Distributed direct air capture of carbon dioxide by synergistic water harvesting

通过协同水资源收集实现分布式直接空气二氧化碳捕集

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Abstract

Adsorption-based direct air capture (DAC) of carbon dioxide, using chemisorbents like solid amines, has been widely recognized as a sustainable measure to contain atmospheric CO(2) concentrations. However, the productivity and economic viability of DAC have been compromised by the high energy consumption for regenerating the adsorbents. Here, we show that by synergistically harvesting water and carbon dioxide from the atmosphere, we can regenerate the unit using in situ vapor purge at low energy and capital cost. The desorption of CO(2) is substantially enhanced in the presence of concentrated water vapors at around 100 °C, concurrently producing 97.7% purity CO(2) and fresh water without the use of vacuum pumps and steam boilers. Moreover, we demonstrate that the DAC prototype can also be powered by sunlight, which recovers 98% of the adsorbed CO(2), with 20% less energy demand, enabling sustainable carbon capture from air in a real distributed manner.

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