吸附
烟气
材料科学
降级(电信)
化学工程
胺气处理
动力学
碳纤维
有机化学
活性炭
化学稳定性
反应性(心理学)
催化作用
化学
活性炭
聚合物
组合化学
烟道
氧化磷酸化
氧化还原
化学动力学
作者
Lin Li,Kailun Chen,Jinglin Li,Endian Hu,Jingwen Chang,Jianguo Jiang
标识
DOI:10.1021/acsami.5c17529
摘要
The existence of O2 in flue gas, which can induce oxidative degradation and cause adsorption capacity losses, has been an obstacle for solid amine adsorbents in practical applications. Herein, a simple and scalable synthesis of PEI-impregnated silica modified with low-dose inhibitors is reported. Compared to previous studies, the novelty of this work lied in its simplicity and its ability to maintain high adsorption capacity (over 170 mg/g) when achieving excellent antioxidation and antiurea effects. The strategy can slow down the oxidation kinetics as well as relieve oxidative degradation of the adsorbents under conditions of high oxidation temperature, high O2 concentration, and long oxidation time. The cyclic stability can be increased by 43.8%, and the O2 resistance can be improved by 66.8%. Using a multitechnique approach, we have unraveled the effects of the separate and coexisting presence of CO2 and O2 in long-term applications and provided important guidance for the selection of certain inhibitors (NaH2PO4, Na3PO4, or HCOONa) based on actual application situations. This study demonstrated that the adsorbent modified with NaH2PO4 can avoid the weakening of antiurea effects when CO2 and O2 coexist, while Na3PO4 can still exhibit the overall effect of high cyclic stability even with the weakened antiurea effects; thus, NaH2PO4 and Na3PO4 have the potential for long-term carbon capture from O2-containing flue gas.
科研通智能强力驱动
Strongly Powered by AbleSci AI