吸附
二胺
热重分析
火山
解吸
材料科学
化学
化学工程
核化学
废物管理
地球化学
有机化学
地质学
工程类
摘要
Abstract Background Greenhouse gases, especially CO 2 , are primary factors for global warming and CO 2 emissions continue to increase annually. Many legislations and agreements have been made to decrease, or at least stabilize, CO 2 concentrations in the atmosphere. Moreover, promising CO 2 capture technologies, such as adsorption using solid sorbents, have been developed and shown high CO 2 adsorption capacity. Results Volcanic tuff, a natural pozzolanic material, was evaluated as a solid CO 2 adsorbent in this study. Following pre‐treatment of the volcanic tuff with HCl solution, CO 2 adsorption experiments were conducted by thermogravimetric analysis (TGA). Diamine functionalization of the volcanic tuff was carried out using amine based compounds with different chain lengths, including ethylenediamine, 1,4‐diaminobutane and 1,6‐diaminohexane. The CO 2 adsorption capacity of the volcanic tuff was significantly enhanced in the presence of 1,6‐diaminohexane. Maximum CO 2 adsorption capacity was determined to be 42.94 mg g −1 with 70 wt% 1,6‐diaminohexane loading. The CO 2 adsorption capacity of the 1,6‐diaminohexane functionalized volcanic tuff decreased with increasing temperature, which was an indication of exothermic adsorption. Adsorption–desorption cycles revealed that the 1,6‐diaminohexane functionalized volcanic tuff was a reusable CO 2 adsorbent with high stability. Conclusion The results show that the low cost, eco‐friendly, and highly stable diamine functionalized volcanic tuff can be considered a promising adsorbent for CO 2 capture. © 2023 Society of Chemical Industry (SCI).
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