Control of pore environment in highly porous carbon materials for C2H6/C2H4 separation with exceptional ethane uptake

被引:4
|
作者
Mu, X. -T. [1 ]
Ouyang, Y. -S. [1 ]
Pei, L. M. [2 ]
Peng, Z. -X. [3 ]
Shao, S. -Q. [4 ]
Wang, S. -M. [1 ]
Xiong, H. [4 ]
Xiao, Y. [4 ]
Yang, Q. -Y. [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Chem Engn & Technol, Xian 710049, Peoples R China
[2] Xizang Minzu Univ, Sch Med, Xianyang 712082, Peoples R China
[3] China Tabacco Anhui Ind Co Ltd, Hefei 230088, Anhui, Peoples R China
[4] Zhejiang Juhua Equipment Mfg Co Ltd, Quzhou 324004, Zhejiang, Peoples R China
基金
中国国家自然科学基金;
关键词
Nanomaterials; Chitosan; Porous materials; Metal-organic framework; Alkane/olefin separation; METAL-ORGANIC FRAMEWORK; SELECTIVE ADSORPTION; PREFERENTIAL ADSORPTION; ETHANE/ETHYLENE SEPARATION; HYDROCARBON SEPARATIONS; HIGH-CAPACITY; ETHYLENE; CO2; ADSORBENTS; SPECTROSCOPY;
D O I
10.1016/j.mtchem.2022.100856
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Adsorptive separation of C2H6 from C2H4 by adsorbents is an energy-efficient and promising method to boost the polymer grades C2H4 production. However, that C2H6 and C2H4 display very similar physical properties, making their separation extremely challenging. In this work, by regulating the pore environment in a family of chitosan-based carbon materials (C-CTS-1, C-CTS-2, C-CTS-4, and C-CTS-6)-we target ultrahigh C2H6 uptake and C2H6/C(2)H(4)separation, which exceeds most benchmark carbon materials. Explicitly, the C2H6 uptake of C-CTS-2 (166 cm(3)/g at 100 kPa and 298 K) has the second-highest adsorption capacity among all the porous materials. In addition, C-CTS-2 gives C2H6/C2H4 selectivity of 1.75 toward a 1:15 mixture of C2H6/C2H4. Notably, the adsorption enthalpies for C2H6 in C-CTS-2 are low (21.3 kJ/mol), which will facilitate regeneration in mild conditions. Furthermore, C2H6/C2H4 separation performance was confirmed by binary breakthrough experiments. Under different ethane/ethylene ratios, C-CTS-X extracts a low ethane concentration from an ethane/ethylene mixture and produces high-purity C2H4 in one step. Spectroscopic measurement and diffraction analysis provide critical insight into the adsorption/separation mechanism. The nitrogen functional groups on the surface play a vital role in improving C2H6/C2H4 selectivity, and the adsorption capacities depend on the pore size and micropore volume. Moreover, these robust porous materials exhibit outstanding stability (up to 800 degrees C) and can be easily prepared on a large scale (kg) at a low cost (similar to$26 per kg), which is very significant for potential industrial applications. (C) 2022 Elsevier Ltd. All rights reserved.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Crystalline porous materials as a versatile platform for C2H4/C2H6 separation
    Lin, Xuan
    Yang, Yisi
    Wang, Xue
    Lin, Si
    Bao, Zongbi
    Zhang, Zhangjing
    Xiang, Shengchang
    SEPARATION AND PURIFICATION TECHNOLOGY, 2024, 330
  • [2] A robust ethane-selective metal-organic framework with nonpolar pore surface for efficient C2H6/C2H4 separation
    Wang, Gang-Ding
    Chen, Jing
    Li, Yong-Zhi
    Hou, Lei
    Wang, Yao-Yu
    Zhu, Zhonghua
    CHEMICAL ENGINEERING JOURNAL, 2022, 433
  • [3] Computational screening of MOFs for C2H6/C2H4 and C2H6/CH4 separations
    Altintas, Cigdem
    Keskin, Seda
    CHEMICAL ENGINEERING SCIENCE, 2016, 139 : 49 - 60
  • [4] A robust Th-azole framework for highly efficient purification of C2H4 from a C2H4/C2H2/C2H6 mixture
    Xu, Zhenzhen
    Xiong, Xiaohong
    Xiong, Jianbo
    Krishna, Rajamani
    Li, Libo
    Fan, Yaling
    Luo, Feng
    Chen, Banglin
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [5] Pore environment optimization of In-MOFs by pore space partition strategy for one-step C2H4 purification from C2H6/C2H4 mixtures
    Sun, Tiantian
    Li, Wen
    Yu, Xueyue
    Si, Jincheng
    Li, Guanghua
    Yu, Liang
    Zhou, Xin
    Wang, Hao
    Liu, Yunling
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 364
  • [6] A Microporous Metal-Organic Framework with Unique Aromatic Pore Surfaces for High Performance C2H6/C2H4 Separation
    Ye, Yingxiang
    Xie, Yi
    Shi, Yanshu
    Gong, Lingshan
    Phipps, Joshua
    Al-Enizi, Abdullah M.
    Nafady, Ayman
    Chen, Banglin
    Ma, Shengqian
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (21)
  • [7] Rational Pore Design in Multivariate Metal-Organic Frameworks for C2H6/C2H4 Separation
    Park, Jihyun
    Oh, Kwang Hyun
    Kang, Shinyoung
    Ha, Junsu
    Lee, Seungjin
    Kim, Jihan
    Bae, Youn-Sang
    Moon, Hoi Ri
    SMALL, 2025,
  • [8] Thiazole functionalized covalent triazine frameworks for C2H6/C2H4 separation with remarkable ethane uptake
    Wang, Junhua
    Lian, Xin
    Zhang, Zhiyuan
    Liu, Xiongli
    Zhao, Qiao
    Xu, Jian
    Cao, Xichuan
    Li, Baiyan
    Bu, Xian-He
    CHEMICAL COMMUNICATIONS, 2023, 59 (75) : 11240 - 11243
  • [9] A large-scale synthesizable superhydrophobic C2H6- selective MOF for C2H6/C2H4 separation
    Wu, Xue-Cui
    Zhao, Li
    Tian, Yong-Jun
    Zou, Jin-Sheng
    Jia, Yanan
    Zhang, Ze-Yang
    Li, Jia-Han
    Peng, Yun-Lei
    Yao, Erdong
    Chen, Guangjin
    MICROPOROUS AND MESOPOROUS MATERIALS, 2024, 378
  • [10] An indium-based ethane-trapping MOF for efficient selective separation of C2H6/C2H4 mixture
    Wu, Houxiao
    Chen, Yongwei
    Lv, Daofei
    Shi, Renfeng
    Chen, Yang
    Li, Zhong
    Xia, Qibin
    SEPARATION AND PURIFICATION TECHNOLOGY, 2019, 212 : 51 - 56