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Technological advancements in solar energy driven humidification-dehumidification desalination systems - A review

机译:太阳能驱动的加湿-除湿淡化系统的技术进步-评论

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Water scarcity has resulted in a pressing need to develop an inexpensive and efficient desalination technology for fresh water production, especially in developing countries. Apart from other effective desalination technologies, humidification-dehumidification desalination process is predominantly adopted in the past decade to meet water deficiency due to its varied advantages in system construction, maintenance and operation. In this paper, a comprehensive review of the various advancements carried out experimentally for improving the performance of the solar humidification-dehumidification desalination system has been presented. The major factors contributing for enhanced system performance such as mass flow rate of heat transfer fluid, forced convection mechanism, multi-pass technique, recirculation mechanism, use of nano heat transfer fluid and phase change material are discussed. Further, the effect of solar intensity, ambient temperature, wind velocity, stage-wise heating and cooling on freshwater productivity is also reported. It was found that easy construction and maintenance of flat plate collector and higher performance index of evacuated tube collector make them as the predominant technologies adopted for heating the water and air heat transfer fluid's in solar humidification dehumidification desalination system respectively. Further, it is identified that there exists a large potential for improving the fresh water yield through hybrid systems which involve use of geothermal or biomass energy, integration of solar stills with humidification-dehumidification desalination system, coupling of solar still, Fresnel lens solar collector and parabolic trough collector respectively with the flat plate collector and evacuated tube collector systems. The scope for further improvement in individual system and process parameters have been discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:水资源短缺导致迫切需要开发一种廉价且有效的淡水生产淡水技术,尤其是在发展中国家。除了其他有效的脱盐技术外,由于其在系统构造,维护和运行方面的各种优势,过去十年来主要采用加湿-除湿脱盐工艺来解决缺水问题。在本文中,已对通过实验提高太阳能加湿-除湿淡化系统性能的各种进展进行了全面的综述。讨论了有助于提高系统性能的主要因素,例如传热流体的质量流量,强制对流机制,多程技术,再循环机制,纳米传热流体的使用和相变材料。此外,还报道了太阳强度,环境温度,风速,分阶段加热和冷却对淡水生产率的影响。研究发现,平板集热器的易于构造和维护以及真空管集热器的较高性能指标使其成为太阳能加湿除湿脱盐系统中分别用于加热水和空气传热流体的主要技术。此外,已经发现,通过混合系统(包括利用地热或生物质能,将太阳能蒸馏器与加湿-除湿脱盐系统集成),太阳能蒸馏器,菲涅耳透镜太阳能收集器和抛物槽收集器分别具有平板收集器和真空管收集器系统。讨论了进一步改进单个系统和过程参数的范围。 (C)2018 Elsevier Ltd.保留所有权利。

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