globalchange  > 气候变化事实与影响
DOI: 10.1016/j.atmosenv.2017.03.048
Scopus记录号: 2-s2.0-85017001917
论文题名:
Observations of trace gases, photolysis rate coefficients and model simulations over semi-arid region, India
作者: Lingaswamy A; P; , Arafath S; M; , Balakrishnaiah G; , Rama Gopal K; , Siva Kumar Reddy N; , Raja Obul Reddy K; , Reddy R; R; , Chakradhar Rao T
刊名: Atmospheric Environment
ISSN: 0168-2563
EISSN: 1573-515X
出版年: 2017
卷: 158
起始页码: 246
结束页码: 258
语种: 英语
英文关键词: Photolysis rate coefficients ; Radiative transfer model ; Source approximation ; Trace gases ; Visibility
Scopus关键词: Atmospheric boundary layer ; Atmospheric chemistry ; Atmospheric thermodynamics ; Boundary layers ; Gases ; Photolysis ; Radiative transfer ; Sulfur dioxide ; Troposphere ; Urban transportation ; Visibility ; Wind ; Atmospheric visibility ; Ground based measurement ; Photolysis rates ; Positive correlations ; Radiative transfer model ; Source approximation ; Surrounding regions ; Trace-gases ; Nitrogen oxides ; carbon monoxide ; nitrogen dioxide ; sulfur dioxide ; atmospheric modeling ; boundary layer ; carbon monoxide ; concentration (composition) ; diurnal variation ; mixing ratio ; photolysis ; radiative transfer ; rural area ; semiarid region ; solar radiation ; trace gas ; traffic emission ; troposphere ; visibility ; wind velocity ; Article ; boundary layer ; humidity ; India ; meteorology ; photolysis ; priority journal ; rural area ; seasonal variation ; semiarid climate ; simulation ; solar radiation ; summer ; visibility ; wind ; winter ; Anantapur ; Andhra Pradesh ; India
Scopus学科分类: Environmental Science: Water Science and Technology ; Earth and Planetary Sciences: Earth-Surface Processes ; Environmental Science: Environmental Chemistry
英文摘要: Continuous ground-based measurements of CO, SO2 and NO2 were carried out in a semi-arid rural area, Anantapur [14.62 0N, 77.65 0E], Southern India, for the period January 2012–December 2012. The maximum CO concentration was observed in winter (310���17�ppbv) followed by summer (180���21�ppbv) and post monsoon (174���20�ppbv), while the minimum in monsoon (72���9�ppbv). Seasonal mean NO2/NOx ratios for monsoon, post monsoon, winter and summer were about 0.88, 0.91, 0.76 and 0.80 respectively, indicating a higher conversion of NO to NO2 over the measurement site. Monthly mean low SO2 mixing ratio was found (0.46���0.02�ppbv) in monsoon and high (2.42���0.21�ppbv) in winter. Keeping the emissions aside, the levels of CO, SO2 and NO2 were influenced by meteorology, urban effects and trans-boundary transport in the lower troposphere. Atmospheric boundary layer (ABL) had the good correlation coefficient (R�=�0.76) with solar radiation during daytime, while it was mainly correlated with wind speed during night time (R�=�0.42). Diurnal trend of atmospheric visibility was found to be maximum during noon times at around (14:00–16:00�h) about 76 k.m. and minimum during morning periods (06:00–08:00�h) about 45 k.m. A strong positive correlation was observed between BC and CO (R�=�0.71) with an average slope, suggesting common or proximate sources likely to be traffic emissions contribution for the production of BC and CO. The SO2/NOx and CO/NOx study were strongly suggested that mobile sources were larger contributors over the site and the evidence of transport of emissions from other surrounding regions. Tropospheric Ultraviolet Visible (TUV) radiative transfer model was used to calculate the Photolysis rate coefficients (J(O3), J(NO2)). Chemical box model (NCAR-MM) was used to simulate diurnal variation of CO and the results were reported. � 2017 Elsevier Ltd
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/82814
Appears in Collections:气候变化事实与影响

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作者单位: Aerosol & Atmospheric Research Laboratory, Department of Physics, Sri Krishnadevaraya University, Anantapur, Andhra Pradesh, India; Department of Physics, Rayalaseema University, Kurnool, Andhra Pradesh, India; Environment Research Institute, Shandong University, Jinan, China

Recommended Citation:
Lingaswamy A,P,, Arafath S,et al. Observations of trace gases, photolysis rate coefficients and model simulations over semi-arid region, India[J]. Atmospheric Environment,2017-01-01,158
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