Matches in SemOpenAlex for { <https://semopenalex.org/work/W4318717322> ?p ?o ?g. }
- W4318717322 endingPage "116707" @default.
- W4318717322 startingPage "116707" @default.
- W4318717322 abstract "The present study proposes a conceptual mobile autothermal methane pyrolysis unit for onsite hydrogen production. Considering the shortage of hydrogen pipeline infrastructure between production plants and fuelling stations in most places where hydrogen is required, it is imperative to create alternative hydrogen production means. The design combines a catalytic plasma methane pyrolysis unit with a steam char gasification setup, combustion, and biomethanation unit for hydrogen production. The reactor design includes Ni - Br in a bubble column acting as a catalyst. Energy and exergy calculations followed by a comprehensive economic analysis were appraised to evaluate the efficiency and performance of the integrated process. The levelized cost of hydrogen (LCOH) from the conceptual design ranged from 1.3 to 1.47 U.S.$/kg, while the proposed design's net present value (NPV) was in the range of 3.76 – 4.35 M.U.S.$. Factors such as equipment purchase cost (EPC) and feedstock cost significantly influenced the NPV and LCOH. In addition, a positive NPV and lower LCOH outline the proposed design's profitability. Finally, an optimized methane conversion of 76.8 % was obtained from the study." @default.
- W4318717322 created "2023-02-01" @default.
- W4318717322 creator A5003325496 @default.
- W4318717322 creator A5037230889 @default.
- W4318717322 creator A5040733055 @default.
- W4318717322 creator A5059728753 @default.
- W4318717322 creator A5060282826 @default.
- W4318717322 creator A5062310459 @default.
- W4318717322 creator A5064814036 @default.
- W4318717322 creator A5065391236 @default.
- W4318717322 creator A5075167636 @default.
- W4318717322 creator A5080313464 @default.
- W4318717322 date "2023-02-01" @default.
- W4318717322 modified "2023-10-16" @default.
- W4318717322 title "Process design, exergy, and economic assessment of a conceptual mobile autothermal methane pyrolysis unit for onsite hydrogen production" @default.
- W4318717322 cites W1591073760 @default.
- W4318717322 cites W1964400734 @default.
- W4318717322 cites W1978821238 @default.
- W4318717322 cites W1979713748 @default.
- W4318717322 cites W2050403369 @default.
- W4318717322 cites W2068655185 @default.
- W4318717322 cites W2091763712 @default.
- W4318717322 cites W2098875256 @default.
- W4318717322 cites W2124296798 @default.
- W4318717322 cites W2129891021 @default.
- W4318717322 cites W2198388014 @default.
- W4318717322 cites W2465774330 @default.
- W4318717322 cites W2594391820 @default.
- W4318717322 cites W2606768575 @default.
- W4318717322 cites W2774214254 @default.
- W4318717322 cites W2775255084 @default.
- W4318717322 cites W2779103968 @default.
- W4318717322 cites W2782500965 @default.
- W4318717322 cites W2788296066 @default.
- W4318717322 cites W2802141022 @default.
- W4318717322 cites W2884034974 @default.
- W4318717322 cites W2899560818 @default.
- W4318717322 cites W2913447794 @default.
- W4318717322 cites W2924984351 @default.
- W4318717322 cites W3003641122 @default.
- W4318717322 cites W3007777747 @default.
- W4318717322 cites W3009701870 @default.
- W4318717322 cites W3038032505 @default.
- W4318717322 cites W3041510032 @default.
- W4318717322 cites W3081141530 @default.
- W4318717322 cites W3094448025 @default.
- W4318717322 cites W3095898142 @default.
- W4318717322 cites W3111880424 @default.
- W4318717322 cites W3121682245 @default.
- W4318717322 cites W3132212203 @default.
- W4318717322 cites W3136536354 @default.
- W4318717322 cites W3139005605 @default.
- W4318717322 cites W3153318962 @default.
- W4318717322 cites W3180563609 @default.
- W4318717322 cites W3214930918 @default.
- W4318717322 cites W3215354476 @default.
- W4318717322 cites W4200429148 @default.
- W4318717322 cites W4206136892 @default.
- W4318717322 cites W4206706906 @default.
- W4318717322 cites W4213332343 @default.
- W4318717322 cites W4280563520 @default.
- W4318717322 cites W4285277461 @default.
- W4318717322 cites W4296188877 @default.
- W4318717322 cites W4309570852 @default.
- W4318717322 doi "https://doi.org/10.1016/j.enconman.2023.116707" @default.
- W4318717322 hasPublicationYear "2023" @default.
- W4318717322 type Work @default.
- W4318717322 citedByCount "8" @default.
- W4318717322 countsByYear W43187173222023 @default.
- W4318717322 crossrefType "journal-article" @default.
- W4318717322 hasAuthorship W4318717322A5003325496 @default.
- W4318717322 hasAuthorship W4318717322A5037230889 @default.
- W4318717322 hasAuthorship W4318717322A5040733055 @default.
- W4318717322 hasAuthorship W4318717322A5059728753 @default.
- W4318717322 hasAuthorship W4318717322A5060282826 @default.
- W4318717322 hasAuthorship W4318717322A5062310459 @default.
- W4318717322 hasAuthorship W4318717322A5064814036 @default.
- W4318717322 hasAuthorship W4318717322A5065391236 @default.
- W4318717322 hasAuthorship W4318717322A5075167636 @default.
- W4318717322 hasAuthorship W4318717322A5080313464 @default.
- W4318717322 hasConcept C113146524 @default.
- W4318717322 hasConcept C120208923 @default.
- W4318717322 hasConcept C127413603 @default.
- W4318717322 hasConcept C178790620 @default.
- W4318717322 hasConcept C185592680 @default.
- W4318717322 hasConcept C193015443 @default.
- W4318717322 hasConcept C202189072 @default.
- W4318717322 hasConcept C206139338 @default.
- W4318717322 hasConcept C21880701 @default.
- W4318717322 hasConcept C39432304 @default.
- W4318717322 hasConcept C43535742 @default.
- W4318717322 hasConcept C512968161 @default.
- W4318717322 hasConcept C516920438 @default.
- W4318717322 hasConcept C548081761 @default.
- W4318717322 hasConcept C78519656 @default.
- W4318717322 hasConcept C83119724 @default.
- W4318717322 hasConceptScore W4318717322C113146524 @default.
- W4318717322 hasConceptScore W4318717322C120208923 @default.