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盐度对湿化-除湿(HDH)海水淡化系统的影响:综述。

Salinity impacts on humidification dehumidification (HDH) desalination systems: review.

机构信息

Faculty of Engineering, Mechanical Engineering Dept, Suez Canal University, Ismailia, 44521, Egypt.

Mechanical Engineering Department, Arab Academy for Science, Technology and Maritime Transport, Alexandria, Egypt.

出版信息

Environ Sci Pollut Res Int. 2024 Jan;31(2):1907-1925. doi: 10.1007/s11356-023-31327-5. Epub 2023 Dec 13.

Abstract

The use of humidification-dehumidification water desalination technology has been shown to be a practical means of meeting the demand for freshwater. The aim of this review is to investigate the impact of salinity on HDH techniques that have various benefits in terms of both economics and the environment, including the capacity to operate at low temperatures, utilize sustainable energy sources, the need for low maintenance, and straightforward construction requirements. Also, in this review, it is observed that the HDH system's components are strong and capable of treating severely salinized water. It can treat water in an appropriate way than other desalination technologies. This technology has recently been commercialized to treat highly salinized generated water. However, more research is needed to determine how salinity affects HDH productivity. According to several research investigations, while the specific thermal energy consumption increased considerably and the productivity of water per unit of time decreased significantly as the salt mass percentage grew, the purity of clean water did not suffer. The rejected brine must be reduced by increasing the total water recovery ratio in the HDH system. Through this review, it was found that brine control is becoming increasingly important in the water processing industry. ZLD systems, which aim to recover both freshwater and solid salts, can be a viable replacement for disposal methods. Finally, through this reviewer, it was concluded that HDH desalination systems may operate with extremely saline water while increasing salinity has a significant influence on system performance.

摘要

采用湿热去湿水淡化技术已被证明是满足淡水需求的一种实用方法。本综述的目的是研究盐度对具有经济和环境双重优势的 HDH 技术的影响,包括能够在低温下运行、利用可持续能源、低维护需求和简单的构建要求。此外,在本次综述中还观察到 HDH 系统的组件坚固耐用,能够处理高盐度的水。它可以比其他海水淡化技术更合理地处理水。该技术最近已商业化,用于处理高盐度的采出水。然而,仍需要进一步的研究来确定盐度如何影响 HDH 的产率。根据多项研究调查,尽管随着盐质量百分比的增加,特定热能消耗显著增加,单位时间内的产水量显著下降,但清洁水的纯度并未受到影响。必须通过提高 HDH 系统的总水回收率来减少被拒绝的盐水。通过本次综述发现,盐水控制在水加工行业变得越来越重要。旨在回收淡水和固体盐的 ZLD 系统可能是一种可行的替代处理方法。最后,通过本次综述得出结论,HDH 海水淡化系统可以处理高盐度的水,而盐度的增加对系统性能有重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8051/10791889/41e3b71d1bec/11356_2023_31327_Fig1_HTML.jpg

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