气凝胶
正硅酸乙酯
三乙氧基硅烷
胺气处理
金属
选择性
吸附
水溶液中的金属离子
胺化
原硅酸盐
化学工程
催化作用
材料科学
化学
复合材料
有机化学
冶金
纳米技术
工程类
作者
Haryeong Choi,Hyug Hee Han,Vinayak G. Parale,Taehee Kim,Wanje Park,Younghun Kim,Jiseung Kim,Yujin Choi,Youn‐Sang Bae,Hyung‐Ho Park
标识
DOI:10.1016/j.cej.2024.149357
摘要
Although aminated silica aerogels have already been identified as potential materials for adsorption, separation, and thermal insulation applications, their extensive use is limited by their natural brittleness and costly production. In this study, aminated silica aerogel monoliths were synthesized via a facile route utilizing 3-aminopropyl triethoxysilane (APTES) acting as both an amination precursor and a self-catalyst as well as tetraethyl orthosilicate (TEOS). The fabricated TA-NH 2 -x (i.e., using an APTES/TEOS molar ratio of x) adsorbents had high CO 2 selectivity, efficient heavy metal removal capability, and good mechanical strength. Remarkably, the TA-NH 2 -2.5 aerogel exhibited a high CO 2 capture capacity (3.10 mmol/g) and CO 2 /N 2 selectivity (9 5 1) under typical flue gas conditions. Moreover, it showed efficient removal of hazardous heavy metal ions such as Pb 2+ , Hg 2+ , Ni 2+ , and Cu 2+ , as well as excellent mechanical strength (13.96 MPa) and thermal conductivity (29.1 mW/mK). These results suggest that synthesizing aminated aerogel monoliths via self-catalyzed polycondensation using APTES is an efficient strategy for developing rigid multifunctional adsorbents for CO 2 capture and heavy metal removal.
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