Pengaruh variasi laju kendaraan dan beban muatan terhadap karakteristikemisi gas buang mesin diesel

Penulis

  • Kurniawan Dwi Alfiyan Politeknik Keselamatan Transportasi Jalan Penulis
  • Ethys Pranoto Politeknik Keselamatan Transportasi Jalan Penulis
  • Riza Pahlevi Marwanto Politeknik Keselamatan Transportasi Jalan Penulis

DOI:

https://doi.org/10.35760/tr.2026.v31i1.144

Kata Kunci:

diesel engine, vehicle emissions, load variation, speed variation, opacity

Abstrak

This study aims to analyze the influence of variations in vehicle speed and payload on exhaust gas emission characteristics as well as combustion behavior in a diesel engine. Tests were conducted on a pickup vehicle with speed variations of 20, 30, 40, and 50 km/h and payloads of 0 kg, 587 kg, and 700 kg. The emission parameters analyzed include carbon monoxide (CO), hydrocarbons (HC), carbon dioxide (CO2), oxygen (O2), and smoke opacity, measured using a gas analyzer and smoke tester. The results show that increases in vehicle speed and load indicate a tendency in the combustion process from relatively stable conditions toward incomplete combustion, as indicated by significant increases in CO, HC, and opacity. The observed findings suggest a tendency toward over-fueling conditions at high loads, where increased fuel supply is not matched by adequate air supply in a naturally aspirated diesel engine, resulting in locally rich zones within the combustion chamber. This condition reduces combustion quality and increases the formation of incomplete oxidation products. The increase in CO₂ emissions reflects higher fuel consumption due to greater power demand, but does not necessarily indicate improved combustion efficiency. Meanwhile, relatively stable O₂ levels suggest that combustion inefficiency may be influenced by limitations in air–fuel mixing and reaction time, rather than a global oxygen deficiency. These results indicate an indirect decrease in energy conversion efficiency and an increase in pollutant emissions. Therefore, controlling vehicle operating conditions is important to improve energy efficiency and reduce diesel engine exhaust emissions.

Unduhan

Data unduhan tidak tersedia.

Referensi

[1] R. Rahadiansyah, “Polusi udara membara, truk ODOL saja masih ada,” detikoto, Jakarta, 2023. [Online]. Available: https://oto.detik.com/berita/d-6888807/polusi-udara-membara-truk-odol-saja-masih-ada

[2] A. V Shash and C. Gosai, “Performance of four stroke diesel engine, focusing combustion modeling and cycle analysis,” Int. J. Adv. Technol. Eng. Sci., vol. 3, no. 1, pp. 270–279, 2015.

[3] W. W. Pulkrabek, Engineering Fundamentals of the Internal Combustion Engine. New Jersey, USA: Prentice Hall, 1997.

[4] M. A. Kurniawan, A. E. Fahmadi, Y. Oktopianto, and S. Shofiah, “Teknologi diesel particulat filter sebagai upaya mengurangi emisi gas buang dan kebisingan mesin diesel kendaraan niaga,” J. Keselam. Transp. Jalan, vol. 8, no. 2, pp. 116–125, 2021, doi: 10.46447/ktj.v8i2.350.

[5] ICCT, “ICCT International Council on Clean Transportation Annual Report 2021,” Washington, 2023. [Online]. Available: https://theicct.org/wp-content/uploads/2023/07/ICCT-Annual-Report-2021-fv.pdf

[6] R. Singh, C. Sharma, and M. Agrawal, “Emission inventory of trace gases from road transport in India,” Transp. Res. Part D Transp. Environ., vol. 52, pp. 64–72, 2017, doi: 10.1016/j.trd.2017.02.011.

[7] Y. Wu et al., “On-road vehicle emissions and their control in China: A review and outlook,” Sci. Total Environ., vol. 574, pp. 332–349, 2017, doi: 10.1016/j.scitotenv.2016.09.040.

[8] I. D. Farilla, A. Akbar, and R. Firdaus, “Analysis of the impact of exhaust gas emissions on diesel-fueled vehicles in view from the year of manufacture (case study on the Mitsubishi L 300 vehicle),” J. Terap. Tek. Mesin, vol. 5, no. 1, pp. 128–133, 2024, doi: 10.37373/jttm.v5i1.916.

[9] F. F. Adli and A. S. Arifin, “Sistem monitoring gas CO pada parkiran basement mall di Jakarta menggunakan metode real-time berbasis Internet of Things ( IoT ),” J. Ilm. Teknol. dan Rekayasa, vol. 24, no. 3, pp. 171–181, 2019, doi: 10.35760/tr.2019.v24i3.2394.

[10] Y. Lin, Y. Li, K. T. T. Amesho, F. Chou, and P. Cheng, “Characterization and quantification of PM2.5 emissions and PAHs concentration in PM2.5 from the exhausts of diesel vehicles with various accumulated mileages,” Sci. Total Environ., vol. 694, pp. 188–198, 2019, doi: 10.1016/j.scitotenv.2019.01.007.

[11] X. Guo, L. Fu, M. Ji, J. Lang, D. Chen, and S. Cheng, “Scenario analysis to vehicular emission reduction in Beijing-Tianjin-Hebei (BTH) region , China,” Environ. Pollut., vol. 216, pp. 470–479, 2016, doi: 10.1016/j.envpol.2016.05.082.

[12] E. M. Nurmaya, S. H. Murti, and E. Nurjani, “Kajian pencemaran lingkungan terhadap kesehatan masyarakat akibat gas buangan CO kendaraan bermotor di kawasan Universitas Gadjah Mada,” J. Paradig., vol. 5, no. 1, pp. 16–38, 2024, doi: 10.22146/jpmmpi.v5i1.91392.

