Matches in SemOpenAlex for { <https://semopenalex.org/work/W2108128540> ?p ?o ?g. }
- W2108128540 endingPage "305" @default.
- W2108128540 startingPage "296" @default.
- W2108128540 abstract "This article investigated an atmospheric pressure dielectric barrier discharge (DBD) plasma reactor to explore the effects of carrier gas type, applied voltage and pulse repetition frequency on upgrading of 4-methylanisole as a lignin-derived bio-oil. A series of experiments were designed to realize the effects of argon (Ar) and hydrogen (H2) on upgrading. The results showed that argon yields higher conversion of 4-methylanisole compared to hydrogen, and both voltage and frequency had positive effects on the conversion of 4-methylanisole. Increasing voltage and frequency led to an increase in the number of active species and subsequently, the number of effective collisions as a result 4-methylanisole conversion and discharge power (DP). In the experiments with applied voltage of 9 kV, frequency of 20 kHz and existence of Ar as carrier gas, the conversion reached to 29.80% at the DP of 77 W. The most abundant products were 4-methyphenol and 2,4-dimethylphenol, which were formed from transalkylation and hydrogenolysis reactions. It was found that the increase in the applied voltage, frequency and Ar percentage of carrier gas (as adjustable parameters), has the same effects on product distribution; since their variation resulted in the same changes in core plasma parameters such as electron energy, temperature and density." @default.
- W2108128540 created "2016-06-24" @default.
- W2108128540 creator A5000696336 @default.
- W2108128540 creator A5001688457 @default.
- W2108128540 creator A5053367903 @default.
- W2108128540 creator A5063004893 @default.
- W2108128540 creator A5078116755 @default.
- W2108128540 date "2015-12-01" @default.
- W2108128540 modified "2023-10-16" @default.
- W2108128540 title "Upgrading of lignin-derived bio-oil in non-catalytic plasma reactor: Effects of operating parameters on 4-methylanisole conversion" @default.
- W2108128540 cites W1496982769 @default.
- W2108128540 cites W1968880281 @default.
- W2108128540 cites W1969097661 @default.
- W2108128540 cites W1976174544 @default.
- W2108128540 cites W1978666900 @default.
- W2108128540 cites W1979509155 @default.
- W2108128540 cites W1981237977 @default.
- W2108128540 cites W1985669488 @default.
- W2108128540 cites W1987967250 @default.
- W2108128540 cites W1993458283 @default.
- W2108128540 cites W1994706332 @default.
- W2108128540 cites W1995302583 @default.
- W2108128540 cites W1997001636 @default.
- W2108128540 cites W2000408363 @default.
- W2108128540 cites W2001485924 @default.
- W2108128540 cites W2006825052 @default.
- W2108128540 cites W2007549400 @default.
- W2108128540 cites W2008072876 @default.
- W2108128540 cites W2023573407 @default.
- W2108128540 cites W2031822566 @default.
- W2108128540 cites W2039535582 @default.
- W2108128540 cites W2046034128 @default.
- W2108128540 cites W2048718304 @default.
- W2108128540 cites W2049866663 @default.
- W2108128540 cites W2050108637 @default.
- W2108128540 cites W2063564317 @default.
- W2108128540 cites W2066063171 @default.
- W2108128540 cites W2066747465 @default.
- W2108128540 cites W2067545917 @default.
- W2108128540 cites W2074356432 @default.
- W2108128540 cites W2076406211 @default.
- W2108128540 cites W2086288915 @default.
- W2108128540 cites W2087374183 @default.
- W2108128540 cites W2090004548 @default.
- W2108128540 cites W2094078773 @default.
- W2108128540 cites W2105223211 @default.
- W2108128540 cites W2130959124 @default.
- W2108128540 cites W2145574300 @default.
- W2108128540 cites W2157616192 @default.
- W2108128540 cites W2316787924 @default.
- W2108128540 cites W2319715248 @default.
- W2108128540 cites W2322463013 @default.
- W2108128540 cites W2324651954 @default.
- W2108128540 cites W2325707149 @default.
- W2108128540 cites W2328531464 @default.
- W2108128540 cites W880145233 @default.
- W2108128540 doi "https://doi.org/10.1016/j.cherd.2015.08.017" @default.
- W2108128540 hasPublicationYear "2015" @default.
- W2108128540 type Work @default.
- W2108128540 sameAs 2108128540 @default.
- W2108128540 citedByCount "27" @default.
- W2108128540 countsByYear W21081285402016 @default.
- W2108128540 countsByYear W21081285402017 @default.
- W2108128540 countsByYear W21081285402018 @default.
- W2108128540 countsByYear W21081285402019 @default.
- W2108128540 countsByYear W21081285402020 @default.
- W2108128540 countsByYear W21081285402021 @default.
- W2108128540 countsByYear W21081285402022 @default.
- W2108128540 countsByYear W21081285402023 @default.
- W2108128540 crossrefType "journal-article" @default.
- W2108128540 hasAuthorship W2108128540A5000696336 @default.
- W2108128540 hasAuthorship W2108128540A5001688457 @default.
- W2108128540 hasAuthorship W2108128540A5053367903 @default.
- W2108128540 hasAuthorship W2108128540A5063004893 @default.
- W2108128540 hasAuthorship W2108128540A5078116755 @default.
- W2108128540 hasConcept C111368507 @default.
- W2108128540 hasConcept C113196181 @default.
- W2108128540 hasConcept C119599485 @default.
- W2108128540 hasConcept C121332964 @default.
- W2108128540 hasConcept C127313418 @default.
- W2108128540 hasConcept C127413603 @default.
- W2108128540 hasConcept C133386390 @default.
- W2108128540 hasConcept C13674155 @default.
- W2108128540 hasConcept C147789679 @default.
- W2108128540 hasConcept C161790260 @default.
- W2108128540 hasConcept C165801399 @default.
- W2108128540 hasConcept C17525397 @default.
- W2108128540 hasConcept C178790620 @default.
- W2108128540 hasConcept C185592680 @default.
- W2108128540 hasConcept C192562407 @default.
- W2108128540 hasConcept C200239111 @default.
- W2108128540 hasConcept C2778077586 @default.
- W2108128540 hasConcept C2781036261 @default.
- W2108128540 hasConcept C2781369918 @default.
- W2108128540 hasConcept C43617362 @default.
- W2108128540 hasConcept C49040817 @default.
- W2108128540 hasConcept C512968161 @default.
- W2108128540 hasConcept C547737533 @default.