Hassan Shahnawaz, Bhat Sartaj Ahmad, Kumar Vineet, Ganai Bashir Ahmad, Ameen Fuad
Department of Environmental Science, University of Kashmir, Srinagar 190006, India.
River Basin Research Center, Gifu University, 1-1 Yanagido, Gifu 501-1193, Japan.
Plants (Basel). 2022 May 6;11(9):1255. doi: 10.3390/plants11091255.
Environmental contamination is triggered by various anthropogenic activities, such as using pesticides, toxic chemicals, industrial effluents, and metals. Pollution not only affects both lotic and lentic environments but also terrestrial habitats, substantially endangering plants, animals, and human wellbeing. The traditional techniques used to eradicate the pollutants from soil and water are considered expensive, environmentally harmful and, typically, inefficacious. Thus, to abate the detrimental consequences of heavy metals, phytoremediation is one of the sustainable options for pollution remediation. The process involved is simple, effective, and economically efficient with large-scale extensive applicability. This green technology and its byproducts have several other essential utilities. Phytoremediation, in principle, utilizes solar energy and has an extraordinary perspective for abating and assembling heavy metals. The technique of phytoremediation has developed in contemporary times as an efficient method and its success depends on plant species selection. Here in this synthesis, we are presenting a scoping review of phytoremediation, its basic principles, techniques, and potential anticipated prospects. Furthermore, a detailed overview pertaining to biochemical aspects, progression of genetic engineering, and the exertion of macrophytes in phytoremediation has been provided. Such a promising technique is economically effective as well as eco-friendly, decontaminating and remediating the pollutants from the biosphere.
环境污染是由各种人为活动引发的,如使用农药、有毒化学品、工业废水和金属。污染不仅影响流水和静水环境,还影响陆地栖息地,严重危及植物、动物和人类健康。用于从土壤和水中清除污染物的传统技术被认为成本高昂、对环境有害且通常效率低下。因此,为了减轻重金属的有害影响,植物修复是污染修复的可持续选择之一。所涉及的过程简单、有效且经济高效,具有大规模广泛适用性。这种绿色技术及其副产品还有其他几个重要用途。原则上,植物修复利用太阳能,在减少和聚集重金属方面具有非凡的前景。植物修复技术在当代已发展成为一种有效的方法,其成功取决于植物物种的选择。在本综述中,我们对植物修复、其基本原理、技术和潜在预期前景进行了范围界定审查。此外,还提供了有关生化方面、基因工程进展以及大型植物在植物修复中的作用的详细概述。这样一种有前景的技术既经济有效又环保,能够净化和修复生物圈中的污染物。