集聚经济
吸附剂
二氧化碳
阶段(地层学)
环境科学
环境友好型
废物管理
碳纤维
化学
化学工程
地球大气中的二氧化碳
多阶段
环境工程
二氧化碳去除
大气
材料科学
环境化学
工艺工程
大气压力
空气污染
负二氧化碳排放
气溶胶
微粒
摘要
The rise in atmospheric carbon dioxide (CO2) concentrations has necessitated the development of cost-effective and environmentally friendly sorbent materials for the direct air capture (DAC) of CO2. In this study, CO2 adsorption via DAC during early hydration stages is investigated for light-burned magnesium oxide (MgO) with open-structured grain boundaries. Isolated monodentate carbonates, MgCO3, are formed during DAC on the O sites on the interior surfaces of grain boundaries immediately after contact with air. Upon hydration, atmospheric CO2 preferentially adsorbs on another O site as a MgCO3 hydrate to form a hydrogen bond with the former O site. DAC-originated MgCO3 hydrates are thus able to be stabilized on grain-boundary surfaces, exhibiting excellent DAC performance with a CO2 adsorption capacity and rate of ∼0.7 mol kg-1 and ∼0.1 mol kg-1 h-1, respectively. A reasonable molecular model is presented for low-dimensionally agglomerated MgCO3 hydrates constrained on grain-boundary surfaces, which enhances their thermal stability.
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