Department of Chemistry, Edo State University Uzairue, Edo State, Nigeria.
Department of Chemistry, Ibrahim Badamasi Babangida University Lapai, Lapai, Nigeria.
Environ Monit Assess. 2022 Nov 15;195(1):111. doi: 10.1007/s10661-022-10614-7.
Heavy metal contamination of the environment has become an alarming environmental issue that has constituted serious threats to humans and the ecosystem. These metals have been identified as a priority class of pollutants due to their persistency in the environment and their potential to bioaccumulate in biological systems. Consequently, the remediation of heavy metals from various environmental matrices becomes a critical topic from the biological and environmental perspectives. To this end, various research interests have shifted to the need to put forward economically feasible and highly efficient approaches for mitigating these contaminants in the environment. Thus, numerous conventional approaches have reportedly been employed for the remediation of heavy metals, with each of the methods having its inherent limitations. More recently, studies have revealed that nanomaterials in their various forms show unique potential for the removal of various contaminants including heavy metals in comparison to their bulk counterparts making them a topic of importance to researchers in various fields. Also, various studies have documented specifically tailored nanomaterials that have been synthesized for the removal of heavy metals from various environmental matrices. This review provides up-to-date information on the application of nanotechnology for the remediation of heavy metals. It highlights various nanomaterials that have been employed for the remediation of heavy metals, current details on their methods of synthesis, factors affecting their adsorption processes, and the environmental and health impact of nanomaterials. Finally, it provides the challenges and future trends of nanomaterials for heavy metal removal.
重金属污染已经成为一个令人担忧的环境问题,对人类和生态系统构成了严重威胁。由于这些金属在环境中具有持久性,并且有可能在生物系统中生物累积,因此它们被确定为优先污染物类别。因此,从生物和环境的角度来看,修复各种环境基质中的重金属成为一个关键问题。为此,各种研究兴趣已经转向需要提出经济可行且高效的方法来减轻环境中的这些污染物。因此,据报道,已经采用了许多常规方法来修复重金属,每种方法都有其固有的局限性。最近的研究表明,与块状材料相比,各种形式的纳米材料在去除各种污染物(包括重金属)方面表现出独特的潜力,这使它们成为各个领域研究人员关注的重要课题。此外,还专门合成了各种针对去除各种环境基质中的重金属的定制纳米材料。本综述提供了有关纳米技术在修复重金属方面的应用的最新信息。它强调了已经用于修复重金属的各种纳米材料,目前关于它们的合成方法、影响其吸附过程的因素以及纳米材料的环境和健康影响的详细信息。最后,它提供了纳米材料去除重金属的挑战和未来趋势。