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72 Institut Teknologi Nasional

DAFTAR PUSTAKA

Barmpadimos, I., Hueglin, C., Keller, J., Henne, S., dan Prévôt, A. (2011).

Influence of meteorology on PM10 trends and variability in Switzerland from 1991 to 2008. Atmospheric Chemistry and Physics, 11(4), 1813.

BPS. (2020). Kota Bandung Dalam Angka.

Budiyono, A. (2010). Pencemaran Udara: Dampak Pencemaran Udara Pada Lingkungan. Berita Dirgantara, 2(1).

Choi, J.-h., dan Cho, H.-S. (2020). A study on the development of a light scattering particulate matter sensor and monitoring system. Computer Science and Information Systems(00), 25-25.

Dede, M., Widiawaty, M. A., Nurhanifah, N., Ismail, A., Artati, A. R. P., Ati, A., dan Ramadhan, Y. R. (2020). Estimasi perubahan kualitas udara berbasis citra satelit penginderaan jauh di sekitar PLTU Cirebon. Jambura Geoscience Review, 2(2), 78-87.

Environment Agency. (2011). M8 Monitoring Ambient Air. Environment Agency.

EPA. (2019). Particulate Matter (PM) Pollution. Diunduh dari https://www.epa.gov/pm-pollution/particulate-matter-pm-basics#PM Fatkhurrahman, J. A., Juliasari, I. R., dan Zen, N. (2016). Penentuan Konsentrasi

Partikulat Berbasis Low Cost Particulate Sensor Pada Modifikasi Teknologi Wetscrubber. Journal of Industrial Research (Jurnal Riset Industri), 10(2), 107-113.

Fauziah, D. A., Rahadjo, M., dan Dewanti, N. A. Y. (2017). Analisis Tingkat Pencemaran Udara di Terminal Kota Semarang. Jurnal Kesehatan Masyarakat (e-Journal), 5(5), 561-570.

Giri, D., Adhikary, P., dan Murthy, V. (2008). The influence of meteorological conditions on PM10 concentrations in Kathmandu Valley.

Hester, R., dan Harrison, R. (2016). Airborne Particulate Matter: Sources, Atmospheric Processes and Health (Vol. 42): Royal Society of Chemistry.

Ismiyati, I., Marlita, D., dan Saidah, D. (2014). Pencemaran udara akibat emisi gas buang kendaraan bermotor. Jurnal Manajemen Transportasi & Logistik, 1(3), 241-248.

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73 Institut Teknologi Nasional

Karaca, F., Anil, I., dan Alagha, O. (2009). Long-range potential source contributions of episodic aerosol events to PM10 profile of a megacity.

Atmospheric Environment, 43(36), 5713-5722.

Khallaf, M. (2011). The impact of air pollution on health, economy, environment and agricultural sources: BoD–Books on Demand.

Lestari, P. (2003). Atmospheric particulate concentration measured in an urban area Bandung. pure and applied geophysics, 160(1-2), 107-116.

Lou, C., Liu, H., Li, Y., Peng, Y., Wang, J., dan Dai, L. (2017). Relationships of relative humidity with PM 2.5 and PM 10 in the Yangtze River Delta, China.

Environmental monitoring and assessment, 189(11), 582.

Matter, U. A. P. (2010). Origin, Chemistry, Fate and Health Impacts: by F. Zereini, CLS Wiseman (Heidelberg, Springer, Berlin, 2011).

Morawska, L., Vishvakarman, D., dan Swanson, C. E. (2007). Diurnal variation of PM10 concentrations and its spatial distribution in the South East Queensland airshed. Clean Air and Environmental Quality, 41(4), 19-25.

NOAA. (2020). Air Resources Laboratory-HYSPLIT. Diunduh dari https://www.ready.noaa.gov/HYSPLIT.php

Nugroho, S., Akbar, S., dan Vusvitasari, R. (2008). Kajian Hubungan Koefisien Korelasi Pearson (r), Spearman-rho (?), Kendall-Tau (?), Gamma (G), dan Somers. GRADIEN: Jurnal Ilmiah MIPA, 4(2), 372-381.

Nurlatifah, A., dan Driejana, R. (2019). Penelusuran Trajektori Aerosol Di Kota Bandung Menggunakan HYSPLIT-4 Back Trajectory Model Studi Kasus:

Kejadian Kabut Asap Tanggal 23-28 Oktober 2015. Jurnal Meteorologi dan Geofisika, 20(2), 91-99.

Oanh, N. T. K. (2014). Improving Air Quality in Asian Developing Countries:

Compilation of Research Findings: Tài Nguyên, Môi Trường và Bản Đồ.

