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用于水净化的合成膜:现状与展望。

Synthetic membranes for water purification: status and future.

机构信息

Singapore Membrane Technology Centre, Nanyang Environment & Water Research Institute, Nanyang Technological University, Singapore 639798 (Singapore).

出版信息

Angew Chem Int Ed Engl. 2015 Mar 9;54(11):3368-86. doi: 10.1002/anie.201409783. Epub 2015 Jan 22.

Abstract

Membrane technology offers the best options to "drought proof" mankind on an increasingly thirsty planet by purifying seawater or used (waste) water. Although desalination by reverse osmosis (RO) and wastewater treatment by membrane bioreactors are well established the various membrane technologies still need to be significantly improved in terms of separation properties, energy demand and costs. We can now define the ideal characteristics of membranes and advances in material science and novel chemistries are leading to increasingly effective membranes. However developments in membranes must be matched by improved device design and membrane engineering. It is likely that limitations in fluid mechanics and mass transfer will define the upper bounds of membrane performance. Nevertheless major advances and growth over the next 20 years can be anticipated with RO remaining as the key to desalination and reclamation, with other membrane processes growing in support and in niche areas.

摘要

膜技术通过净化海水或使用(废水)水,为日益口渴的星球上的人类“抗旱”提供了最佳选择。尽管反渗透(RO)脱盐和膜生物反应器处理废水已经得到很好的确立,但各种膜技术在分离性能、能源需求和成本方面仍需要显著改进。我们现在可以定义理想的膜特性,材料科学的进步和新的化学物质正在导致越来越有效的膜。然而,膜的发展必须与改进的设备设计和膜工程相匹配。很可能,流体力学和传质的限制将定义膜性能的上限。尽管如此,在接下来的 20 年内,仍有望取得重大进展和增长,RO 仍然是脱盐和回收的关键,其他膜工艺也在支持和利基领域得到发展。

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