Application of Pressure Swing Adsorption for Carbon Dioxide and Methane Enrichment in Biogas Mixture Produced from Animal Manure and Organic Waste
Abstract
Keywords
Full Text:
PDFReferences
Bahrun, M.H.V., et al., Carbon dioxide removal from biogas through pressure swing adsorption – A review. Chemical Engineering Research and Design, 2022. 183: p. 285-306.
Clifford, C.B. Anaerobic Digestion. Lesson 12: Additional Processes for Fuels from Biomass, 2020.
Petersson, A. and A. Wellinger Biogas upgrading technologies – developments and innovations. 2009.
ERCE. IPCC Sixth Assessment Report Global Warming Potentials. 2021 [cited 2022 June 25]; Available from: https://www.ercevolution.energy/ipcc-sixth-assessment-report/.
Usapein, P. and O. Chavalparit, Life cycle assessment of bio-sludge for disposal with different alternative waste management scenarios: a case study of an olefin factory in Thailand. Journal of Material Cycles and Waste Management, 2017. 19(1): p. 545-559.
Starr, K., et al., Life cycle assessment of biogas upgrading technologies. Waste Management, 2012. 32(5): p. 991-999.
Liu, Y., et al., Status and future trends of hollow fiber biogas separation membrane fabrication and modification techniques. Chemosphere, 2022. 303.
Ayub, A., et al., Amine-grafted mesoporous silica materials for single-stage biogas upgrading to biomethane. Chemical Engineering Journal, 2022. 445.
Abd, A.A., et al., Effect of acidic products from degradation of N-methyldiethanolamine amine on CO2/H2S capturing from natural gas. Clean Technologies and Environmental Policy, 2021. 23(7): p. 2133-2144.
Gao, S., et al., Multi-objective optimization and dynamic control of biogas pressurized water scrubbing process. Renewable Energy, 2020. 147: p. 2335-2344.
Shah, G., et al., Comprehending the contemporary state of art in biogas enrichment and CO2 capture technologies via swing adsorption. International Journal of Hydrogen Energy, 2021. 46(9): p. 6588-6612.
Abd, A.A., et al., Biomethane upgrading to transportation fuel quality using spent coffee for carbon dioxide capture in pressure swing adsorption. Journal of Environmental Chemical Engineering, 2022. 10(2): p. 107169.
Pagliai, P. and R. Di Felice. Biogas clean-up and upgrading by adsorption on commercial molecular sieves. in Chemical Engineering Transactions. 2012.
Zainol, N.I., et al., Separation and enrichment of CH4 and CO2 from a dry biogas using a thermally regenerative adsorbent-packed heat exchanger. Adsorption, 2019. 25(6): p. 1159-1167.
Xiao, G., et al., Adsorption equilibria and kinetics of CH4 and N2 on commercial zeolites and carbons. Adsorption, 2017. 23(1): p. 131-147.
Xiao, G., et al., Nitrogen rejection from methane using dual-reflux pressure swing adsorption with a kinetically-selective adsorbent. Chemical Engineering Journal, 2019. 372: p. 1038-1046.
OsakaGasChemical, Carbon molecular sieves (CMS), O.G.C.C. Ltd., Editor. 2018, Activated Carbon Business Division Osaka, Japan
DOI (PDF): https://doi.org/10.20508/ijrer.v12i4.13414.g8600
Refbacks
- There are currently no refbacks.
Online ISSN: 1309-0127
Publisher: Gazi University
IJRER is indexed in EI Compendex, SCOPUS, EBSCO, WEB of SCIENCE (Clarivate Analytics)and CrossRef.
IJRER has been indexed in Emerging Sources Citation Index from 2016 in web of science.
WEB of SCIENCE in 2025;
h=35,
Average citation per item=6.59
Last three Years Impact Factor=(1947+1753+1586)/(146+201+78)=5286/425=12.43
Category Quartile:Q4