Analisis Udara pada Kawasan Perkotaan
Green Building
Keywords:
air quality, air pollution, urban areas, air parameters, green architectureAbstract
Abstract
Air quality in urban areas is an important issue that has a direct impact on public health and environmental sustainability. This study aims to analyze the condition of ambient air quality in urban areas by reviewing key parameters such as PM2.5, PM10, NO₂, SO₂, CO, and O₃. Data were obtained through direct monitoring and references from air quality monitoring stations. The results of the analysis show that several parameters, especially PM2.5 and NO₂, periodically exceed the thresholds set in the national ambient air quality standards, especially during peak hours and the dry season. Air pollution in urban areas is generally caused by motor vehicle emissions, industrial activities, and open burning. These findings indicate the importance of emission control, increasing green space, and integrating green architecture principles in urban development to improve air quality sustainably. This study is expected to be a reference for local governments and city planners in establishing environmental policies that are responsive to air pollution.
References
I. Kualitas, U. Di, and J. Jendral, “Identifikasi kualitas udara di jalan jendral ahmad yani tanjung enim kabupaten muara enim,” vol. 08, no. 02, pp. 17–23, 2025.
Arsyad Khalida Akmatul, “Studi Kausalitas antara Polusi Udara dan Kejadian Penyakit Saluran,” J. Multidisiplin West Sci., vol. 02, no. 06, pp. 462–472, 2024.
H. Salma, “Air Quality Analysis Due To Coal Truck Activities in Jambi,” JSSIT J. Sains dan Sains Terap., vol. II, no. 1, pp. 33–39, 2024.
I. D. Setyowati, A. F. Walukow, B. T. Rumahorbo, J. Siallagan, and N. Medyati, “Status Mutu Kualitas Udara Ambien Pada Beberapa Kota Besar di Papua Menggunakan ArcGIS,” J. Biol. Papua, vol. 15, no. 1, pp. 60–68, 2023, doi: 10.31957/jbp.2701.
S. Fedora and P. E. Ariaji, “Analisis Kebutuhan Penyaringan Udara Untuk Mengatasi Polusi Udara Sebagai Strategi Akupunktur Kota Di Kawasan Industri Pulogadung,” J. Sains, Teknol. Urban, Perancangan, Arsit., vol. 4, no. 2, pp. 2717–2728, 2023, doi: 10.24912/stupa.v4i2.22243.
dan S. W. Winatama, Derystanto, “Analisis Kualitas Udara pada Kawasan Transportasi, Industri, Perkotaan, Permukiman, dan Perdagangan di Kota Tegal,” J. Ilmu Lingkung., vol. 21, no. 2, pp. 381–386, 2023, doi: 10.14710/jil.21.2.381-386.
Z. Ibrahim, L. Boekoesoe, and N. A. S. Lalu, “Identifikasi Kualitas Udara Ambien di Sekitar Wilayah Kota Gorontalo,” Public Heal. Surveilance Rev., vol. 1, no. 1, pp. 24–33, 2022, [Online]. Available: https://ejurnal.ung.ac.id/index.php/jje
Y. H. Primasari, D. A. Azhar, and A. Sasmito, “Optimalisasi Waktu Hijau Untuk Mengurangi Kadar Polusi Udara Pada Simpang Bersinyal Pasifik Di Kota Tegal,” J. Transp., vol. 21, no. 1, pp. 19–26, 2021, doi: 10.26593/jtrans.v21i1.4825.19-26.
A. Pratama and A. Sofyan, “Analisis Dispersi Pencemar Udara PM10 di kota Bandung Menggunakan Wrfchem Data Asimilasi,” J. Tek. Lingkung., vol. 26, no. 2, pp. 11–30, 2020.
M. W. Akhmad, A. V. Vitianingsih, and T. A. Wijaya, “Pemetaan Tingkat Polusi Udara di Kota Surabaya Berbasis Android,” Inf. J. Ilm. Bid. Teknol. Inf. dan Komun., vol. 1, no. 1, pp. 19–24, 2017, doi: 10.25139/inform.v1i1.214.