Literature DB >> 14630419

Chemical characteristics of airborne particulate matter near major roads and at background locations in Macao, China.

Ye Wu1, Jiming Hao, Lixin Fu, Jingnan Hu, Zhishi Wang, Uwa Tang.   

Abstract

PM10 and PM2.5 samples were collected near major roads and at the background locations in Macao using a TEOM1400a+ACCU system. The chemical analysis of these particles indicated the presence of 36 elements, water-soluble ions and carbonaceous species. The greatest contributors to total PM10 and PM2.5 mass were OC, sulfate, nitrate, ammonium, EC, Na, Cl and crustal elements including Si, Ca, Al, Fe, K and Mg. Organic material is the largest single fraction of airborne particulate matter in Macao. It contributes 32.8-41.5% and 38.2-48.4% of PM10 and PM2.5 at the roadsides, and as high as 29.7% and 33.4-39.4% of PM10 and PM2.5 at background locations, respectively. EC contributes 3.7-7.8% and 8.0-12.9% of PM10 and PM2.5, and crustal material is 10.2-15.4% and 7.6-12.2% of PM10 and PM2.5 near major roads, respectively. The share of EC at background locations is much lower than that at the roadsides, however, the contribution of crustal material is the same in both locations. At the roadsides, secondary aerosols, including sulfate, nitrate and ammonium, account for 16.6-29.0% and 15.8-38.0% of the total PM10 and PM2.5, respectively, as compared to 29.1-36.2% and 23.2-33.8% of total PM10 and PM2.5, respectively, at background locations. In PM2.5, Na and Cl contribute 1-3%, while the average amount of these two elements increase to 1-15% of the total PM10 in Macao.

Entities:  

Year:  2003        PMID: 14630419     DOI: 10.1016/S0048-9697(03)00331-0

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  3 in total

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2.  Atmospheric arsenic (As) study at five characteristic sampling sites in Taiwan.

Authors:  Guor-Cheng Fang; Yi-Liang Huang; Jun-Han Huang
Journal:  Environ Monit Assess       Date:  2011-03-30       Impact factor: 2.513

3.  Increasing Isoprene Epoxydiol-to-Inorganic Sulfate Aerosol Ratio Results in Extensive Conversion of Inorganic Sulfate to Organosulfur Forms: Implications for Aerosol Physicochemical Properties.

Authors:  Matthieu Riva; Yuzhi Chen; Yue Zhang; Ziying Lei; Nicole E Olson; Hallie C Boyer; Shweta Narayan; Lindsay D Yee; Hilary S Green; Tianqu Cui; Zhenfa Zhang; Karsten Baumann; Mike Fort; Eric Edgerton; Sri H Budisulistiorini; Caitlin A Rose; Igor O Ribeiro; Rafael L E Oliveira; Erickson O Dos Santos; Cristine M D Machado; Sophie Szopa; Yue Zhao; Eliane G Alves; Suzane S de Sá; Weiwei Hu; Eladio M Knipping; Stephanie L Shaw; Sergio Duvoisin Junior; Rodrigo A F de Souza; Brett B Palm; Jose-Luis Jimenez; Marianne Glasius; Allen H Goldstein; Havala O T Pye; Avram Gold; Barbara J Turpin; William Vizuete; Scot T Martin; Joel A Thornton; Cari S Dutcher; Andrew P Ault; Jason D Surratt
Journal:  Environ Sci Technol       Date:  2019-07-23       Impact factor: 9.028

  3 in total

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