Matches in SemOpenAlex for { <https://semopenalex.org/work/W2022143059> ?p ?o ?g. }
- W2022143059 endingPage "S110" @default.
- W2022143059 startingPage "S98" @default.
- W2022143059 abstract "Tunable infrared diode laser absorption spectroscopy has been used to detect the methyl radical and nine stable molecules, CH4, CH3OH, C2H2, C2H4, C2H6, NH3, HCN, CH2O and C2N2, in H2–Ar–N2 microwave plasmas containing up to 7% of methane or methanol, under both flowing and static conditions. The degree of dissociation of the hydrocarbon precursor molecules varied between 20% and 97%. The methyl radical concentration was found to be in the range 1012–1013 molecules cm−3. By analysing the temporal development of the molecular concentrations under static conditions it was found that HCN and NH3 are the final products of plasma chemical conversion. The fragmentation rates of methane and methanol (RF(CH4) = (2–7) × 1015 molecules J−1, RF(CH3OH) = (6–9) × 1015 molecules J−1) and the respective conversion rates to methane, hydrogen cyanide and ammonia (RCmax(CH4) = 1.2 × 1015 molecules J−1, RCmax(HCN) = 1.3 × 1015 molecules J−1, RCmax(NH3) = 1 × 1014 molecules J−1) have been determined for different hydrogen to nitrogen concentration ratios. An extensive model of the chemical reactions involved in the H2–N2–Ar–CH4 plasma has been developed. Model calculations were performed by including 22 species, 145 chemical reactions and appropriate electron impact dissociation rate coefficients. The results of the model calculations showed satisfactory agreement between calculated and measured concentrations. The most likely main chemical pathways involved in these plasmas are discussed and an appropriate reaction scheme is proposed." @default.
- W2022143059 created "2016-06-24" @default.
- W2022143059 creator A5050492525 @default.
- W2022143059 creator A5053586891 @default.
- W2022143059 creator A5065995586 @default.
- W2022143059 creator A5071280432 @default.
- W2022143059 creator A5078354637 @default.
- W2022143059 date "2003-10-15" @default.
- W2022143059 modified "2023-10-18" @default.
- W2022143059 title "Diagnostic studies of H<sub>2</sub>–Ar–N<sub>2</sub>microwave plasmas containing methane or methanol using tunable infrared diode laser absorption spectroscopy" @default.
- W2022143059 cites W1537615783 @default.
- W2022143059 cites W1640577008 @default.
- W2022143059 cites W178099084 @default.
- W2022143059 cites W1967330582 @default.
- W2022143059 cites W1971422279 @default.
- W2022143059 cites W1971935634 @default.
- W2022143059 cites W1972001740 @default.
- W2022143059 cites W1973852835 @default.
- W2022143059 cites W1974040717 @default.
- W2022143059 cites W1981317232 @default.
- W2022143059 cites W1985744634 @default.
- W2022143059 cites W1987804732 @default.
- W2022143059 cites W1989244443 @default.
- W2022143059 cites W1991755175 @default.
- W2022143059 cites W1993006157 @default.
- W2022143059 cites W1993265304 @default.
- W2022143059 cites W2001633291 @default.
- W2022143059 cites W2001824399 @default.
- W2022143059 cites W2003838356 @default.
- W2022143059 cites W2004354625 @default.
- W2022143059 cites W2004928592 @default.
- W2022143059 cites W2005289471 @default.
- W2022143059 cites W2011147540 @default.
- W2022143059 cites W2011458967 @default.
- W2022143059 cites W2011634500 @default.
- W2022143059 cites W2015309320 @default.
- W2022143059 cites W2017086306 @default.
- W2022143059 cites W2018278812 @default.
- W2022143059 cites W2019322400 @default.
- W2022143059 cites W2019884978 @default.
- W2022143059 cites W2021593817 @default.
- W2022143059 cites W2021765124 @default.
- W2022143059 cites W2022375179 @default.
- W2022143059 cites W2022493135 @default.
- W2022143059 cites W2024471196 @default.
- W2022143059 cites W2029478862 @default.
- W2022143059 cites W2029509990 @default.
- W2022143059 cites W2030835533 @default.
- W2022143059 cites W2031209136 @default.
- W2022143059 cites W2037494942 @default.
- W2022143059 cites W2038167037 @default.
- W2022143059 cites W2038895963 @default.
- W2022143059 cites W2039198424 @default.
- W2022143059 cites W2039495070 @default.
- W2022143059 cites W2041621412 @default.
- W2022143059 cites W2048074653 @default.
- W2022143059 cites W2048201648 @default.
- W2022143059 cites W2054914927 @default.
- W2022143059 cites W2059275686 @default.
- W2022143059 cites W2060994284 @default.
- W2022143059 cites W2061393722 @default.
- W2022143059 cites W2063938216 @default.
- W2022143059 cites W2067599925 @default.
- W2022143059 cites W2070485611 @default.
- W2022143059 cites W2073863819 @default.
- W2022143059 cites W2074483612 @default.
- W2022143059 cites W2075423243 @default.
- W2022143059 cites W2076700580 @default.
- W2022143059 cites W2076825470 @default.
- W2022143059 cites W2077000784 @default.
- W2022143059 cites W2082109665 @default.
- W2022143059 cites W2083732117 @default.
- W2022143059 cites W2088424775 @default.
- W2022143059 cites W2089909210 @default.
- W2022143059 cites W2090550108 @default.
- W2022143059 cites W2090759097 @default.
- W2022143059 cites W2091021919 @default.
- W2022143059 cites W2091323512 @default.
- W2022143059 cites W2100653573 @default.
- W2022143059 cites W2105378969 @default.
- W2022143059 cites W2112838036 @default.
- W2022143059 cites W2114514241 @default.
- W2022143059 cites W2114976386 @default.
- W2022143059 cites W2115945968 @default.
- W2022143059 cites W2161338838 @default.
- W2022143059 cites W2515155932 @default.
- W2022143059 cites W292163560 @default.
- W2022143059 cites W32787895 @default.
- W2022143059 doi "https://doi.org/10.1088/0963-0252/12/4/025" @default.
- W2022143059 hasPublicationYear "2003" @default.
- W2022143059 type Work @default.
- W2022143059 sameAs 2022143059 @default.
- W2022143059 citedByCount "53" @default.
- W2022143059 countsByYear W20221430592012 @default.
- W2022143059 countsByYear W20221430592013 @default.
- W2022143059 countsByYear W20221430592014 @default.
- W2022143059 countsByYear W20221430592015 @default.
- W2022143059 countsByYear W20221430592016 @default.