Lei Chuxin, Guan Weixin, Zhao Yaxuan, Yu Guihua
Materials Science and Engineering Program and Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX 78712, USA.
Chem Soc Rev. 2024 Jul 15;53(14):7328-7362. doi: 10.1039/d4cs00423j.
Atmospheric water harvesting (AWH) is recognized as a crucial strategy to address the global challenge of water scarcity by tapping into the vast reserves of atmospheric moisture for potable water supply. Within this domain, sorbents lie in the core of AWH technologies as they possess broad adaptability across a wide spectrum of humidity levels, underpinned by the cyclic sorption and desorption processes of sorbents, necessitating a multi-scale viewpoint regarding the rational material and chemical selection and design. This Invited Review delves into the essential sorption mechanisms observed across various classes of sorbent systems, emphasizing the water-sorbent interactions and the progression of water networks. A special focus is placed on the insights derived from isotherm profiles, which elucidate sorbent structures and sorption dynamics. From these foundational principles, we derive material and chemical design guidelines and identify key tuning factors from a structural-functional perspective across multiple material systems, addressing their fundamental chemistries and unique attributes. The review further navigates through system-level design considerations to optimize water production efficiency. This review aims to equip researchers in the field of AWH with a thorough understanding of the water-sorbent interactions, material design principles, and system-level considerations essential for advancing this technology.
大气水收集(AWH)被认为是一种关键策略,通过利用大气中的大量水分储备来提供饮用水,以应对全球水资源短缺的挑战。在这一领域,吸附剂处于AWH技术的核心位置,因为它们在广泛的湿度水平范围内具有广泛的适应性,这基于吸附剂的循环吸附和解吸过程,因此在合理的材料和化学选择及设计方面需要多尺度的观点。这篇特邀综述深入探讨了在各类吸附剂系统中观察到的基本吸附机制,强调了水与吸附剂的相互作用以及水网络的形成过程。特别关注从等温线图谱中获得的见解,这些见解阐明了吸附剂结构和吸附动力学。基于这些基本原则,我们从结构-功能的角度推导了材料和化学设计指南,并在多个材料系统中确定了关键的调节因素,阐述了它们的基本化学性质和独特属性。该综述进一步探讨了系统层面的设计考虑因素,以优化产水效率。这篇综述旨在使AWH领域的研究人员全面了解水与吸附剂的相互作用、材料设计原则以及推进该技术所需的系统层面考虑因素。