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Practical Considerations of Wastewater–Seawater Integrated Reverse Osmosis: Design Constraint by Boron Removal

机译:废水 - 海水综合反渗透的实践考虑因素:硼去除的设计约束

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摘要

The wastewater–seawater (WW-SW) integrated reverse osmosis (RO) process has gained much attention in and out of academia due to its energy saving capability, economic benefits, and sustainability. The other advantage of this process is to reduce boron concentration in the RO permeate that can exclude the post-treatment process. However, there are multiple design constraints regarding boron removal that restrict process design in the WW-SW integrated system. In this study, uncertainties in design factors of the WW-SW integrated system in consideration of boron removal have been explored. In comprehensive consideration of the blending ratio of between WW and SW, regulatory water quality standard, specific energy consumption (SEC), specific water cost, and RO recovery rate, a range of 15,000~20,000 mg/L feed turned out to be the most appropriate. Furthermore, boron rejection tests with SWRO (seawater reverse osmosis) and BWRO (brackish water reverse osmosis) membranes under actual WW-SW integration found a critical reduction in boron rejection at less than 20 bar of operating pressure. These findings emphasize the importance of caution in the use of BWRO membranes in the WW-SW integrated RO system.
机译:由于其节能能力,经济效益和可持续性,废水 - 海水(WW-S海水(WW-SEV)综合反渗透(RO)进出效率受到了很多关注和退出学术界。该方法的另一个优点是将硼浓度减少在可以排出后处理过程的RO渗透物中。然而,有多种关于硼拆卸的多种设计约束,可限制WW-SW集成系统中的过程设计。在本研究中,探讨了WW-SW集成系统的设计因素的不确定性,考虑到硼拆卸。全面考虑WW和SW,监管水质标准,特定能耗(SEC),特定水成本和RO恢复率的混合比,均为最多15,000〜20,000 mg / l饲料的范围合适的。此外,在实际WW-SW集成下,硼抑制试验用Swro(海水反渗透)和Bwro(咸水反渗透)膜发现在少于20巴的工作压力下硼抑制缩小。这些调查结果强调了小心在WW-SW集成RO系统中使用Bwro膜时的重要性。

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