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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Precipitation of calcium carbonate in reverse osmosis retentate flow by means of seeded techniques - A tool to increase recovery
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Precipitation of calcium carbonate in reverse osmosis retentate flow by means of seeded techniques - A tool to increase recovery

机译:通过播种技术在反渗透渗余液中沉淀碳酸钙-一种提高回收率的工具

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摘要

The present work is aimed at development of a new approach to reduce RO concentrate flow and to increase recovery. To increase recovery values, a new process is developed that use continuous crystallization of calcium carbonate at a constant supersaturation level provided by a constant raise of retentate TDS while RO is operated in circulation mode. The described techniques enable us to remove calcium carbonate from RO concentrate by means of "seed" crystallization. These proposed techniques use "open channel" spiral wound membrane modules that can directly treat water with high scaling and fouling potentials without pretreatment. The experimental procedure is described and experimental plots are presented that describe precipitation kinetics. The test membrane unit was operated in circulation mode and recovery values reach 95% or higher. RO concentrate constantly passed through the precipitation reactor where seed crystals were contained. Seed crystal formation was initiated by injecting caustic solution to RO concentrate. The concentrated solution that contains all rejected salts and impurities constitutes no more than 1% of initial feed water volume and can be withdrawn together with wet sludge as sludge moisture. (C) 2015 Elsevier B.V. All rights reserved.
机译:目前的工作旨在开发一种新方法,以减少反渗透浓缩液流量并提高回收率。为了增加回收率,开发了一种新方法,该方法使用碳酸钙以恒定过饱和水平连续结晶,该碳酸钙由反渗透物TDS恒定升高而提供,而RO在循环模式下运行。所描述的技术使我们能够通过“种子”结晶从RO精矿中除去碳酸钙。这些提出的技术使用“开放通道”螺旋缠绕膜组件,该组件可以直接处理具有高水垢和结垢潜力的水,而无需进行预处理。描述了实验程序并给出了描述降水动力学的实验图。测试膜单元以循环模式操作,回收率达到95%或更高。 RO精矿不断通过沉淀反应器,其中包含晶种。通过将苛性溶液注入RO浓缩液来开始晶种形成。包含所有不合格盐和杂质的浓缩溶液不超过初始给水体积的1%,可以与湿污泥一起作为污泥水分抽出。 (C)2015 Elsevier B.V.保留所有权利。

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