Habuda-Stanić Mirna, Nujić Marija
Josip Juraj Strossmayer University of Osijek, Faculty of Food Technology Osijek, Mirna Habuda-Stanić, Franje Kuhača 20, 31000, Osijek, Croatia,
Environ Sci Pollut Res Int. 2015 Jun;22(11):8094-123. doi: 10.1007/s11356-015-4307-z. Epub 2015 Mar 21.
Contamination of natural waters with arsenic, which is both toxic and carcinogenic, is widespread. Among various technologies that have been employed for arsenic removal from water, such as coagulation, filtration, membrane separation, ion exchange, etc., adsorption offers many advantages including simple and stable operation, easy handling of waste, absence of added reagents, compact facilities, and generally lower operation cost, but the need for technological innovation for water purification is gaining attention worldwide. Nanotechnology is considered to play a crucial role in providing clean and affordable water to meet human demands. This review presents an overview of nanoparticles and nanobased adsorbents and its efficiencies in arsenic removal from water. The paper highlights the application of nanomaterials and their properties, mechanisms, and advantages over conventional adsorbents for arsenic removal from contaminated water.
天然水体受到有毒且致癌的砷污染的情况很普遍。在已用于从水中去除砷的各种技术中,如混凝、过滤、膜分离、离子交换等,吸附具有许多优点,包括操作简单稳定、易于处理废物、无需添加试剂、设备紧凑且通常运行成本较低,但水净化技术创新的需求正在全球范围内受到关注。纳米技术被认为在提供清洁且价格合理的水以满足人类需求方面起着关键作用。本综述概述了纳米颗粒和基于纳米的吸附剂及其从水中去除砷的效率。本文重点介绍了纳米材料在从受污染水中去除砷方面的应用及其特性、机制以及相对于传统吸附剂的优势。