Department of Chemical, Biological, Pharmaceutical and Analytical Sciences (ChiBioFarAm), University of Messina, 98166 Messina, Italy.
Institute for the Study of Nanostructured Materials, ISMN-CNR, Palermo, c/o Department of ChiBioFarAm, University of Messina, 98166 Messina, Italy.
Molecules. 2022 Jul 29;27(15):4856. doi: 10.3390/molecules27154856.
World population growth, with the consequent consumption of primary resources and production of waste, is progressively and seriously increasing the impact of anthropic activities on the environment and ecosystems. Environmental pollution deriving from anthropogenic activities is nowadays a serious problem that afflicts our planet and that cannot be neglected. In this regard, one of the most challenging tasks of the 21st century is to develop new eco-friendly, sustainable and economically-sound technologies to remediate the environment from pollutants. Nanotechnologies and new performing nanomaterials, thanks to their unique features, such as high surface area (surface/volume ratio), catalytic capacity, reactivity and easy functionalization to chemically modulate their properties, represent potential for the development of sustainable, advanced and innovative products/techniques for environmental (bio)remediation. This review discusses the most recent innovations of environmental recovery strategies of polluted areas based on different nanocomposites and nanohybrids with some examples of their use in combination with bioremediation techniques. In particular, attention is focused on eco-friendly and regenerable nano-solutions and their safe-by-design properties to support the latest research and innovation on sustainable strategies in the field of environmental (bio)remediation.
随着世界人口的增长,对初级资源的消耗和废物的产生,人类活动对环境和生态系统的影响正在逐步加剧。如今,人为活动造成的环境污染是一个严重影响我们星球的问题,不容忽视。在这方面,21 世纪最具挑战性的任务之一是开发新的环保、可持续和经济合理的技术,以从污染物中修复环境。纳米技术和新型高性能纳米材料,由于其独特的特性,如高表面积(表面积/体积比)、催化能力、反应性和易于化学修饰以调节其性质的功能化,为开发可持续、先进和创新的环境(生物)修复产品/技术提供了潜力。本文综述了基于不同纳米复合材料和纳米杂化材料的污染区域环境恢复策略的最新创新,并用一些实例说明了它们与生物修复技术结合使用的情况。特别关注环保、可再生的纳米解决方案及其安全设计特性,以支持环境(生物)修复领域可持续策略的最新研究和创新。