Enabling Kinetic Light Hydrocarbon Separation via Crystal Size Engineering of ZIF-8

被引:42
作者
Pimentel, Brian R. [1 ]
Lively, Ryan P. [1 ]
机构
[1] Georgia Inst Technol, Sch Chem & Biomol Engn, 311 Ferst Dr NW, Atlanta, GA 30332 USA
关键词
ZEOLITIC IMIDAZOLATE FRAMEWORK-8; PRESSURE SWING ADSORPTION; METAL-ORGANIC FRAMEWORKS; MOLECULAR-SIEVE CARBON; PROPANE/PROPYLENE SEPARATION; OLEFIN/PARAFFIN SEPARATIONS; ISOTHERMAL SORPTION; PI-COMPLEXATION; 13X ZEOLITE; MEMBRANES;
D O I
10.1021/acs.iecr.6b03199
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Recent increases in shale gas production provide an excellent opportunity for advancements in the energy-efficient separation of natural gas liquids because these are increasingly used as fuel sources and chemical feedstocks. Current fractionation schemes generally involve cryogenic distillation of C-1-C-4 hydrocarbons and are extremely energy intensive. Here, we describe the first steps toward a lower energy, kinetic pressure-swing-adsorption cycle for the separation of ethane, propane, propylene, and butane using ZIF-8 as a diffusionally selective adsorbent. Crystal engineering techniques were employed to control the diffusive time scale of the separation, allowing for multiple separations using the same adsorbent within reasonable process times. Equimolar separation of ethane/propane mixtures at 293 K exhibited separation factors of 2.7 in the gas phase under nonoptimized conditions, which enhances the concentration of the feed mixture to 7.5 mol % propane. The separation performance was shown to improve to 3.8 at lower temperatures (81 mol % propane), which is attributed to differences in the activation energy of permeation of the two components. Propane/butane mixtures demonstrated a lower diffusive selectivity and almost negligible enhancement, while propylene/propane showed enhancement beyond ethane/propane due to a strong diffusive selectivity and sorption selectivities closer to unity. Single-component adsorption and diffusion results were incorporated into a computational model of the system and shown to be in relatively good agreement with the experimental values. The model was used to predict the separation system performance and recovery at various temperatures.
引用
收藏
页码:12467 / 12476
页数:10
相关论文
共 50 条
[41]   ZIF-8 crystal coatings on a polyimide substrate and their catalytic behaviours for the Knoevenagel reaction [J].
Jin, Rizhe ;
Bian, Zheng ;
Li, Jizhen ;
Ding, Mengxian ;
Gao, Lianxun .
DALTON TRANSACTIONS, 2013, 42 (11) :3936-3940
[42]   Thermal induced in-situ defect engineering of ZIF-8 in mixed matrix membranes with significantly enhanced gas separation properties [J].
Mu, Qingdi ;
Sheng, Lujie ;
Chen, Shuhui ;
Liu, Yuanfa ;
Deng, Maicun ;
Ren, Jizhong .
SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 360
[43]   Continuous ZIF-8/reduced graphene oxide nanocoating for ultrafast oil/water separation [J].
Kim, Dae Woo ;
Eum, Kiwon ;
Kim, Hanim ;
Kim, Daeok ;
de Mello, Matheus Dorneles ;
Park, Kangho ;
Tsapatsis, Michael .
CHEMICAL ENGINEERING JOURNAL, 2019, 372 :509-515
[44]   Ultem®/ZIF-8 Mixed Matrix Membranes for Gas Separation: Transport and Physical Properties [J].
Eiras, Daniel ;
Labreche, Ying ;
Pessan, Luiz Antonio .
MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, 2016, 19 (01) :220-228
[45]   In situ Synthesis of ZIF-8 Membranes with Gas Separation Performance in a Deep Eutectic Solvent [J].
Li Xiao-Lei ;
Tao Shuo ;
Li Ke-Da ;
Wang Ya-Song ;
Wang Ping ;
Tian Zhi-Jian .
ACTA PHYSICO-CHIMICA SINICA, 2016, 32 (06) :1495-1500
[46]   Preparation and Lithium-Ion Separation Property of ZIF-8 Membrane with Excellent Flexibility [J].
Zhao, Jun ;
Fan, Rongyu ;
Xiang, Shengchang ;
Hu, Jiapeng ;
Zheng, Ximing .
MEMBRANES, 2023, 13 (05)
[47]   Investigating the Intrinsic Ethanol/Water Separation Capability of ZIF-8: An Adsorption and Diffusion Study [J].
Zhang, Ke ;
Lively, Ryan P. ;
Zhang, Chen ;
Koros, William J. ;
Chance, Ronald R. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (14) :7214-7225
[48]   Pollen-like ZIF-8 colloidosomes via emulsion templating and etching [J].
Lupica-Spagnolo, Lucia ;
Ward, Daniel J. ;
Marie, John-Joseph ;
Lymperopoulou, Smaragda ;
Bradshaw, Darren .
CHEMICAL COMMUNICATIONS, 2018, 54 (61) :8506-8509
[49]   Synthesis of ZIF-67 and ZIF-8 crystals using DMSO (Dimethyl Sulfoxide) as solvent and kinetic transformation studies [J].
Feng, Xuhui ;
Wu, Ting ;
Carreon, Moises A. .
JOURNAL OF CRYSTAL GROWTH, 2016, 455 :152-156
[50]   ZIF-8 gate tuning via terminal group modification: A computational study [J].
Zheng, Bin ;
Wang, Lian Li ;
Du, Lifei ;
Huang, Kuo-Wei ;
Du, Huiling .
CHEMICAL PHYSICS LETTERS, 2016, 658 :270-275