Design Monitoring of Dust Density Levels in Air Filters of Air Conditioning for Enhance Room Air Quality

Ahmad Zafrullah Salam, Husnibes Muchtar, Haris Isyanto, Fadliondi Fadliondi

Abstract


Clean air quality is very important in maintaining human health. Increasing air pollution is increasingly worrying. The danger is the potential for injury, such as impaired lung function or even systemic poisoning. From this problem, a device was designed that was able to measure dust density in air filters of Air Conditioning (AC). This research is able to monitor dust density continuously. From the test results, the condition of air filter was obtained at the first dust density of 66 mg/m3 (clean), the second 93–203 mg/m3 (normal) and the third 251–413 mg/m3 (unclean), then the alarm buzzer was ON. The dust density test was 238.7 mg/m3 and the wind speed was 1.6 m/s with a voltage of 1.99 volts. It is hoped that this research would be useful in monitoring the dust density level in AC air filters, so that it could enhance room air quality.


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References


N. Ding, Q. Dai, dan Y. Fan, “Design of Arduino

PM2.5 Air Quality Monitoring System,” in 2021

IEEE International Conference on Power

Electronics, Computer Applications (ICPECA),

, hal. 798–800, doi:

1109/ICPECA51329.2021.9362553.

N. A. Istiqomah dan N. N. N. Marleni,“Particulate air pollution in Indonesia: Quality

index, characteristic, and source identification,”

IOP Conf. Ser. Earth Environ. Sci., vol. 599, no.

, hal. 0–8, 2020, doi: 10.1088/1755-

/599/1/012084.

K. K. Roman, K. Borek, K. Mazur, dan W. J.

Wardal, “The measurements of PM25 dust

concentration by using an integrated optical

sensor,” Prz. Elektrotechniczny, vol. 96, no. 4,

hal. 129–132, 2020, doi:

15199/48.2020.04.27.

M. C. Baddock, R. G. Bryant, M. D. Acosta, dan

T. E. Gill, “Understanding dust sources through

remote sensing: Making a case for CubeSats,” J.

Arid Environ., vol. 184, hal. 104335, 2021, doi:

https://doi.org/10.1016/j.jaridenv.2020.104335.

T. S. Gunawan, Y. M. S. Munir, M. Kartiwi, dan

H. Mansor, “Design and implementation of

portable outdoor air quality measurement system

using arduino,” Int. J. Electr. Comput. Eng., vol.

, no. 1, hal. 280–290, 2018, doi:

11591/ijece.v8i1.pp280-290.

H. Suryantoro dan M. Kusriyanto, “Sistem

Monitoring Partikel (PM2.5) Air Purifier untuk

Mengetahui Kualitas Udara Berbasis Sensor

PMS5003 Dan Arduino,” Indones. J. Lab., vol.

, no. 3, hal. 88, 2023, doi:

22146/ijl.v0i3.88043.

I. Lai, S. Maji, M. M. Alam, dan A.

Chattopadhyay, “Impact of Meteorological

Conditions on PM2.5 Concentration in Delhi,” in

International Interdisciplinary Conference

on Mathematics, Engineering and Science

(MESIICON), 2022, hal. 1–5, doi:

1109/MESIICON55227.2022.10093446.

D. Nusyirwan, “Penyaring Udara Berbasiskan

Arduino Uno Sebagai Solusi Untuk

Memperbaiki Kualitas Udara Di Dalam Ruangan

Kelas Sdn 003 Binaan Tanjungpinang,” J. Tek.,

vol. 9, no. 1, 2020, doi: 10.31000/jt.v9i1.1658.

R. Rahmadewi, W. N. Adzillah, E. Purwanti, V.

Efelina, dan R. W. Utama, “Pengendali Wiper

dan Washer Otomatis Menggunakan Sensor

Hujan dan Sensor Debu Berbasis Arduino,” J.

Teknol. ( Jurnak Tek., vol. 10, no. 1, hal. 1–4,

M. Erik, F. Nurdiyanto, dan R. Hidayat,

“AeroSense Monitor Integrasi Sensor DHT11

dan MQ135 untuk Pemantauan Kualitas Udara

Berbasis Arduino Uno,” J. Komput. dan Elektro

Sains, vol. 2, no. 2, hal. 8–11, 2024, doi:

58291/komets.v2i2.171.

H. Setiawan, A. Khodi Inzaghi, A. Faisaldinatha,

dan I. Agung Adhavian, “MONARBU: Sistem

Monitoring Partikel Debu, Studi Kasus di

Kampus Terpadu Universitas Islam Indonesia,”

Ajie, vol. 6, no. January, hal. 21–28, 2022, doi:

20885/ajie.vol6.iss1.art3.

F. M. Rizon dan Sarmidi, “Alat Pendeteksi

Udara Di Dalam Mobil Menggunakan Arduino

Uno,” Jumantaka, vol. 02, no. 01, hal. 31–40,

A. Budianto, S. Rahayu, L. Mardiana, R. R.

Illahi, dan R. Juniarti, “A Development of a

Coarse Particle Concentration Measurement

System Using a Crystal-Based Sensor and a Dust

Sensor for Air Quality Measurement,” vol. 10,

no. 1, 2024.

M. R. W. Kusuma, E. Apriaskar, dan D.

Djunaidi, “Rancang Bangun Sistem Pembersih

Otomatis Pada Solar Panel Menggunakan Wiper

Berbasis Mikrokontroler,” Techné J. Ilm.

Elektrotek., vol. 19, no. 01, hal. 23–32, 2020,

doi: 10.31358/techne.v19i01.220.

A. M. Haikal Fakari, A. Ulya Darajat, S.

Purwiyanti, dan A. Yudamson, “Sistem

Informasi Mobile untuk Pelacakan Posisi Tikus

dan Debu pada Ruangan Storage Museum

Lampung,” ELECTRON J. Ilm. Tek. Elektro, vol.

, no. 2, hal. 104–113, 2023, doi:

33019/electron.v4i2.54


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