选择性
吸附
金属有机骨架
部分
甲烷
吸附剂
胺气处理
化学工程
化学
羧酸盐
天然气
巴(单位)
朗缪尔吸附模型
材料科学
无机化学
有机化学
催化作用
气象学
工程类
物理
作者
Himan Dev Singh,Piyush Singh,Raviraju Vysyaraju,Bhubesh Murugappan Balasubramaniam,Deepak Rase,Pragalbh Shekhar,Aleena Jose,Arvind Rajendran,Ramanathan Vaidhyanathan
标识
DOI:10.1021/acs.chemmater.3c01777
摘要
Methane is an important alternative fuel, and upgrading it to improve fuel efficiency is an imperative target. Solid sorbents capable of selectively removing the major impurities CO 2 and N 2 from the natural gas contribute immensely to this process. We report a porous 3D iron-MOF built by linking scarce Fe 4 O 18 N 2 clusters through readily available terephthalate and diaminotrizaole ligands. The 1-D channels with a high density of polarizing amine groups, aromatic rings, and carboxylate oxygen adsorb CO 2 and the even less polarizable CH 4 . The MOF uptakes 4.7 mmol/g of CO 2 at 273 K, 1 bar, with an optimal heat of adsorption of ≈24.5 kJ/mol and CO 2 /N 2 IAST selectivity of ≈26. At higher pressures, the MOF exhibits a Langmuir type isotherm for methane and nitrogen with a CH 4 /N 2 IAST selectivity of ≈4. The MOF’s excellent cyclic stability is affirmed by the TGA- and iso-cycling. Modeling studies propound the amine’s interactions with the CO 2, but more dominant is the CO 2 ···CO 2 cooperative interactions. At 20 bar, CH 4 interacts with many framework sites through weak dispersive interactions. In contrast, N 2 interacts specifically with the triazole moiety; thus, the MOF favors the former. The CO 2, CH 4, and N 2 diffusion coefficients, calculated using MD simulations, are quite favorable (Dc for CO 2 = 1.11 × 10 –6; CH 4 = 9.04 × 10 –6; N 2 = 1.875 × 10 –5 cm 2 /s). The dynamic breakthrough studies confirm the potential of the Fe-MOF to separate the gas mixtures. With these advantageous sorbent characteristics of this Fe-MOF, we propose using it in a two-stage PSA for the natural gas purification process, Stage I: removal of CO 2 and Stage II: removal of N 2 . The outcomes point to the potential of a readily accessible iron-based amine MOF as sorbent for natural gas upgrading. A process optimization using a 4-step PSA validates the ability of our MOF to yield >96% purity of CH 4 as required for pipeline transportation.
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