Faculty of Environmental Science, VNU University of Science, Vietnam National University, Hanoi, Viet Nam.
Faculty of Environmental Science, VNU University of Science, Vietnam National University, Hanoi, Viet Nam.
Chemosphere. 2021 Mar;267:129275. doi: 10.1016/j.chemosphere.2020.129275. Epub 2020 Dec 10.
Currently, the global production and usage of plastics have increased rapidly with the expansion of synthetic polymers. Since plastics' degradation processes are prolonged and thus microplastics (MPs) potentially persist for very long periods in the environment. To date, there is a need for knowledge on the relevance of different potential entry pathways and the number of MPs entering the environment via different routes. Despite the vast quantity of studies that have been undertaken, many unanswered issues remain about the environmental impacts of MPs. The real impacts on a population subjected to many MPs of different structure, dimensions, and shapes over a lifetime are still hard to elucidate. Significantly, MPs can accumulate toxic substances, such as persistent organic pollutants, on their material surface. Hence, it represents a potential concentrated source of environmental pollution or acts as a vector of toxic pollutants in the food chain's interconnection with some severe health implications. Herein, we mainly discussed the global challenges in MPs, including the current production and use status of plastics and their impact on the environment. Additionally, finding the degradation of tiny fragment plastics (MPs level) is essential to remove plastics altogether. Some of the approaches to methods, including biodegradation, physical degradation, physicochemical degradation, have been successfully reviewed. More importantly, the sustainable concepts of using microorganisms and photocatalysis for MPs' degradation have been successfully proposed and demonstrated.
目前,随着合成聚合物的扩张,塑料的全球生产和使用迅速增加。由于塑料的降解过程漫长,因此微塑料(MPs)在环境中可能会持续存在很长时间。迄今为止,需要了解不同潜在进入途径的相关性以及通过不同途径进入环境的 MPs 的数量。尽管已经进行了大量的研究,但关于 MPs 的环境影响仍有许多未解决的问题。对于一生中接触到许多不同结构、尺寸和形状的 MPs 的人群的实际影响仍然难以阐明。重要的是,MPs 可以在其材料表面上积累有毒物质,如持久性有机污染物。因此,它代表了环境污染的潜在集中来源,或者作为食物链相互连接中有毒污染物的载体,具有一些严重的健康影响。在此,我们主要讨论了 MPs 的全球挑战,包括塑料的当前生产和使用状况及其对环境的影响。此外,寻找微小碎片塑料(MPs 水平)的降解方法对于彻底清除塑料至关重要。已经成功地综述了一些方法,包括生物降解、物理降解、物理化学降解。更重要的是,已经成功提出并证明了使用微生物和光催化进行 MPs 降解的可持续概念。