Department of Biochemistry, University of Agriculture, Faisalabad, 38000, Pakistan.
Department of Chemistry, School of Natural Sciences, National University of Sciences & Technology, Islamabad 44000, Pakistan.
Chemosphere. 2022 Feb;289:133252. doi: 10.1016/j.chemosphere.2021.133252. Epub 2021 Dec 10.
Nanotechnology, as an emerging science, has taken over all fields of life including industries, health and medicine, environmental issues, agriculture, biotechnology etc. The use of nanostructure molecules has revolutionized all sectors. Environmental pollution is a great concern now a days, in all industrial and developing as well as some developed countries. A number of remedies are in practice to overcome this problem. The application of nanotechnology in the bioremediation of environmental pollutants is a step towards revolution. The use of various types of nanoparticles (TiO based NPs, dendrimers, Fe based NPs, Silica and carbon nanomaterials, Graphene based NPs, nanotubes, polymers, micelles, nanomembranes etc.) is in practice to diminish environmental hazards. For this many In-situ (bioventing, bioslurping, biosparging, phytoremediation, permeable reactive barrier etc.) and Ex-situ (biopile, windrows, bioreactors, land farming etc.) methodologies are employed. Improved properties like nanoscale size, less time utilization, high adaptability for In-situ and Ex-situ use, undeniable degree of surface-region to-volume proportion for possible reactivity, and protection from ecological elements make nanoparticles ideal for natural applications. There are distinctive nanomaterials and nanotools accessible to treat the pollutants. Each of these methods and nanotools depends on the properties of foreign substances and the pollution site. The current designed review highlights the techniques used for bioremediation of environmental pollutants as well as use of various nanoparticles along with proposed In-situ and Ex-situ bioremediation techniques.
纳米技术作为一门新兴科学,已经涵盖了包括工业、健康和医学、环境问题、农业、生物技术等在内的所有生活领域。纳米结构分子的使用彻底改变了各个领域。环境污染是当今所有工业和发展中国家以及一些发达国家的一个主要关注点。目前有许多补救措施来解决这个问题。将纳米技术应用于环境污染物的生物修复是朝着革命迈出的一步。各种类型的纳米颗粒(基于 TiO 的 NPs、树枝状大分子、基于 Fe 的 NPs、二氧化硅和碳纳米材料、基于石墨烯的 NPs、纳米管、聚合物、胶束、纳米膜等)的应用正在减少环境危害。为此,许多原位(生物通风、生物抽吸、生物喷射、植物修复、可渗透反应屏障等)和异位(生物堆、堆肥、生物反应器、土地耕作等)方法都在使用。改善的特性,如纳米级尺寸、更少的时间利用、对原位和异位使用的高度适应性、可能反应的表面区域与体积比例的不可否认程度以及对生态元素的保护,使纳米颗粒成为天然应用的理想选择。有独特的纳米材料和纳米工具可用于处理污染物。这些方法和纳米工具中的每一种都取决于有害物质的性质和污染地点。当前设计的综述强调了用于环境污染物生物修复的技术以及各种纳米颗粒的使用以及原位和异位生物修复技术的应用。