Arid
DOI10.1016/j.jastp.2018.01.022
Modeling of tropospheric NO2 column over different climatic zones and land use/land cover types in South Asia
ul-Haq, Zia; Rana, Asim Daud; Tariq, Salman; Mahmood, Khalid; Ali, Muhammad; Bashir, Iqra
通讯作者ul-Haq, Zia
来源期刊JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS
ISSN1364-6826
EISSN1879-1824
出版年2018
卷号168页码:80-99
英文摘要

We have applied regression analyses for the modeling of tropospheric NO2 (tropo-NO2) as the function of anthropogenic nitrogen oxides (NOx) emissions, aerosol optical depth (AOD), and some important meteorological parameters such as temperature (Temp), precipitation (Preci), relative humidity (RH), wind speed (WS), cloud fraction (CLF) and outgoing long-wave radiation (OLR) over different climatic zones and land use/land cover types in South Asia during October 2004-December 2015. Simple linear regression shows that, over South Asia, tropo-NO2 variability is significantly linked to AOD, WS, NOx, Preci and CLF. Also zone-5, consisting of tropical monsoon areas of eastern India and Myanmar, is the only study zone over which all the selected parameters show their influence on tropo-NO2 at statistical significance levels. In stepwise multiple linear modeling, tropo-NO2 column over landmass of South Asia, is significantly predicted by the combination of RH (standardized regression coefficient, beta = -49), AOD (beta = 0.42) and NOx (beta = 0.25). The leading predictors of tropo-NO2 columns over zones 1-5 are OLR, AOD, Temp, OLR, and RH respectively. Overall, as revealed by the higher correlation coefficients (r), the multiple regressions provide reasonable models for tropo-NO2 over South Asia (r = 0.82), zone-4 (r = 0.90) and zone-5 (r = 0.93). The lowest r (of 0.66) has been found for hot semi-arid region in northwestern Indus-Ganges Basin (zone-2). The highest value of beta for urban area AOD (of 0.42) is observed for megacity Lahore, located in warm semi-arid zone-2 with large scale crop-residue burning, indicating strong influence of aerosols on the modeled tropo-NO2 column. A statistical significant correlation (r = 0.22) at the 0.05 level is found between tropo-NO2 and AOD over Lahore. Also NOx emissions appear as the highest contributor (beta = 0.59) for modeled tropo-NO2 column over megacity Dhaka.


英文关键词NO2 Regression analysis Air pollution Climate change OMI
类型Article
语种英语
国家Pakistan
收录类别SCI-E
WOS记录号WOS:000425574900009
WOS关键词OZONE MONITORING INSTRUMENT ; SECONDARY ORGANIC AEROSOL ; AIR-QUALITY ; SATELLITE DATA ; OPTICAL DEPTH ; PAKISTAN ; RETRIEVAL ; CHEMISTRY ; TRENDS ; LAHORE
WOS类目Geochemistry & Geophysics ; Meteorology & Atmospheric Sciences
WOS研究方向Geochemistry & Geophysics ; Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/210675
作者单位Univ Punjab, Dept Space Sci, Remote Sensing & GIS Grp, New Campus, Lahore 54590, Pakistan
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ul-Haq, Zia,Rana, Asim Daud,Tariq, Salman,et al. Modeling of tropospheric NO2 column over different climatic zones and land use/land cover types in South Asia[J],2018,168:80-99.
APA ul-Haq, Zia,Rana, Asim Daud,Tariq, Salman,Mahmood, Khalid,Ali, Muhammad,&Bashir, Iqra.(2018).Modeling of tropospheric NO2 column over different climatic zones and land use/land cover types in South Asia.JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS,168,80-99.
MLA ul-Haq, Zia,et al."Modeling of tropospheric NO2 column over different climatic zones and land use/land cover types in South Asia".JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS 168(2018):80-99.
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