吸附
化学
水准点(测量)
选择性
Crystal(编程语言)
乙烯
动能
色谱法
晶体结构
工艺工程
化学工程
模式(计算机接口)
一步到位
栏(排版)
分析化学(期刊)
科技与社会
计算机模拟
作者
Duoyu Lin,Ding-Yi Hu,Rong‐Hua Wang,Xuewen Zhang,Di Zhou,Jie‐Peng Zhang,Xiao-Ming Chen
摘要
As highlighted by the development of C2H6-selective adsorbents for one-step separation of C2H4, adsorption is promising for chemical separation; however, the field still suffers from the lack of benchmark adsorbents and quantitative evaluation protocols. In this work, an amorphous-recrystallization method is developed to control the crystal size and morphology of the pioneering C2H6-selective adsorbent MAF-49. At the optimal crystal size, the C2H4 kinetic selectivity is negligible, enabling the highest productivity of 3.1 mmol cm-3 for one-step C2H4 purification from the 15:1 C2H4/C2H6 mixture. Larger crystals exhibit higher C2H4 kinetic selectivity, which sharply decrease the C2H4 purification performance and can even lead to apparent C2H4 selectivity. Switching the column breakthrough experiment from the conventional outlet concentration mode to the outlet flow-rate mode and modifying the RUPTURA simulation code enable the quantitative evaluation and prediction of key parameters for gas mixture adsorption and separation, such as purification productivity, adsorption amount, and selectivity.
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