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通过光生物处理结合二级反渗透从先进的水净化设施反渗透浓缩物中回收水。

Water Recovery from Advanced Water Purification Facility Reverse Osmosis Concentrate by Photobiological Treatment Followed by Secondary Reverse Osmosis.

机构信息

Pacific Advanced Civil Engineering, Inc. , Fountain Valley , California 92708 , United States.

Department of Chemical and Environmental Engineering , University of Arizona , Tucson , Arizona 85721 , United States.

出版信息

Environ Sci Technol. 2018 Aug 7;52(15):8588-8595. doi: 10.1021/acs.est.8b00951. Epub 2018 Jul 9.

Abstract

Reverse osmosis (RO)-based desalination and advanced water purification facilities have inherent challenges associated with concentrate management and disposal. Although enhanced permeate recovery and concentrate minimization are desired, membrane scaling due to inorganic constituents, such as silica, calcium, phosphate, and iron, hinders the process. To solve this problem, a new diatom-based photobiological process has been developed to remove these scaling constituents by biological uptake and precipitation. In this study, RO concentrate samples were collected from a full-scale advanced water reclamation facility in California and were treated in 3.8 and 57 L photobioreactors inoculated with a brackish water diatom  Pseudostaurosira trainorii PEWL001 using light-emitting diode bulbs or natural sunlight as a light source. The photobiological treatment removed 95% of reactive silica and 64% of calcium and enabled additional water recovery using a secondary RO at a recovery rate up to 66%. This represents 95% overall recovery, including 85% recovery in the primary RO unit. In addition to the scaling constituents, the photobiological treatment removed 12 pharmaceuticals and personal care products, as well as N-nitrosodimethylamine, from RO concentrate samples primarily via photolysis. This novel approach has a strong potential for application to brackish water desalination and advanced water purification in arid and semiarid areas.

摘要

反渗透(RO)海水淡化和高级水净化设施在浓缩物管理和处置方面存在固有挑战。尽管需要提高渗透物回收率和浓缩物最小化,但由于无机成分(如硅、钙、磷酸盐和铁)导致的膜结垢会阻碍这一过程。为了解决这个问题,开发了一种新的基于硅藻的光生物工艺,通过生物吸收和沉淀来去除这些结垢成分。在这项研究中,从加利福尼亚州的一个全规模的高级水回收设施中收集 RO 浓缩物样本,并在 3.8 和 57 L 光生物反应器中用 LED 灯泡或自然光作为光源接种半咸水硅藻 Pseudostaurosira trainorii PEWL001 进行处理。光生物处理去除了 95%的活性硅和 64%的钙,并通过二次 RO 实现了额外的水回收,回收率高达 66%。这代表了 95%的总回收率,包括初级 RO 装置的 85%回收率。除了结垢成分外,光生物处理还通过光解去除了 RO 浓缩物样本中的 12 种药物和个人护理产品以及 N-亚硝基二甲胺。这种新方法在干旱和半干旱地区的咸水淡化和高级水净化方面具有很强的应用潜力。

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