统都造成了负面影响。去除微塑料不仅需要创新技术,还需要能够有效从环境中清除它们的高效材料。迄今为止的进展强调了利用纳米材料的尺寸和结构特性来提高现有微塑料处理方法效果的优势,旨在寻求更可持续的去除方法。在本综述中,我们全面概述了微塑料的来源、出现情况和潜在的有害影响,接着进一步讨论了用于去除微塑料的有前途的技术。我们深入探讨了所有这些给定技术的优缺点,包括物理、化学和生物方法。此外,本综述还探讨了纳米材料作为克服障碍和提高微塑料消除方法效率的有效手段的应用。总之,本综述讨论了该领域当前的挑战,并概述了该领域未来的研究方向。