[13] V. V Rambing, J. M. L. Umboh, and F. Warouw, “Literature review: Gambaran risiko kesehatan pada masyarakat akibat paparan gas karbon monoksida (CO),” J. KESMAS, vol. 11, no. 4, pp. 95–101, 2022.

[14] H. Yang et al., “Chemical Characterization of Fine Particulate Matter in Gasoline and Diesel Vehicle Exhaust,” Aerosol Air Qual. Res., vol. 19, pp. 1439–1449, 2019, doi: 10.4209/aaqr.2019.04.0191.

[15] M. Kim, D. Park, M. Kim, J. Heo, S. Park, and H. Chong, “A Study on Characteristic Emission Factors of Exhaust Gas from Diesel Locomotives,” Int. J. Environ. Res. Public Heal., vol. 17, pp. 1–12, 2020, doi: doi:10.3390/ijerph17113788.

[16] Ponidi and I. M. Rohman, “Pengaruh penggunaan bahan bakar biosolar, biosolar dengan aditive dan Pertamina Dex pada Mitsubishi L-300 terhadap kepekatan asap,” J. Rekayasa Mater. Manufaktur dan Energi, vol. 4, no. 1, pp. 73–82, 2021, doi: 10.30596/rmme.v4i1.6698.

[17] A. Sasmita, Y. Yohanes, and K. Yolanda, “Analisis emisi gas buang dari mesin diesel modifikasi dipengaruhi daya mesin dan bahan bakar campuran oli bekas dan Dexlite,” Semesta Tek., vol. 25, no. 2, pp. 170–178, 2022, doi: 10.18196/st.v25i2.13748.

[18] F. Majedi, A. Aminudin, I. Puspitasari, A. Tranggono, A. Salim, and A. F. Yusri, “Effects of bio-oil - diesel blends: the performance and emissions of diesel engines with heater on fuel blends,” Motiv. J. Mech. Electr. Ind. Eng., vol. 5, no. 2, pp. 389–396, 2023, doi: 10.46574/motivection.v5i2.229.

[19] A. R. N. Iqlima and R. Firdaus, “The effect of using bio-solar fuel with Additives, Solar Dexlite and Pertamina Dex on Mitsubishi L300 diesel in 2007 on vehicle smoke density,” Indones. J. Innov. Stud., vol. 14, 2021, doi: 10.21070/ijins.v14i.537.

[20] Q. B. Doan et al., “Performance and emission characteristics of diesel engine using ether additives: A review,” Int. J. Renew. Energy Dev., vol. 11, no. 1, pp. 255–274, 2022, doi: 10.14710/ijred.2022.42522.

[21] M. A. Fayad et al., “Emissions characteristics and engine performance from the interaction effect of EGR and diesel-ethanol blends in diesel engine,” Int. J. Renew. Energy Dev., vol. 11, no. 4, pp. 991–1001, 2022, doi: 10.14710/ijred.2022.45051.

[22] H. Pratomo, P. Saksono, and M. Ferdnian, “Analisis pengaruh jenis bahan bakar terhadap nilai emisi gas buang pada diesel engine common rail system,” Al Jazari, J. Ilm. Tek. Mesi, vol. 8, no. 2, pp. 88–93, 2023, doi: 10.31602/al-jazari.v8i2.12730.

[23] L. F. Mendonça da Silva, M. R. Barros de Alencar, A. H. Moraes Nunes, and A. Gioda, “Real-time analysis of NOx emissions in heavy duty diesel vehicles: Impact of speed and variations across vehicle groups,” Atmos. Pollut. Res., vol. 16, no. 9, 2025, doi: 10.1016/j.apr.2025.102572.

[24] Gunawan, A. R. Novianto, and Ayondya, “Pengaruh muatan dan kecepatan kendaraan terhadap hasil emisi gas buang,” Din. Tek. Mesin, vol. 13, no. 2, pp. 165–172, 2023, doi: 10.29303/dtm.v13i2.683.

[25] Daryanto, Teknik Motor Diesel, 3rd ed. Bandung, Indonesia: Alfabeta, 2023.

[26] C. R. Ferguson and A. T. Kirkpatrick, Internal Combustion Engines Applied Thermosciences, 3rd ed. Colorado, USA: John Wiley & Sons, Ltd, 2016.

[27] X. Wang, G. Song, Z. Zhai, Y. Wu, H. Yin, and L. Yu, “Effects of vehicle load on emissions of heavy-duty diesel trucks: A study based on real-world data,” Int. J. Environ. Res. Public Heal., vol. 18, no. 8, pp. 1–17, 2021, doi: 10.3390/ijerph18083877.

[28] J. B. Heywood, Internal Combustion Engine ( ICE ) Fundamentals. New York, USA: McGraw-Hill, 1998. doi: 10.1002/9781118991978.hces077.

Diterbitkan

2026-05-18

Terbitan

Bagian

Articles

Cara Mengutip

Alfiyan, K. D., Pranoto, E., & Marwanto, R. P. (2026). Pengaruh variasi laju kendaraan dan beban muatan terhadap karakteristikemisi gas buang mesin diesel. Jurnal Ilmiah Teknologi Dan Rekayasa, 31(1), 1-15. https://doi.org/10.35760/tr.2026.v31i1.144

Artikel Serupa

Anda juga bisa Mulai pencarian similarity tingkat lanjut untuk artikel ini.