Department of Botany, Bangabasi Evening College, University of Calcutta, Kolkata- 700009, West Bengal, India.
University School of Environment and Management, Guru Gobind Singh Indraprastha University, Dwarka, Delhi- 110078, India.
Chemosphere. 2023 Dec;344:140337. doi: 10.1016/j.chemosphere.2023.140337. Epub 2023 Oct 3.
Polycyclic aromatic hydrocarbons (PAHs) are pervasive in the atmosphere and are one of the emerging pollutants that cause harmful effects in living systems. There are some natural and anthropogenic sources that can produce PAHs in an uncontrolled way. Several health hazards associated with PAHs like abnormality in the reproductive system, endocrine system as well as immune system have been explained. The mutagenic or carcinogenic effects of hydrocarbons in living systems including algae, vertebrates and invertebrates have been discussed. For controlling PAHs, biodegradation has been suggested as an effective and eco-friendly process. Microalgae-based biosorption and biodegradation resulted in the removal of toxic contaminants. Microalgae both in unialgal form and in consortium (with bacteria or fungi) performed good results in bioaccumulation and biodegradation. In the present review, we highlighted the general information about the PAHs, conventional versus advanced technology for removal. In addition microalgae based removal and toxicity is discussed. Furthermore this work provides an idea on modern scientific applications like genetic and metabolic engineering, nanomaterials-based technologies, artificial neural network (ANN), machine learning (ML) etc. As rapid and effective methods for bioremediation of PAHs. With several pros and cons, biological treatments using microalgae are found to be better for PAH removal than any other conventional technologies.
多环芳烃(PAHs)广泛存在于大气中,是造成生活系统有害影响的新兴污染物之一。一些自然和人为的来源可以以不受控制的方式产生 PAHs。已经解释了与 PAHs 相关的一些健康危害,如生殖系统、内分泌系统和免疫系统的异常。已经讨论了烃类物质在包括藻类、脊椎动物和无脊椎动物在内的生命系统中的诱变或致癌作用。为了控制 PAHs,生物降解被认为是一种有效且环保的过程。基于微藻的生物吸附和生物降解导致有毒污染物的去除。微藻无论是在单一藻类形式还是在与细菌或真菌的共生体中,都在生物积累和生物降解方面表现出良好的效果。在本综述中,我们强调了有关 PAHs 的一般信息,包括去除 PAHs 的传统技术和先进技术。此外,还讨论了基于微藻的去除和毒性。此外,这项工作为现代科学应用提供了一些思路,如遗传和代谢工程、基于纳米材料的技术、人工神经网络(ANN)、机器学习(ML)等,这些都是 PAHs 生物修复的快速有效的方法。由于存在多种优缺点,使用微藻的生物处理被发现比任何其他传统技术更适合去除 PAHs。