Revealing the competitive effect of N2 and H2O towards CO 2 adsorption in N-rich ordered mesoporous carbons

被引:13
作者
Maruccia, E. [1 ,2 ,3 ,4 ]
Piovano, A. [2 ,3 ,5 ,6 ]
Lourenco, M. A. O. [1 ,8 ]
Priamushko, T. [4 ,9 ]
Cavallo, M. [3 ,5 ,6 ]
Bocchini, S. [1 ]
Bonino, F. [3 ,5 ,6 ]
Pirri, F. C. [1 ,7 ]
Kleitz, F.
Gerbaldi, C. [2 ,3 ]
机构
[1] Ist Italiano Tecnol IIT, Ctr Sustainable Future Technol CSFT, Via Livorno 60, I-10144 Turin, Italy
[2] Politecn Torino, Dept Appl Sci & Technol, GAME Lab, Corso Duca Abruzzi 24, I-10129 Turin, Italy
[3] Natl Reference Ctr Electrochem Energy Storage GISE, Via G Giusti 9, I-50121 Florence, Italy
[4] Univ Vienna, Fac Chem, Dept Inorgan Chem Funct Mat, Wahringer Str 42, A-1090 Vienna, Austria
[5] Univ Torino, Dept Chem, NIS, Via P Giuria 7, I-10125 Turin, Italy
[6] Univ Torino, INSTM Ctr, Via P Giuria 7, I-10125 Turin, Italy
[7] Politecn Torino, Dept Appl Sci & Technol, Corso Duca Abruzzi 24, I-10129 Turin, Italy
[8] Univ Aveiro, CICECO Aveiro Inst Mat, Dept Chem, Campus Univ Santiago, P-3810193 Aveiro, Portugal
[9] Forschungszentrum Julich, Helmholtz Inst Erlangen Nurnberg Renewable Energy, Team Electrochem Energy Convers, Electrocatalysis, Cauerstr 1, D-91058 Erlangen, Germany
关键词
Ordered mesoporous carbon; N-rich carbon; Nanocasting; CO2; capture; Gas separation; Renewable feedstock; DENSITY-FUNCTIONAL THEORY; WATER-ADSORPTION; CARBONACEOUS MATERIALS; DIOXIDE SEPARATION; FACILE SYNTHESIS; GAS-ADSORPTION; POROUS CARBON; PORE-SIZE; FLUE-GAS; CAPTURE;
D O I
10.1016/j.mtsust.2022.100270
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The incorporation of heteroatoms improves CO2 adsorption on carbon-based materials, but it can also provide some hydrophilic character to the bare-carbon frameworks, making the hypothesis of compet-itive CO2/H2O adsorption not negligible. In this respect, the CO2 capture is here evaluated through a deep characterization of the sorption properties of N-rich ordered mesoporous carbons under dry and moisture conditions, and in CO2/N2 gas mixtures. The nanocasting strategy is used to obtain N-rich CMK-3-type carbons in one pot by impregnating D-glucosamine hydrochloride, a carbon/nitrogen source, into an SBA-15 silica template followed by pyrolysis treatment at 600, 750, and 900 degrees C. The fine-tuning of the pyrolysis treatment aims to find the right proportion of micropores and N content, which are important features for selective CO2 adsorption. The highest surface amount of N (11.3 at.%), in particular of the pyridinic type, enhances the CO2/N2 selectivity (1.03 mmol/g of adsorbed CO2 from a 20% CO2 in N2), but also the undesired increment in the H2O uptake. CO2 uptake under competitive CO2/H2O conditions is better preserved with 8.3 at.% of surface nitrogen (1.55, 1.52, 0.61, and 0.89 mmol/g of CO2 at a relative humidity of 0, 25, 50, and 75%, respectively). Interestingly, the N-CMK-3 materials retain their capture properties over repetitive adsorption-desorption cycles in pure CO2. In this respect, a TGA-FTIR study is performed to monitor the reusability of the sorbents after CO2 capture from moist flue gases to assess the effectiveness of the reactivation procedure towards the removal of the adsorbed species.(c) 2022 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
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页数:14
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