Matches in SemOpenAlex for { <https://semopenalex.org/work/W2550287273> ?p ?o ?g. }
- W2550287273 endingPage "1143" @default.
- W2550287273 startingPage "1131" @default.
- W2550287273 abstract "Abstract Currently, significant energy consumption is one of the main technical barriers to the large-scale application of CO 2 capture technology. A novel concept—carbon pump—is proposed in this paper to analyze the energy-efficiency of these technologies. The analysis model, which embodies the carbon pump concept, includes the minimum CO 2 separation work and the second-law efficiency. Based on this model, the proposed method is applied to comparative analysis of current capture technologies considering both the quantity of energy consumption and the grade of difficulty level for CO 2 separation. The analyzed results show that the second-law efficiencies of the statistical cases are below 35%. For post-combustion technologies with CO 2 concentrations ranging from 5% to 15%, the higher group of second-law efficiency is approximately above 15%, and the lower is approximately 10% or lower. It can be concluded that a great energy-saving potential still exists in post-combustion technologies through improving the efficiency of heat exchanger and pump, developing new materials, and network optimization. Additionally, integrating renewable energy into capture technologies is an important measure for reducing the consumption of primary energy and the carbon footprint of the whole system." @default.
- W2550287273 created "2016-11-30" @default.
- W2550287273 creator A5033474992 @default.
- W2550287273 creator A5059843781 @default.
- W2550287273 creator A5061484039 @default.
- W2550287273 creator A5068203387 @default.
- W2550287273 creator A5077893874 @default.
- W2550287273 creator A5078200424 @default.
- W2550287273 date "2017-01-01" @default.
- W2550287273 modified "2023-10-18" @default.
- W2550287273 title "Carbon pump: Fundamental theory and applications" @default.
- W2550287273 cites W1621938424 @default.
- W2550287273 cites W1881374708 @default.
- W2550287273 cites W1887033927 @default.
- W2550287273 cites W1966890482 @default.
- W2550287273 cites W1982696453 @default.
- W2550287273 cites W1987424498 @default.
- W2550287273 cites W1991306220 @default.
- W2550287273 cites W1995870327 @default.
- W2550287273 cites W2002334585 @default.
- W2550287273 cites W2005740209 @default.
- W2550287273 cites W2006033919 @default.
- W2550287273 cites W2007895157 @default.
- W2550287273 cites W2011296921 @default.
- W2550287273 cites W2017235821 @default.
- W2550287273 cites W2017753973 @default.
- W2550287273 cites W2026056605 @default.
- W2550287273 cites W2027053970 @default.
- W2550287273 cites W2027898383 @default.
- W2550287273 cites W2028890247 @default.
- W2550287273 cites W2029621916 @default.
- W2550287273 cites W2033368905 @default.
- W2550287273 cites W2038290408 @default.
- W2550287273 cites W2043221568 @default.
- W2550287273 cites W2044254965 @default.
- W2550287273 cites W2058239551 @default.
- W2550287273 cites W2059743048 @default.
- W2550287273 cites W2061339725 @default.
- W2550287273 cites W2061998022 @default.
- W2550287273 cites W2063271943 @default.
- W2550287273 cites W2074132088 @default.
- W2550287273 cites W2075679937 @default.
- W2550287273 cites W2077871579 @default.
- W2550287273 cites W2080042428 @default.
- W2550287273 cites W2080217900 @default.
- W2550287273 cites W2084875402 @default.
- W2550287273 cites W2086346430 @default.
- W2550287273 cites W2091872550 @default.
- W2550287273 cites W2131573167 @default.
- W2550287273 cites W2161396486 @default.
- W2550287273 cites W2164242352 @default.
- W2550287273 cites W2164857444 @default.
- W2550287273 cites W2171369873 @default.
- W2550287273 cites W2172371673 @default.
- W2550287273 cites W2333099367 @default.
- W2550287273 cites W800135100 @default.
- W2550287273 doi "https://doi.org/10.1016/j.energy.2016.11.076" @default.
- W2550287273 hasPublicationYear "2017" @default.
- W2550287273 type Work @default.
- W2550287273 sameAs 2550287273 @default.
- W2550287273 citedByCount "63" @default.
- W2550287273 countsByYear W25502872732017 @default.
- W2550287273 countsByYear W25502872732018 @default.
- W2550287273 countsByYear W25502872732019 @default.
- W2550287273 countsByYear W25502872732020 @default.
- W2550287273 countsByYear W25502872732021 @default.
- W2550287273 countsByYear W25502872732022 @default.
- W2550287273 countsByYear W25502872732023 @default.
- W2550287273 crossrefType "journal-article" @default.
- W2550287273 hasAuthorship W2550287273A5033474992 @default.
- W2550287273 hasAuthorship W2550287273A5059843781 @default.
- W2550287273 hasAuthorship W2550287273A5061484039 @default.
- W2550287273 hasAuthorship W2550287273A5068203387 @default.
- W2550287273 hasAuthorship W2550287273A5077893874 @default.
- W2550287273 hasAuthorship W2550287273A5078200424 @default.
- W2550287273 hasConcept C127413603 @default.
- W2550287273 hasConcept C183696295 @default.
- W2550287273 hasConcept C39432304 @default.
- W2550287273 hasConceptScore W2550287273C127413603 @default.
- W2550287273 hasConceptScore W2550287273C183696295 @default.
- W2550287273 hasConceptScore W2550287273C39432304 @default.
- W2550287273 hasFunder F4320321001 @default.
- W2550287273 hasLocation W25502872731 @default.
- W2550287273 hasOpenAccess W2550287273 @default.
- W2550287273 hasPrimaryLocation W25502872731 @default.
- W2550287273 hasRelatedWork W1527782470 @default.
- W2550287273 hasRelatedWork W1697165487 @default.
- W2550287273 hasRelatedWork W2051886755 @default.
- W2550287273 hasRelatedWork W2110536732 @default.
- W2550287273 hasRelatedWork W2374021052 @default.
- W2550287273 hasRelatedWork W2391645169 @default.
- W2550287273 hasRelatedWork W2866156896 @default.
- W2550287273 hasRelatedWork W2899084033 @default.
- W2550287273 hasRelatedWork W3007404728 @default.
- W2550287273 hasRelatedWork W4280521631 @default.
- W2550287273 hasVolume "119" @default.
- W2550287273 isParatext "false" @default.
- W2550287273 isRetracted "false" @default.