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22篇 您的检索式:作者名="Judith C. Chow"
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1Seasonal variations and sources of mass and chemical composition for PM_(10) aerosol in Hangzhou,China显示文摘Aerosol observation was conducted for four seasons from September 2001 to August 2002 at five sampling sites in Hangzhou, South China, on PM10 mass, 22 elements (Na, Mg, Al, Si, P, S, K, Ca, Ti, V, Cr, Mn, Fe, Ni, Cu, Zn, As, Se, Br, Cd, Ba, and Pb), 5 major ions (F-, Cl-, NO3-, SO42-, and NH4+), and organic and elemental carbon (OC and EC), showing that PM10 mass ranged from 46.7 to 270.8 g/m3, with an annual average of 119.2 g/m3. Na, Al, Si, S, K, Ca, and Fe were the most abundant elements in PM10, most of S being in the form of SO42-. SO42-, NO3-, and NH4+ were the major ions, which contributed to about 20% of the PM10 mass. The mean seasonal concentrations for SO42-, averaged over all sites, were found to be 18.0, 18.5, 24.7, and 21.4 g/m3, for spring, summer, autumn, and winter, respectively, while the corresponding loadings for NO3- were 7.2, 4.7, 7.1, and 11.2 g/m3, and for NH4+ were 6.0, 5.9, 8.2, and 9.3 g/m3, in the form mostly of NH4NO3 in spring, autumn, and winter, and mostly of (NH4)2SO4 in summer. The low NO3-/SO42-ratio found indicates coal combustion as the major source throughout the year. The mean annual concentrations of OC and EC in PM10 were found to be 21.4, and 4.1 g/m3, respectively. Material balance calculation indicated that fugitive dust, the secondary aerosol, and carbonaceous matter were the most abundant species in PM10 for the four seasons, as is characteristic for cities in South China.Junji Cao Zhenxing Shen Judith C. Chow Guowei Qi John G. Watson 2009Particuology2009,7,3:58
2MORPHOLOGY AND ELEMENTAL COMPOSITION OF DUSTFALL PARTICLES INSIDE EMPEROR QIN'S TERRA-COTTA WARRIORS AND HORSES MUSEUM显示文摘Indoor dustfall samples were collected in Pit 1 and Pit 2 of Emperor Qin’s Terra-cotta Warriors and Horses Museum in Xi’an, Shaanxi Province, China. The morphological and elemental analysis for long-term (>10 years) and short-term (~0.5 year) dustfall particles and lacquer pieces on the faces of partly assembled warriors were performed with scanning electron microscopy with energy dispersive X-ray spectrometer (SEM/EDX). The results showed that the ma-jority of dustfall samples appeared to be composed of mineral dust particles, fly ash, and biological particles with different elemental compositions. Most of the mineral particles had irregular shapes with smooth edges. Small floccules of calcium sulfate were more frequently observed in long-term dustfall samples than in short-term samples, implying a progressive chemical reaction between continuous dustfall particles and atmospheric sulfur dioxide. Crystals of calcium sulfate were also found near pits on both inner and outer surfaces of lacquer pieces, revealing an acid chemical reaction between sulfur dioxide and lacquer material as the cause of the formation of erosion pits and cracks on surface of lacquer pieces.Tafeng Hu Xuxiang Li Jungang Dong Bo Rong Zhenxing Shen Junji Cao Shun-Cheng Lee Judith C. Chow John G. Watson 2006China Particuology2006,4,6:3
3Descriptive analysis of PM 2.5 and PM 10 at regionally representative locations during SJVAQS/AUSPEX显示文摘Judith C. Chow John G. Watson Zhiqiang Lu Douglas H. Lowenthal Clifton A. Frazier Paul A. Solomon Richard H. Thuillier Karen Magliano 1996Atmospheric Environment1996,,12:3
