Matches in SemOpenAlex for { <https://semopenalex.org/work/W3217382433> ?p ?o ?g. }
- W3217382433 endingPage "122661" @default.
- W3217382433 startingPage "122661" @default.
- W3217382433 abstract "To reduce pollutant emission of gasoline engine during cold start, ZSM-5 zeolite was selected as adsorbent and coated on cordierite carrier and encapsulated as a hydrocarbon (HC) catcher. The hydrocarbon catcher was connected to an engine bench and the cold start experiment was carried out on the engine bench. The low-speed section of World Light Vehicles Test Cycle (WLTC) was used as the real road cycle to study the cold start emission of gasoline engines. The real-time emissions of hydrocarbons before and after the hydrocarbon catcher were measured and compared. The following results were obtained: in the first 41 s, the adsorption efficiency could reach 78%. From 41 s to 108 s, most of the adsorbed hydrocarbons were desorbed. After 108 s, chemical adsorption played a leading role. The total adsorption efficiency was 26.2% in the whole cycle. Results showed that ZSM-5 was an excellent HC adsorbent for cold start of gasoline engine. Molecular simulation based on the Monte Carlo method was applied to help understand the adsorption behavior of propene on ZSM-5 zeolite. Results showed that the priority of propene adsorption sites was: channel intersection near the compensation cation > channel intersection > center of the channels > the outer ring of the channels." @default.
- W3217382433 created "2021-12-06" @default.
- W3217382433 creator A5008320539 @default.
- W3217382433 creator A5010700061 @default.
- W3217382433 creator A5019416418 @default.
- W3217382433 creator A5025254137 @default.
- W3217382433 creator A5053272104 @default.
- W3217382433 creator A5066783498 @default.
- W3217382433 creator A5082552758 @default.
- W3217382433 date "2022-04-01" @default.
- W3217382433 modified "2023-10-12" @default.
- W3217382433 title "Experimental and simulation study on the effect of ZSM-5 hydrocarbon catcher on the emission of gasoline engine during cold start" @default.
- W3217382433 cites W1966396886 @default.
- W3217382433 cites W1972438847 @default.
- W3217382433 cites W1984172382 @default.
- W3217382433 cites W1988716656 @default.
- W3217382433 cites W2001173397 @default.
- W3217382433 cites W2008934689 @default.
- W3217382433 cites W2015648512 @default.
- W3217382433 cites W2016539940 @default.
- W3217382433 cites W2017801366 @default.
- W3217382433 cites W2020746267 @default.
- W3217382433 cites W2024600642 @default.
- W3217382433 cites W2031575492 @default.
- W3217382433 cites W2035485986 @default.
- W3217382433 cites W2038844168 @default.
- W3217382433 cites W2046725021 @default.
- W3217382433 cites W2049572769 @default.
- W3217382433 cites W2055966565 @default.
- W3217382433 cites W2062104754 @default.
- W3217382433 cites W2062676204 @default.
- W3217382433 cites W2063498347 @default.
- W3217382433 cites W2064056758 @default.
- W3217382433 cites W2065269204 @default.
- W3217382433 cites W2074704268 @default.
- W3217382433 cites W2080515323 @default.
- W3217382433 cites W2083352766 @default.
- W3217382433 cites W2092517000 @default.
- W3217382433 cites W2130875273 @default.
- W3217382433 cites W2153053642 @default.
- W3217382433 cites W2153688283 @default.
- W3217382433 cites W2169350681 @default.
- W3217382433 cites W2210559315 @default.
- W3217382433 cites W2225978601 @default.
- W3217382433 cites W2238305208 @default.
- W3217382433 cites W2262793653 @default.
- W3217382433 cites W2293090548 @default.
- W3217382433 cites W2317051776 @default.
- W3217382433 cites W2317097484 @default.
- W3217382433 cites W2324974978 @default.
- W3217382433 cites W2346142906 @default.
- W3217382433 cites W2505587904 @default.
- W3217382433 cites W2513217329 @default.
- W3217382433 cites W2517812998 @default.
- W3217382433 cites W2533252139 @default.
- W3217382433 cites W2545939217 @default.
- W3217382433 cites W2583627252 @default.
- W3217382433 cites W2596690089 @default.
- W3217382433 cites W2725180579 @default.
- W3217382433 cites W2771627898 @default.
- W3217382433 cites W2774140233 @default.
- W3217382433 cites W2796281753 @default.
- W3217382433 cites W2921859460 @default.
- W3217382433 cites W2954819385 @default.
- W3217382433 cites W2959140986 @default.
- W3217382433 cites W2970831093 @default.
- W3217382433 cites W2998022048 @default.
- W3217382433 cites W3005296994 @default.
- W3217382433 cites W3014146643 @default.
- W3217382433 cites W3025099018 @default.
- W3217382433 cites W3111351655 @default.
- W3217382433 cites W3118983170 @default.
- W3217382433 cites W3161380502 @default.
- W3217382433 cites W3191461849 @default.
- W3217382433 cites W3195309122 @default.
- W3217382433 cites W3203116903 @default.
- W3217382433 cites W3213529375 @default.
- W3217382433 doi "https://doi.org/10.1016/j.fuel.2021.122661" @default.
- W3217382433 hasPublicationYear "2022" @default.
- W3217382433 type Work @default.
- W3217382433 sameAs 3217382433 @default.
- W3217382433 citedByCount "22" @default.
- W3217382433 countsByYear W32173824332022 @default.
- W3217382433 countsByYear W32173824332023 @default.
- W3217382433 crossrefType "journal-article" @default.
- W3217382433 hasAuthorship W3217382433A5008320539 @default.
- W3217382433 hasAuthorship W3217382433A5010700061 @default.
- W3217382433 hasAuthorship W3217382433A5019416418 @default.
- W3217382433 hasAuthorship W3217382433A5025254137 @default.
- W3217382433 hasAuthorship W3217382433A5053272104 @default.
- W3217382433 hasAuthorship W3217382433A5066783498 @default.
- W3217382433 hasAuthorship W3217382433A5082552758 @default.
- W3217382433 hasConcept C103697071 @default.
- W3217382433 hasConcept C121332964 @default.
- W3217382433 hasConcept C127413603 @default.
- W3217382433 hasConcept C150394285 @default.
- W3217382433 hasConcept C161790260 @default.
- W3217382433 hasConcept C163258240 @default.