Matches in Ghent University Academic Bibliography for { <https://biblio.ugent.be/publication/01GJD2TXK14Y97Q4NZF7SH1TST> ?p ?o. }
Showing items 1 to 27 of
27
with 100 items per page.
- 01GJD2TXK14Y97Q4NZF7SH1TST classification A1.
- 01GJD2TXK14Y97Q4NZF7SH1TST date "2022".
- 01GJD2TXK14Y97Q4NZF7SH1TST language "eng".
- 01GJD2TXK14Y97Q4NZF7SH1TST type journalArticle.
- 01GJD2TXK14Y97Q4NZF7SH1TST hasPart 01GJD2XBW2ATJGVA786TX143HN.pdf.
- 01GJD2TXK14Y97Q4NZF7SH1TST subject "Earth and Environmental Sciences".
- 01GJD2TXK14Y97Q4NZF7SH1TST subject "Technology and Engineering".
- 01GJD2TXK14Y97Q4NZF7SH1TST doi "10.1016/j.jclepro.2022.135033".
- 01GJD2TXK14Y97Q4NZF7SH1TST issn "0959-6526".
- 01GJD2TXK14Y97Q4NZF7SH1TST issn "1879-1786".
- 01GJD2TXK14Y97Q4NZF7SH1TST issue "part 2".
- 01GJD2TXK14Y97Q4NZF7SH1TST volume "380".
- 01GJD2TXK14Y97Q4NZF7SH1TST abstract "Power-to-Methane (P2M) pathways are proposed as an innovative solution to utilize surplus renewable electricity for long-term and long-distance storage. This electricity can produce hydrogen using electrolysis and, with the input of CO2 from biogas, be further used for the production of synthetic methane. The methanation reaction can be done with a biocatalyst or nickel catalyst, each with a different pathway of pre- and post-treatment steps. To date, only a limited number of studies have analysed the environmental impact of P2M pathways using life cycle assessment, and no study has directly compared the biological and catalytic P2M pathways. The goal of this research is to close this knowledge gap by quantifying the environmental impact of synthetic methane production and identifying differences between both pathways. Mass and heat balances of both pathways were simulated with AspenPlus and used as basis for a thorough life cycle inventory of the material and energy demand. The global warming potential per MWh synthetic CH4 is similar for the biological and catalytic pathways, but the impact is differently distributed between the processes. The catalytic pathway requires more sulfur removal, compression power and cooling demand. In the biological pathway, the bioreactor has a large impact due to its electricity and nutrient demand, whereas the catalytic reactor's impact is almost negligible.".
- 01GJD2TXK14Y97Q4NZF7SH1TST author 2BC3BCD2-D0F2-11E9-9DE2-BDAC5607D3EF.
- 01GJD2TXK14Y97Q4NZF7SH1TST author 8C9D31F0-1AAE-11E9-9010-7C525707D3EF.
- 01GJD2TXK14Y97Q4NZF7SH1TST author A6EBE524-61A1-11E6-91D2-1E3AB5D1D7B1.
- 01GJD2TXK14Y97Q4NZF7SH1TST author F4AF297A-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GJD2TXK14Y97Q4NZF7SH1TST author urn:uuid:9aa0deb5-e28d-4be8-86f1-052e09aea896.
- 01GJD2TXK14Y97Q4NZF7SH1TST dateCreated "2022-11-21T12:33:01Z".
- 01GJD2TXK14Y97Q4NZF7SH1TST dateModified "2024-07-09T15:50:21Z".
- 01GJD2TXK14Y97Q4NZF7SH1TST name "Comparative life cycle assessment of power-to-methane pathways : process simulation of biological and catalytic biogas methanation".
- 01GJD2TXK14Y97Q4NZF7SH1TST pagination urn:uuid:becef7b7-4bf5-4ad9-bef6-11520b879b3e.
- 01GJD2TXK14Y97Q4NZF7SH1TST sameAs LU-01GJD2TXK14Y97Q4NZF7SH1TST.
- 01GJD2TXK14Y97Q4NZF7SH1TST sourceOrganization urn:uuid:8d706fce-0c48-403a-959c-1c1d568c0676.
- 01GJD2TXK14Y97Q4NZF7SH1TST sourceOrganization urn:uuid:a6ff9229-0e08-4882-9742-38b73ce45ac4.
- 01GJD2TXK14Y97Q4NZF7SH1TST sourceOrganization urn:uuid:b48bfbb7-e229-4d7c-9151-57d85f21aeef.
- 01GJD2TXK14Y97Q4NZF7SH1TST type A1.