4Comparison of four scanning mobility particle sizers at the Fresno Supersite显示文摘Size distributions of ambient aerosols at the Fresno Supersite were measured with four commercially available scanning mobility particle sizers(SMPS) . TSI nano,TSI standard,Grimm,and MSP instruments were collocated at the Fresno Supersite and particle size distributions were measured continuously from August 18 through September 18,2005. For particles with diameters between 10 and 200 nm,differences among hourly-average ambient particle concentrations ranged from 0% between the TSI nano and Grimm in the 30-50 nm size range to 39% between the Grimm and MSP in the 10-30 nm size range. MSP concen-trations were 10-33% lower than those measured with the TSI standard for particles smaller than 200 nm. The TSI nano and TSI standard agreed to within 5% in their overlapping size range(10-84 nm) . The TSI nano and Grimm agreed to within 40% for 5-10 nm particles.John G. Watson Judith C. Chow David A. Sodeman Douglas H. Lowenthal M.-C. Oliver Chang Kihong Park Xiaoliang Wang 2011Particuology2011,9,3:2
5Impacts of aerosol compositions on visibility impairment in Xi’an, China显示文摘Jun-ji Cao Qi-yuan Wang Judith C. Chow John G. Watson Xue-xi Tie Zhen-xing Shen Ping Wang Zhi-sheng An 2012Atmospheric Environment2012,,:2
6Descriptive analysis of PM 2.5 and PM 10 at regionally representative locations during SJVAQS/AUSPEX显示文摘Judith C. Chow John G. Watson Zhiqiang Lu Douglas H. Lowenthal Clifton A. Frazier Paul A. Solomon Richard H. Thuillier Karen Magliano 1996Atmospheric Environment1996,,12:2
7Air Pollution and Heart Rate Variability Among the Elderly in Mexico City显示文摘Fernando Holguín Marta M. Téllez-Rojo Mauricio Hernández Marlene Cortez Judith C. Chow John G. Watson David Mannino Isabelle Romieu 2003Epidemiology2003,,5:1
8PM2.5 and PM10 Concentrations from the Qalabotjha Low-Smoke Fuels Macro-Scale Experiment in South Africa显示文摘Johann P. Engelbrecht Leon Swanepoel Judith C. Chow John G. Watson Richard T. Egami 2001Environmental Monitoring and Assessment2001,,1:1
9Seasonal characteristics and regional transport of PM 2.5 in Hong Kong显示文摘Peter K.K. Louie John G. Watson Judith C. Chow Antony Chen Della W.M. Sin Alexis K.H. Lau 2005Atmospheric Environment2005,,9:1
10Comparability between PM2.5 and Particle Light Scattering Measurements显示文摘Judith C. Chow John G. Watson Douglas H. Lowenthal L. Willard Richards 2002Environmental Monitoring and Assessment2002,,1:1
11Evaluation of the thermal/optical reflectance method for discrimination between char- and soot-EC显示文摘Yongming Han Junji Cao Judith C. Chow John G. Watson Zhisheng An Zhangdong Jin Kochy Fung Suixin Liu 2007Chemosphere2007,,4:1
12Review of volatile organic compound source apportionment by chemical mass balance显示文摘John G. Watson Judith C. Chow Eric M. Fujita 2001Atmospheric Environment2001,,9:1
13Impacts of aerosol compositions on visibility impairment in Xi’an, China显示文摘Jun-ji Cao Qi-yuan Wang Judith C. Chow John G. Watson Xue-xi Tie Zhen-xing Shen Ping Wang Zhi-sheng An 2012Atmospheric Environment2012,,:1
14Review of volatile organic compound source apportionment by chemical mass balance显示文摘John G. Watson Judith C. Chow Eric M. Fujita 2001Atmospheric Environment2001,,9:1
15Seasonal characteristics and regional transport of PM 2.5 in Hong Kong显示文摘Peter K.K. Louie John G. Watson Judith C. Chow Antony Chen Della W.M. Sin Alexis K.H. Lau 2005Atmospheric Environment2005,,:1
16Review of volatile organic compound source apportionment by chemical mass balance显示文摘John G. Watson Judith C. Chow Eric M. Fujita 2001Atmospheric Environment2001,,9:1
17Real-world emission factors for Caterpillar 797B heavy haulers during mining operations显示文摘Xiaoliang Wang Judith C. Chow Steven D. Kohl Kevin E. Percy Allan H. Legge John G. Watson 2016Particuology2016,14,5:1
18Review of volatile organic compound source apportionment by chemical mass balance显示文摘John G. Watson Judith C. Chow Eric M. Fujita 2001Atmospheric Environment2001,,9:1
19Aerosol light absorption, black carbon, and elemental carbon at the Fresno Supersite, California显示文摘Judith C. Chow John G. Watson Prakash Doraiswamy Lung-Wen Antony Chen David A. Sodeman Douglas H. Lowenthal Kihong Park W. Patrick Arnott Nehzat Motallebi 2009Atmospheric Research2009,,4:1
20Comparison of IMPROVE and NIOSH Carbon Measurements显示文摘Judith C. Chow John G. Watson Dale Crow Douglas H. Lowenthal Thomas Merrifield 2001Aerosol Science and Technology2001,,1:1
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