New biocomposites based on castor oil polyurethane foams and ionic liquids for CO2 capture

被引:26
作者
Fernandez Rojas, Marisol [1 ]
Pacheco Miranda, Liliana [1 ]
Martinez Ramirez, Andrea [1 ]
Pradilla Quintero, Karma [1 ]
Bernard, Franciele [2 ]
Einloft, Sandra [2 ]
Carreno Diaz, Luz A. [1 ]
机构
[1] Univ Ind Santander, Sch Chem, Fac Sci, Cra 27 Calle 9 Main Campus, Bucaramanga, Colombia
[2] Pontificia Univ Catolica Rio Grande do Sul, Fac Chem, Av Ipiranga 6681, Porto Alegre, RS, Brazil
关键词
Ionic liquids; Polyurethane foams; CO2; capture; CO2/CH4; selectivity; CARBON-DIOXIDE; POLY(IONIC LIQUID)S; THERMAL-DEGRADATION; MEMBRANES; SEPARATION; SELECTIVITY; SOLUBILITY; XPS; PERMEABILITY; TEMPERATURE;
D O I
10.1016/j.fluid.2017.08.026
中图分类号
O414.1 [热力学];
学科分类号
摘要
The development of new materials with improved CO2 adsorption and selectivity capacity using raw materials from renewable sources is of great importance for sustainable development. In this work, we developed new biocomposites based on ionic liquids [BMIM][Cl], [BMIM][BF4], [EOHMIM][Gly] supported on polyurethane foam, synthesized from castor oil as polyol and HDI as isocyanate. These materials were characterized by FTIR, XPS, DSC, TGA and SEM. Tensile strength and apparent density were also determined. The pressure-decay technique was used to determine the CO2 sorption capacity in a pressure range between 4 and 30 bar, and the CO2/CH4 selectivity at 40 bar. Results indicate that the composite materials are mechanically and chemically stable with the ionic liquids within the foam pores. Foams with the higher content of IL showed high density, low blown and low pore sizes. The foam containing 15% of [BMIM][Cl] exhibited the higher capacity capture (425 mg CO2/g at 25 bar and 25 degrees C), greater than the foam without ionic liquid. It was found that at higher amounts of ionic liquid, the capture capacity decreases, and this has been related to the decrease in pore size and the increase of the density values. However, the CO2/CH4 selectivity increased proportionally with the increase of ionic liquid content. The captured gas is easily released and the foams can be reused without loss of CO2 capture capacity and just a slight loss in CO2/CH4 selectivity. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:103 / 112
页数:10
相关论文
共 50 条
[31]   Validation and prediction of solubility parameters of ionic liquids for CO2 capture [J].
Sistla, Yamini Sudha ;
Jain, Lucky ;
Khanna, Ashok .
SEPARATION AND PURIFICATION TECHNOLOGY, 2012, 97 :51-64
[32]   Process analysis overview of ionic liquids on CO2 chemical capture [J].
Hospital-Benito, D. ;
Lemus, J. ;
Moya, C. ;
Santiago, R. ;
Palomar, J. .
CHEMICAL ENGINEERING JOURNAL, 2020, 390
[33]   Solubility of CO2/CH4 gas mixtures in ionic liquids [J].
Ramdin, Mahinder ;
Amplianitis, Aris ;
de Loos, Theo W. ;
Vlugt, Thijs J. H. .
FLUID PHASE EQUILIBRIA, 2014, 375 :134-142
[34]   Encapsulated Ionic Liquids for CO2 Capture: Using 1-Butyl-methylimidazolium Acetate for Quick and Reversible CO2 Chemical Absorption. [J].
Moya, Cristian ;
Alonso-Morales, Noelia ;
Gilarranz, Miguel A. ;
Rodriguez, Juan J. ;
Palomar, Jose .
CHEMPHYSCHEM, 2016, 17 (23) :3891-3899
[35]   CO2 capture by hydrocarbon surfactant liquids [J].
Zhang, Jianling ;
Han, Buxing ;
Zhao, Yueju ;
Li, Jianshen ;
Hou, Minqiang ;
Yang, Guanying .
CHEMICAL COMMUNICATIONS, 2011, 47 (03) :1033-1035
[36]   Tetraalkylammonium-based dicationic ionic liquids (ILs) for CO2 capture [J].
Kulkarni, Prashant S. ;
Ranjane, Prathamesh ;
Mishra, Karun ;
Sundararajan, Swati ;
Kamble, Sanjay .
NEW JOURNAL OF CHEMISTRY, 2023, 47 (27) :12944-12954
[37]   Room-Temperature Ionic Liquids and Composite Materials: Platform Technologies for CO2 Capture [J].
Bara, Jason E. ;
Camper, Dean E. ;
Gin, Douglas L. ;
Noble, Richard D. .
ACCOUNTS OF CHEMICAL RESEARCH, 2010, 43 (01) :152-159
[38]   A process simulation study of CO2 capture by ionic liquids [J].
Ma, Tao ;
Wang, Jiexin ;
Du, Zengzhi ;
Abdeltawab, Ahmed A. ;
Al-Enizi, Abdullah M. ;
Chen, Xiaochun ;
Yu, Guangren .
INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2017, 58 :223-231
[39]   Tuning the Basicity of Ionic Liquids for Equimolar CO2 Capture [J].
Wang, Congmin ;
Luo, Xiaoyan ;
Luo, Huimin ;
Jiang, De-en ;
Li, Haoran ;
Dai, Sheng .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2011, 50 (21) :4918-4922
[40]   Recent Advances in CO2 Capture by Functionalized Ionic Liquids [J].
Pan, Mingguang ;
Wang, Congmin .
ADVANCES IN CO2 CAPTURE, SEQUESTRATION, AND CONVERSION, 2015, 1194 :341-369