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三维对流云对大气光化学组分的再分布作用及其化学效应 被引量:4
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作者 李冰 刘小红 洪钟祥 《大气科学》 CSCD 北大核心 2001年第2期260-268,共9页
利用一个三维的冰雹云模式与化学组分输送模块耦合,得到云输送引起大气光化学组分的再分布,然后用一个包含详细气相化学反应机制的箱模式研究了云输送引起的气相体积分数的变化及其对大气化学系统产生的影响。结果表明,云输送后O3... 利用一个三维的冰雹云模式与化学组分输送模块耦合,得到云输送引起大气光化学组分的再分布,然后用一个包含详细气相化学反应机制的箱模式研究了云输送引起的气相体积分数的变化及其对大气化学系统产生的影响。结果表明,云输送后O3体积分数大于无云个例,但其后两天内两者的变化趋势相差不大;HNO3、NO2、NO3、PAN等的体积分数均明显高于无云个例,分别增长了87%、70%、62%和49%,其中NO2体积分数的增加主要由于云输送造成,而NO3、HNO3、PAN主要是输送对化学扰动的结果。两天内OH和HO2自由基体积分数比无云个例平均增长了13%和11%。 展开更多
关键词 云输送 对流层 臭氧 化学反应箱模式 气相化学反应 大气尘化学组分
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Numerical study on the ozone formation inside street canyons using a chemistry box model 被引量:2
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作者 Chun-Ho Liu Dennis Y.C.Leung 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第7期832-837,共6页
Tropospheric ozone is a secondary air pollutant produced in the presence of nitrogen oxides (NO_x),volatile organic compounds (VOCs),and solar radiation.In an urban environment,ground-level vehicular exhaust is the ma... Tropospheric ozone is a secondary air pollutant produced in the presence of nitrogen oxides (NO_x),volatile organic compounds (VOCs),and solar radiation.In an urban environment,ground-level vehicular exhaust is the major anthropogenic source of ozone precursors.In the cases of street canyons,pollutant dilution is weakened by the surrounding buildings that creates localized high concentration of NO_x and VOCs,and thus leads to high potential of ozone formation.By considering the major physical and chemical p... 展开更多
关键词 volatile organic compounds VOCs-to-NO_x ratio air quality vehicular emission chemistry box model
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Modeling heterogeneous chemical processes on aerosol surface 被引量:4
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作者 Junjun Deng Tijian Wang +1 位作者 Li Liu Fei Jiang 《Particuology》 SCIE EI CAS CSCD 2010年第4期308-318,共11页
To explore the possible impact of heterogeneous chemical processes on atmospheric trace components, a coupled box model including gas-phase chemical processes, aerosol thermodynamic equilibrium processes, and heteroge... To explore the possible impact of heterogeneous chemical processes on atmospheric trace components, a coupled box model including gas-phase chemical processes, aerosol thermodynamic equilibrium processes, and heterogeneous chemical processes on the surface of dust, black carbon (BC) and sea salt is set up to simulate the effects of heterogeneous chemistry on the aerosol surface, and analyze the primary factors affecting the heterogeneous processes. Results indicate that heterogeneous chemical processes on the aerosol surface in the atmosphere will affect the concentrations of trace gases such as H2O2, HO2, O3, NO2, NO3, HNO3 and SO2, and aerosols such as SO42-, NO3- and NH4+. Sensitivity tests suggest that the magnitude of the impact of heterogeneous processes strongly depends on aerosol concentration and the surface uptake coefficients used in the box model. However, the impact of temperature on heterogeneous chemical processes is considerably less. The "renoxification" of HNO3 will affect the components of the troPosPhere such as nitrogen oxide and ozone. 展开更多
关键词 box model Dust BC Sea salt Heterogeneous chemistry
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