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用于盐水管理和最大程度水回收的多级混合海水淡化工艺设计。

Design of a multistage hybrid desalination process for brine management and maximum water recovery.

作者信息

Kadi Khadije El, Janajreh Isam, Abedrabbo Sufian, Ali Mohamed Ibrahim

机构信息

Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.

Department of Physics, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.

出版信息

Environ Sci Pollut Res Int. 2024 Mar;31(12):17565-17577. doi: 10.1007/s11356-023-25243-x. Epub 2023 Jan 14.

Abstract

Hypersaline brine production from desalination plants causes huge environmental stress due to the untenable conventional discharge strategies. Particularly, brine production is expected to drastically increase in the coming few decades due to the increasing desalination capacity in attempts of forestalling water scarcity. Thereby, zero liquid discharge (ZLD) is a worth-considering solution for strategic brine management. ZLD or minimal liquid discharge (MLD) systems provide maximum water recovery with least or zero liquid waste generation and valuable salt production. In this work, a theoretical design of ZLD/MLD system is proposed for reverse osmosis (RO) brine management. Different scenarios are investigated utilizing multistage freeze desalination (FD) and its hybridization with multistage direct contact membrane distillation (DCMD), and eutectic freeze crystallization (EFC) technologies. The design is based on the experimental assessment of the indirect FD process at different feed salinities, i.e., 2 g/L to 155 g/L. FD experiments showed that ice quality is reduced at greater crystallinity levels and initial concentration. Moreover, a computational fluid dynamics (CFD) model is utilized to assess the performance of DCMD. A single DCMD module could produce 53 kg/(m.h) of pure water operating with 69% thermal efficiency. Eventually, water recovery, water quality, as well as specific energy consumption (SEC) are evaluated for the whole system. Based on different configurations of the hybrid ZLD system, the proposed design can achieve water recovery between 40 and 93% with SEC range of 28-114 kWh/m. Results also showed that the produced water quality exceeds drinkable water standards ( 500 mg/L). This work has provided great evidence in the practicality of ZLD/MLD systems for sustainable brine management.

摘要

由于传统排放策略难以维系,海水淡化厂产生的高盐卤水给环境带来了巨大压力。特别是,鉴于为应对水资源短缺而不断提高的海水淡化能力,预计在未来几十年卤水产量将急剧增加。因此,零液体排放(ZLD)是卤水战略管理中一个值得考虑的解决方案。ZLD或最小液体排放(MLD)系统能够实现最大程度的水回收,同时产生最少或零液体废物,并生产有价值的盐。在这项工作中,提出了一种用于反渗透(RO)卤水管理的ZLD/MLD系统的理论设计。利用多级冷冻淡化(FD)及其与多级直接接触膜蒸馏(DCMD)和共晶冷冻结晶(EFC)技术的混合,研究了不同的方案。该设计基于对不同进料盐度(即2 g/L至155 g/L)下间接FD过程的实验评估。FD实验表明,在较高的结晶度水平和初始浓度下,冰的质量会下降。此外,利用计算流体动力学(CFD)模型评估DCMD的性能。单个DCMD模块在69%的热效率下运行时,每平方米每小时可生产53千克纯水。最终,对整个系统的水回收、水质以及比能耗(SEC)进行了评估。基于混合ZLD系统的不同配置,所提出的设计能够实现40%至93%的水回收,SEC范围为28 - 114 kWh/m。结果还表明,产出的水质超过了饮用水标准(<500 mg/L)。这项工作为ZLD/MLD系统在可持续卤水管理中的实用性提供了有力证据。

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