Department of Environmental Engineering, Delhi Technological University, Shahbad Daulatpur, Delhi, 110042, India.
Solaris Chemtech Industries, Bhuj, Gujarat, India.
J Environ Manage. 2023 Sep 15;342:118254. doi: 10.1016/j.jenvman.2023.118254. Epub 2023 Jun 7.
Chlorophenols represent one of the most abundant families of toxic pollutants emerging from various industrial manufacturing units. The toxicity of these chloroderivatives is proportional to the number and position of chlorine atoms on the benzene ring. In the aquatic environment, these pollutants accumulate in the tissues of living organisms, primarily in fishes, inducing mortality at an early embryonic stage. Contemplating the behaviour of such xenobiotics and their prevalence in different environmental components, it is crucial to understand the methods used to remove/degrade the chlorophenol from contaminated environment. The current review describes the different treatment methods and their mechanism towards the degradation of these pollutants. Both abiotic and biotic methods are investigated for the removal of chlorophenols. Chlorophenols are either degraded through photochemical reactions in the natural environment, or microbes, the most diverse communities on earth, perform various metabolic functions to detoxify the environment. Biological treatment is a slow process because of the more complex and stable structure of pollutants. Advanced Oxidation Processes are effective in degrading such organics with enhanced rate and efficiency. Based on their ability to generate hydroxyl radicals, source of energy, catalyst type, etc., different processes such as sonication, ozonation, photocatalysis, and Fenton's process are discussed for the treatment or remediation efficiency towards the degradation of chlorophenols. The review entails both advantages and limitations of treatment methods. The study also focuses on reclamation of chlorophenol-contaminated sites. Different remediation methods are discussed to restore the degraded ecosystem back in its natural condition.
氯酚类化合物是一类广泛存在于各种工业制造单元中的毒性污染物,代表了其中数量最多的家族之一。这些氯化衍生物的毒性与其苯环上氯原子的数量和位置成正比。在水生环境中,这些污染物会在生物体的组织中积累,主要是鱼类,在早期胚胎阶段就会导致其死亡。考虑到这些外来生物的行为及其在不同环境成分中的普遍性,了解去除/降解受污染环境中氯酚的方法至关重要。本综述描述了不同的处理方法及其降解这些污染物的机制。对于去除氯酚,非生物和生物方法都进行了研究。氯酚可以通过自然环境中的光化学反应降解,也可以通过地球上最多样化的微生物群落进行各种代谢功能来解毒环境。由于污染物的结构更复杂、更稳定,生物处理是一个缓慢的过程。高级氧化工艺可以有效地降解这些有机物,提高降解速度和效率。根据其产生羟基自由基的能力、能源来源、催化剂类型等,讨论了不同的工艺,如声化学、臭氧氧化、光催化和芬顿工艺,以评估它们对降解氯酚的处理或修复效率。该综述涵盖了处理方法的优缺点。该研究还侧重于受氯酚污染场地的修复。讨论了不同的修复方法,以恢复退化的生态系统恢复到其自然状态。