Gehrke Ilka, Geiser Andreas, Somborn-Schulz Annette
Fraunhofer Institute for Environmental, Safety and Energy Technology UMSICHT, Oberhausen, Germany.
Nanotechnol Sci Appl. 2015 Jan 6;8:1-17. doi: 10.2147/NSA.S43773. eCollection 2015.
Important challenges in the global water situation, mainly resulting from worldwide population growth and climate change, require novel innovative water technologies in order to ensure a supply of drinking water and reduce global water pollution. Against this background, the adaptation of highly advanced nanotechnology to traditional process engineering offers new opportunities in technological developments for advanced water and wastewater technology processes. Here, an overview of recent advances in nanotechnologies for water and wastewater treatment processes is provided, including nanobased materials, such as nanoadsorbents, nanometals, nanomembranes, and photocatalysts. The beneficial properties of these materials as well as technical barriers when compared with conventional processes are reported. The state of commercialization is presented and an outlook on further research opportunities is given for each type of nanobased material and process. In addition to the promising technological enhancements, the limitations of nanotechnology for water applications, such as laws and regulations as well as potential health risks, are summarized. The legal framework according to nanoengineered materials and processes that are used for water and wastewater treatment is considered for European countries and for the USA.
全球水资源状况面临的重大挑战,主要源于全球人口增长和气候变化,这就需要新颖的创新型水技术,以确保饮用水供应并减少全球水污染。在此背景下,将高度先进的纳米技术应用于传统工艺工程,为先进的水和废水处理工艺的技术发展带来了新机遇。本文提供了水和废水处理工艺中纳米技术的最新进展概述,包括基于纳米的材料,如纳米吸附剂、纳米金属、纳米膜和光催化剂。报告了这些材料的有益特性以及与传统工艺相比的技术障碍。介绍了商业化状况,并针对每种基于纳米的材料和工艺给出了进一步研究机会的展望。除了有前景的技术改进外,还总结了纳米技术在水应用方面的局限性,如法律法规以及潜在的健康风险。考虑了欧洲国家和美国用于水和废水处理的纳米工程材料和工艺的法律框架。