School of Biological Sciences and Engineering, Yachay Tech University, 100119, Urcuquí, Ecuador.
Tissue Regeneration and Repair: Orthobiology, Biomaterials & Tissue Engineering Research Group, UCAM - Universidad Católica de Murcia, Avda. Los Jerónimos 135, Guadalupe, 30107, Murcia, Spain.
J Environ Manage. 2021 Dec 15;300:113737. doi: 10.1016/j.jenvman.2021.113737. Epub 2021 Sep 15.
Persistent Organic Pollutants (POPs) have become a very serious issue for the environment because of their toxicity, resistance to conventional degradation mechanisms, and capacity to bioconcentrate, bioaccumulate and biomagnify. In this review article, the safety, regulatory, and remediation aspects of POPs including aromatic, chlorinated, pesticides, brominated, and fluorinated compounds, are discussed. Industrial and agricultural activities are identified as the main sources of these harmful chemicals, which are released to air, soil and water, impacting on social and economic development of society at a global scale. The main types of POPs are presented, illustrating their effects on wildlife and human beings, as well as the ways in which they contaminate the food chain. Some of the most promising and innovative technologies developed for the removal of POPs from water are discussed, contrasting their advantages and disadvantages with those of more conventional treatment processes. The promising methods presented in this work include bioremediation, advanced oxidation, ionizing radiation, and nanotechnology. Finally, some alternatives to define more efficient approaches to overcome the impacts that POPs cause in the hydric sources are pointed out. These alternatives include the formulation of policies, regulations and custom-made legislation for controlling the use of these pollutants.
持久性有机污染物(POPs)因其毒性、对常规降解机制的抵抗力以及生物浓缩、生物积累和生物放大的能力,已成为环境中一个非常严重的问题。在这篇综述文章中,讨论了包括芳香族、氯化物、农药、溴化和氟化化合物在内的 POPs 的安全性、监管和修复方面。工业和农业活动被确定为这些有害化学物质的主要来源,这些化学物质被释放到空气、土壤和水中,对全球范围内的社会和经济发展产生影响。本文介绍了主要类型的 POPs,说明了它们对野生动物和人类的影响,以及它们污染食物链的方式。讨论了一些为从水中去除 POPs 而开发的最有前途和创新的技术,比较了它们与更传统的处理工艺的优缺点。本文提出的有前途的方法包括生物修复、高级氧化、电离辐射和纳米技术。最后,指出了一些替代方法来定义更有效的方法来克服 POPs 对水污染源造成的影响。这些替代方法包括制定政策、法规和定制立法来控制这些污染物的使用。