Oktaviani, M. A., dan Notobroto, H. B. (2014). Perbandingan tingkat konsistensi normalitas distribusi metode kolmogorov-smirnov, lilliefors, shapiro-wilk, dan skewness-kurtosis. Jurnal Biometrika dan Kependudukan, 3(2), 127- 135.

Pengendalian Pencemaran Udara, (1999).

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74 Institut Teknologi Nasional

Plus, P. (2020). Sampling Protocol Instructions.

Pohjola, M. A., Kousa, A., Kukkonen, J., Härkönen, J., Karppinen, A., Aarnio, P., dan Koskentalo, T. (2002). The spatial and temporal variation of measured urban PM 10 and PM 2.5 in the Helsinki metropolitan area. Water, Air and Soil Pollution: Focus, 2(5-6), 189-201.

Santoso, S. (2010). Statistik parametrik: Elex Media Komputindo.

Sari, I. R. J., Fatkhurrahman, J. A., dan Andriani, Y. (2019). Pola Sebaran Polutan PM2.5 Dan PM10 Harian Terhadap Faktor Suhu Dan Kelembaban.

Prosiding SNST Fakultas Teknik, 1(1).

Saxena, P., dan Naik, V. (2018). Air pollution: sources, impacts and controls:

CABI.

Setiyo, H., dan Sutrisno, E. (2009). Analisis Konsentrasi Particulate Matter 10 (Pm10) Pada Udara Diluar Ruang (Studi Kasus: Stasiun Tawang- Semarang). Teknik, 30(1), 44-48.

Simandjuntak, A. G. (2013). Pencemaran udara. Buletin Limbah, 11(1).

Soleh, A. Z. (2005). Ilmu statistika pendekatan teoritis dan aplikatif disertai contoh penggunaan SPSS. Penerbit Rakayasa Sains, Bandung.

Stein, A., Draxler, R. R., Rolph, G. D., Stunder, B. J., Cohen, M., dan Ngan, F.

(2015). NOAA’s HYSPLIT atmospheric transport and dispersion modeling system. Bulletin of the American Meteorological Society, 96(12), 2059- 2077.

Sulistyawan, Y. (2011). Kendali Kelembaban Otomatis dengan Sensor Kelembaban SHT11 Berbasis Mikrokontroler Atmega8535. Universitas Negeri Semarang.

Sumaryati. (2019). Aplikasi Trayektori Polutan Untuk Pengelolaan Polusi Udara.

Diunduh dari https://issuu.com/antasena/docs/vol.4_no.1_januari- juni2019_opt/s/10202750

Syech, R., Malik, U., dan Fitriani, R. (2017). Analisis Pengaruh Partikulat Matter PM10 Terhadap Suhu, Kelembaban Udara Dan Kecepatan Angin Di Daerah Kulim Kota Pekanbaru. Komunikasi Fisika Indonesia, 14(2), 1032-1036.

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75 Institut Teknologi Nasional

Tecer, L. H., Süren, P., Alagha, O., Karaca, F., dan Tuncel, G. (2008). Effect of meteorological parameters on fine and coarse particulate matter mass concentration in a coal-mining area in Zonguldak, Turkey. Journal of the Air & Waste Management Association, 58(4), 543-552.

Turyanti, A. (2011). Analisis Pengaruh Faktor Meteorologi Terhadap Konsentrasi PM10 Menggunakan Regresi Linier Berganda (Studi Kasus: Daerah Dago Pakar dan Cisaranten, Bandung) Analysis of The Influence of Meteorological Factors to PM10 Concentration Using. Agromet, 25(1), 29- 36.

Unal, Y. S., Toros, H., Deniz, A., dan Incekik, S. (2011). Influence of meteorological factors and emission sources on spatial and temporal variations of PM10 concentrations in Istanbul metropolitan area.

Atmospheric Environment, 45(31), 5504-5513.

Wang, Y., Zhang, X., Sun, J., Zhang, X., Che, H., dan Li, Y. (2015). Spatial and temporal variations of the concentrations of PM 10, PM 2.5 and PM1 in China. Atmospheric Chemistry & Physics, 15(23).

WHO. (2005). WHO Air quality guidelines for particulate matter, ozone, nitrogen dioxide and sulfur dioxide: global update 2005: summary of risk assessment.

Woeryanto. (2003). Evaluasi Program Monitoring Kualitas Udara Dalam Upaya Kontrol Pencemaran Udara Di Kota Semarang. Program Pasca Sarjana Universitas Diponegoro.

Yadav, R., Sahu, L. K., Jaaffrey, S. N. A., dan Beig, G. (2014). Temporal variation of Particulate Matter (PM) and potential sources at an urban site of Udaipur in Western India.

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