Matches in SemOpenAlex for { <https://semopenalex.org/work/W3104335013> ?p ?o ?g. }
- W3104335013 endingPage "115999" @default.
- W3104335013 startingPage "115999" @default.
- W3104335013 abstract "In this study, ozonesonde data were used to evaluate the impact of different boundary conditions on the vertical distribution of ozone over urban Beijing. The comparison shows that the clean and static boundary conditions, referred to as PROFILE, apparently underestimate the ozone concentration over the upper troposphere and stratosphere, whereas the global chemical transport model (CTM) provides much more reasonable performance. Further investigation reveals that the boundary conditions exert larger impacts over areas with high altitudes and close distances to boundaries, such as the Tibetan Plateau, while they yield weak impacts on regions relatively far from the boundary, such as the North China Plain (NCP). Process analysis was conducted to investigate the modulation of physical and chemical processes on ozone formation in June 2017, illustrating that during the daytime of the high-O3 period, the photochemical reactions within the planetary boundary layer (PBL) almost become the only source favorable to ozone accumulation. Motivated by this phenomenon, we constructed a linear regression and found that the maximum daily 8-hr ozone (MDA8) ozone concentration was highly correlated with the surface ozone change rate and chemical reactions in the PBL during the pollution period, with MDA8 ozone exceeding 70 ppbv over NCP. Based on this relationship as well as the design of numerical experiments, we propose a strategy of dynamic emission control. Firstly, the emission reduction during the peak ozone formation period may weaken the fast chemical reactions in the PBL and subsequent surface ozone concentration. Secondly, emission reduction one or two days prior to an episode might achieve larger ozone reduction through the accumulation effect. Lastly, emission control outside of the NCP may surpass the local impact under favorable meteorological conditions. Therefore, the efficacy of dynamic emission control was striking when both the accumulation and transport effect were taken into consideration." @default.
- W3104335013 created "2020-11-23" @default.
- W3104335013 creator A5003889868 @default.
- W3104335013 creator A5013049125 @default.
- W3104335013 creator A5029003913 @default.
- W3104335013 creator A5041081583 @default.
- W3104335013 creator A5042026897 @default.
- W3104335013 creator A5049111697 @default.
- W3104335013 creator A5055912616 @default.
- W3104335013 creator A5057933852 @default.
- W3104335013 date "2021-03-01" @default.
- W3104335013 modified "2023-10-15" @default.
- W3104335013 title "Revealing the modulation of boundary conditions and governing processes on ozone formation over northern China in June 2017" @default.
- W3104335013 cites W1573077434 @default.
- W3104335013 cites W1896300280 @default.
- W3104335013 cites W1964847132 @default.
- W3104335013 cites W1967088802 @default.
- W3104335013 cites W1973825971 @default.
- W3104335013 cites W1979754972 @default.
- W3104335013 cites W1980239338 @default.
- W3104335013 cites W1987238719 @default.
- W3104335013 cites W1989163065 @default.
- W3104335013 cites W1990202992 @default.
- W3104335013 cites W1992671960 @default.
- W3104335013 cites W1993359485 @default.
- W3104335013 cites W2002185921 @default.
- W3104335013 cites W2005277333 @default.
- W3104335013 cites W2007998860 @default.
- W3104335013 cites W2008641894 @default.
- W3104335013 cites W2009634867 @default.
- W3104335013 cites W2012196264 @default.
- W3104335013 cites W2013504275 @default.
- W3104335013 cites W2038742869 @default.
- W3104335013 cites W2051368627 @default.
- W3104335013 cites W2052594184 @default.
- W3104335013 cites W2060172488 @default.
- W3104335013 cites W2071272121 @default.
- W3104335013 cites W2073767379 @default.
- W3104335013 cites W2079624945 @default.
- W3104335013 cites W2110179017 @default.
- W3104335013 cites W2114883075 @default.
- W3104335013 cites W2119007429 @default.
- W3104335013 cites W2130279153 @default.
- W3104335013 cites W2144077399 @default.
- W3104335013 cites W2148473482 @default.
- W3104335013 cites W2151181273 @default.
- W3104335013 cites W2155829461 @default.
- W3104335013 cites W2345120219 @default.
- W3104335013 cites W2473225898 @default.
- W3104335013 cites W2515872853 @default.
- W3104335013 cites W2535238616 @default.
- W3104335013 cites W2600387810 @default.
- W3104335013 cites W2616827034 @default.
- W3104335013 cites W2743962135 @default.
- W3104335013 cites W2752052748 @default.
- W3104335013 cites W2756616935 @default.
- W3104335013 cites W2769773454 @default.
- W3104335013 cites W2771475195 @default.
- W3104335013 cites W2797222373 @default.
- W3104335013 cites W2806978598 @default.
- W3104335013 cites W2893252733 @default.
- W3104335013 cites W2898904778 @default.
- W3104335013 cites W2905355243 @default.
- W3104335013 cites W2942208331 @default.
- W3104335013 cites W2955601895 @default.
- W3104335013 cites W2986418128 @default.
- W3104335013 cites W2999133718 @default.
- W3104335013 cites W3003229029 @default.
- W3104335013 cites W3017341110 @default.
- W3104335013 doi "https://doi.org/10.1016/j.envpol.2020.115999" @default.
- W3104335013 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33218775" @default.
- W3104335013 hasPublicationYear "2021" @default.
- W3104335013 type Work @default.
- W3104335013 sameAs 3104335013 @default.
- W3104335013 citedByCount "19" @default.
- W3104335013 countsByYear W31043350132021 @default.
- W3104335013 countsByYear W31043350132022 @default.
- W3104335013 countsByYear W31043350132023 @default.
- W3104335013 crossrefType "journal-article" @default.
- W3104335013 hasAuthorship W3104335013A5003889868 @default.
- W3104335013 hasAuthorship W3104335013A5013049125 @default.
- W3104335013 hasAuthorship W3104335013A5029003913 @default.
- W3104335013 hasAuthorship W3104335013A5041081583 @default.
- W3104335013 hasAuthorship W3104335013A5042026897 @default.
- W3104335013 hasAuthorship W3104335013A5049111697 @default.
- W3104335013 hasAuthorship W3104335013A5055912616 @default.
- W3104335013 hasAuthorship W3104335013A5057933852 @default.
- W3104335013 hasConcept C111603439 @default.
- W3104335013 hasConcept C121332964 @default.
- W3104335013 hasConcept C127313418 @default.
- W3104335013 hasConcept C153294291 @default.
- W3104335013 hasConcept C163861444 @default.
- W3104335013 hasConcept C166957645 @default.
- W3104335013 hasConcept C18903297 @default.
- W3104335013 hasConcept C191935318 @default.
- W3104335013 hasConcept C205649164 @default.
- W3104335013 hasConcept C2776349674 @default.
- W3104335013 hasConcept C2777517185 @default.