Matches in SemOpenAlex for { <https://semopenalex.org/work/W2056551787> ?p ?o ?g. }
- W2056551787 endingPage "7362" @default.
- W2056551787 startingPage "7325" @default.
- W2056551787 abstract "A latitudinally averaged two‐dimensional model has been used to study the distributions, budgets, and trends of trace gases in the atmosphere from pole to pole and from the surface to 24 km. The chemical mechanism used contains 56 chemical species, including 12 hydrocarbons and 125 chemical and photochemical reactions, as well as wet removal processes and dry deposition. Apart from the stratospheric sources of ozone and nitrogen oxides the model chemistry is driven completely by the time‐dependent photolytic processes and the emission of 17 chemical species distributed according to 10 different source categories. Each source category is parameterized as a function of latitude and time of the year. The model results are generally in good agreement with observations, and the model reproduces the observed temporal and spatial variation in the mixing ratios of methane, carbon monoxide, hydrocarbons, and ozone. The global average concentration of the hydroxyl radical in the troposphere is 8.3×10 5 molecules cm −3 , in agreement with recent calculations based on budgets and trends for CH 3 CCl 3 . Model budgets for NO x , CO, CH 4 , H 2 and O 3 are presented. These show that although the stratospheric source and dry deposition terms for ozone almost balance, the global annual turnover of ozone below 24 km, excluding the O 3 /NO/NO 2 null cycle, is four times greater than the stratospheric source strength. These budgets also suggest that the observed increase in the mixing ratio of methane may be due not only to an increasing source strength but also to a downward perturbation in the abundance of the hydroxyl radical." @default.
- W2056551787 created "2016-06-24" @default.
- W2056551787 creator A5004691620 @default.
- W2056551787 date "1991-04-20" @default.
- W2056551787 modified "2023-10-13" @default.
- W2056551787 title "Development of a two‐dimensional global tropospheric model: Model chemistry" @default.
- W2056551787 cites W148833272 @default.
- W2056551787 cites W1499181428 @default.
- W2056551787 cites W1504272238 @default.
- W2056551787 cites W1599878228 @default.
- W2056551787 cites W1623924183 @default.
- W2056551787 cites W1822705283 @default.
- W2056551787 cites W1963711768 @default.
- W2056551787 cites W1966191947 @default.
- W2056551787 cites W1968149404 @default.
- W2056551787 cites W1968826486 @default.
- W2056551787 cites W1969834329 @default.
- W2056551787 cites W1972389542 @default.
- W2056551787 cites W1973788108 @default.
- W2056551787 cites W1975740367 @default.
- W2056551787 cites W1976241928 @default.
- W2056551787 cites W1976870655 @default.
- W2056551787 cites W1977298287 @default.
- W2056551787 cites W1978392360 @default.
- W2056551787 cites W1979033567 @default.
- W2056551787 cites W1981877916 @default.
- W2056551787 cites W1982390890 @default.
- W2056551787 cites W1983486778 @default.
- W2056551787 cites W1983770056 @default.
- W2056551787 cites W1985462987 @default.
- W2056551787 cites W1985575832 @default.
- W2056551787 cites W1985720140 @default.
- W2056551787 cites W1985908435 @default.
- W2056551787 cites W1987825857 @default.
- W2056551787 cites W1988755892 @default.
- W2056551787 cites W1990272795 @default.
- W2056551787 cites W1990364655 @default.
- W2056551787 cites W1990390642 @default.
- W2056551787 cites W1990810617 @default.
- W2056551787 cites W1990877036 @default.
- W2056551787 cites W1994274844 @default.
- W2056551787 cites W1996570862 @default.
- W2056551787 cites W1998092444 @default.
- W2056551787 cites W1998355490 @default.
- W2056551787 cites W1998457973 @default.
- W2056551787 cites W2000475661 @default.
- W2056551787 cites W2000917601 @default.
- W2056551787 cites W2002941761 @default.
- W2056551787 cites W2003474111 @default.
- W2056551787 cites W2003596736 @default.
- W2056551787 cites W2005648470 @default.
- W2056551787 cites W2005887670 @default.
- W2056551787 cites W2008654821 @default.
- W2056551787 cites W2011001780 @default.
- W2056551787 cites W2012173763 @default.
- W2056551787 cites W2012288325 @default.
- W2056551787 cites W2012949689 @default.
- W2056551787 cites W2013377510 @default.
- W2056551787 cites W2014446516 @default.
- W2056551787 cites W2015618635 @default.
- W2056551787 cites W2019022438 @default.
- W2056551787 cites W2020147105 @default.
- W2056551787 cites W2020391125 @default.
- W2056551787 cites W2020593840 @default.
- W2056551787 cites W2020678016 @default.
- W2056551787 cites W2020965636 @default.
- W2056551787 cites W2023526417 @default.
- W2056551787 cites W2024626134 @default.
- W2056551787 cites W2026132502 @default.
- W2056551787 cites W2027161608 @default.
- W2056551787 cites W2027449216 @default.
- W2056551787 cites W2029688439 @default.
- W2056551787 cites W2035207338 @default.
- W2056551787 cites W2038220147 @default.
- W2056551787 cites W2039169660 @default.
- W2056551787 cites W2039420181 @default.
- W2056551787 cites W2043967626 @default.
- W2056551787 cites W2044433742 @default.
- W2056551787 cites W2047734533 @default.
- W2056551787 cites W2047756866 @default.
- W2056551787 cites W2051701872 @default.
- W2056551787 cites W2053028880 @default.
- W2056551787 cites W2053187421 @default.
- W2056551787 cites W2053867411 @default.
- W2056551787 cites W2054896520 @default.
- W2056551787 cites W2054937579 @default.
- W2056551787 cites W2057899290 @default.
- W2056551787 cites W2059006576 @default.
- W2056551787 cites W2059010829 @default.
- W2056551787 cites W2060558750 @default.
- W2056551787 cites W2060779073 @default.
- W2056551787 cites W2066857085 @default.
- W2056551787 cites W2068024379 @default.
- W2056551787 cites W2068676456 @default.
- W2056551787 cites W2069374370 @default.
- W2056551787 cites W2070244951 @default.
- W2056551787 cites W2072009253 @default.
- W2056551787 cites W2075167374 @default.