Device design and optimization of sorption-based atmospheric water harvesters

Shuai Guo, Yaoxin Zhang, Swee Ching Tan
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Abstract

Atmospheric water harvesting (AWH) is a promising approach to providing fresh water to areas without access to large bodies of freshwater and mitigating imbalanced water distribution. Besides material innovations, researchers have explored different design strategies for these AWH devices, which can be divided into monocyclic and multicyclic types. Monocyclic water harvesters can be further categorized into those using upward vapor escape, for which research efforts have focused on reducing top cover heating and increasing sorption capacity, and those using downward vapor escape, for which research efforts have focused on heat recycling and cooling strategies to enhance condensation efficiency. Notably, some of these devices utilize radiative cooling and require zero external energy input. For multicyclic water harvesters, efforts have focused on optimizing the sorbents’ water uptake kinetics and device design geometry to guarantee continuous water harvesting.
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吸附式大气水采集器的装置设计与优化
大气集水(AWH)是一种很有前途的方法,可以向无法获得大量淡水的地区提供淡水,并减轻水分配不平衡。除了材料创新外,研究人员还探索了这些AWH器件的不同设计策略,可分为单环型和多环型。单环式水收集器可进一步分为向上蒸汽逸出式和向下蒸汽逸出式两种,前者的研究重点是减少顶盖加热和提高吸附能力,后者的研究重点是热回收和冷却策略,以提高冷凝效率。值得注意的是,其中一些设备利用辐射冷却,不需要外部能量输入。对于多循环水收集器,人们的工作重点是优化吸附剂的吸水动力学和设备设计几何形状,以确保连续集水。
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