化学
吸附
吸附
戒指(化学)
水蒸气
衍射
分子筛
相对湿度
雨水收集
大气压力
电子
化学工程
气象学
有机化学
光学
物理
生态学
工程类
生物
量子力学
作者
Chenyang Nie,Nana Yan,Chenyi Liao,Chao Ma,Xiaona Liu,Jing Wang,Guohui Li,Peng Guo,Zhongmin Liu
摘要
Sorption-based atmospheric water harvesting (AWH) is a promising solution for addressing water scarcity. Developing cost-effective and stable water adsorbents with high water uptake capacity and a low-temperature regeneration requirement is a crucially important procedure. In this Communication, we present a novel and stable aluminophosphate (AlPO) molecular sieve (MS) named DNL-11 with 16-ring channels synthesized by using an affordable and commercialized organic structure directing agent (OSDA), whose crystallographic structure is elucidated by three-dimensional electron diffraction (3D ED). DNL-11 exhibits a significant water uptake capacity (189 mg/g) at a very low vapor pressure (5% relative humidity at 30 °C). In addition, most of the adsorbed water can be effortlessly removed by purging N2 at 25 °C under ambient pressure conditions. This may expand the possibility of AWH under extreme drought conditions.
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