Assessment of Urban Air Quality in Indonesia

被引:26
|
作者
Santoso, Muhayatun [1 ]
Lestiani, Diah Dwiana [1 ]
Kurniawati, Syukria [1 ]
Damastuti, Endah [1 ]
Kusmartini, Indah [1 ]
Atmodjo, Djoko Prakoso Dwi [1 ]
Sari, Dyah Kumala [1 ]
Hopke, Philip K. [2 ]
Mukhtar, Rita [3 ]
Muhtarom, Tamrin [4 ]
Tjahyadi, Agus [5 ]
Parian, Sukadi [6 ]
Kholik, Nur [7 ]
Sutrisno, Dimas Ageng [8 ]
Wahyudi, Dwi [9 ]
Sitorus, Timora Diliyani [10 ]
Djamilus, Jasmiyati [11 ]
Riadi, Ahmad [12 ]
Supriyanto, Jen [13 ]
Dahyar, Nurhayana [14 ]
Sondakh, Stenly [15 ]
Hogendorp, Karelise [16 ]
Wahyuni, Nurdian [17 ]
Bejawan, I. Gede [18 ]
Suprayadi, Lalu Syakhrizal [19 ]
机构
[1] Natl Nucl Energy Agcy BATAN, Ctr Appl Nucl Sci & Technol, Bandung, Indonesia
[2] Univ Rochester, Med Ctr, 601 Elmwood Ave, Rochester, NY 14642 USA
[3] Minist Environm & Forestry, Puspiptek, Serpong, Indonesia
[4] Environm Protect Agcy Jakarta, Jl Casablanca Kay 1, Kuningan Jakarta Selatan, Indonesia
[5] Environm Protect Agcy West Java, Jl Naripan 25, Bandung, Indonesia
[6] Natl Nucl Energy Agcy BATAN, Ctr Accelerator Sci & Technol, Yogyakarta, Indonesia
[7] Environm Protect Agcy Ctr Java, Jl Setiabudi,Komplek Diklat, Semarang, Indonesia
[8] Environm Protect Agcy East Java, Jl Wisata Menanggal 38, Surabaya, Indonesia
[9] Environm Protect Agcy Surabaya City, Jl Gubeng, Surabaya, Indonesia
[10] Environm Protect Agcy North Sumatra, Medan, Indonesia
[11] Environm Protect Agcy Pekanbaru City, Pekanbaru, Indonesia
[12] Environm Protect Agcy Palangka Raya City, Jl Tjil Riwut, Palangka Raya, Indonesia
[13] Environm Protect Agcy Balikpapan City, Jl Jendral Sudirman, Balikpapan, Indonesia
[14] Environm Protect Agcy Eco Reg Sulawesi Maluku, Jl Perintis Kemerdekaan, Makassar, Indonesia
[15] Environm Protect Agcy North Sulawesi, Jl 17 Agustus, Manado, Indonesia
[16] Environm Protect Agcy Maluku, Ambon, Indonesia
[17] Environm Protect Agcy Papua, Jayapura, Indonesia
[18] Environm Protect Agcy Eco Reg Bali Nusa Tenggara, Denpasar Bali, Indonesia
[19] Environm Protect Agcy West Nusa Tenggara, Mataram, Indonesia
关键词
PM2.5; PM10; BC; Chemical composition; Indonesia; PARTICULATE MATTER; SOURCE APPORTIONMENT; ATMOSPHERIC AEROSOL; KUALA-LUMPUR; VOLCANIC ASH; POLLUTION; HAZE; ELEMENTS; IMPACT; FINE;
D O I
10.4209/aaqr.2019.09.0451
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study assessed the urban air quality in 16 large Indonesian cities on the islands of Java, Sumatra, Kalimantan, Sulawesi, Maluku, and Papua from 2010 till 2017. 24-h samples of airborne particulate matter (PM) in two size fractions, PM2.5 (< 2.5 mu m in aerodynamic diameter) and PM2.5-10 (2.5-10 mu m in aerodynamic diameter), were collected weekly using a Gent stacked filter unit sampler and then analyzed for their mass concentrations, black carbon (BC) content, and elemental compositions. The majority of the average annual PM2.5 concentrations measured at the Java sites (Bandung, Jakarta, Semarang, and Surabaya) exceeded the Indonesian annual ambient air quality standard (15 mu g m(-3)), although the other tested locations, excluding Pekanbaru and Palangka Raya, exhibited values below the standard. During the forest fire episodes of 2015, the average daily PM2.5 concentrations in Pekanbaru and Palangka Raya rose above the national daily ambient standard (65 mu g m(-3)). The percentage of BC, which is associated with traffic emission and biomass burning, averaged between 15% and 26% (a significant fraction) in the PM2.5. The concentrations of the major elements in the PM2.5, viz., Si, S, K, Fe, Zn, and Pb, varied widely from site to site, although all of the locations displayed enhanced levels of the crustal elements Si and S, which originated from unpaved roads and volcanic eruptions, and vehicle fuel, forest fires, and volcanic emissions, respectively. Significantly higher concentrations of heavy metals (Fe, Zn, and Pb in Surabaya and Pb in Tangerang) were found at the heavily industrialized sites, demonstrating the effect of local industrial emissions on air quality. Our results, which are based on a crucial survey of PM concentrations and compositions in Indonesia, provide a scientific basis for developing and improving various air quality policies in the nation, including an early warning system for severe pollution events.
引用
收藏
页码:2142 / 2158
页数:17
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