Analisis Reduksi Emisi Gas Kendaraan Bermotor Menggunakan Adsorben Berbasis Biomassa Limbah Tempurung Siwalan

Authors

  • Riko Ferdinand Abdillah Universitas Pembangunan Nasional "Veteran" Jawa Timur Author
  • Muhammad Abdus Salam Jawwad Universitas Pembangunan Nasional "Veteran" Jawa Timur Author

Keywords:

tempurung siwalan, adsorben, kendaraan bermotor, reduksi emisi

Abstract

Incomplete combustion of fossil fuels resulting from motor vehicle emissions releases hazardous pollutants such as carbon monoxide (CO) and hydrocarbons (HC). The high levels of these gases in emissions pose a significant threat to public health, creating an urgent need to develop and implement highly efficient processing or reduction technologies to ensure exhaust gas emission parameters remain within safe limits. This study demonstrates that activated carbon derived from siwalan (lontar) shell, specifically after activation with 25% Na2CO3 is highly effective in lowering exhaust gas emission levels, with the greatest reduction achieved using the largest adsorbent mass of 100 grams. The effectiveness of this adsorption is further supported by the statistical results of the Two-Way ANOVA model, which confirmed a significant influence of both adsorbent mass and adsorption process time. Consequently, the use of activated carbon from siwalan shell proves to be an effective and efficient solution for mitigating motor vehicle gas pollution. It holds significant potential for use as an emission reduction tool, particularly for older motor vehicles that lack existing emission control devices, and serves as a vital effort to comply with government regulations aimed at maintaining stable ambient air quality.

References

[1] A. Dirga, A. W. Wahab, And Maming, “Analisis Kadar Emisi Gas Karbon Monoksida (CO) Dari Kendaraan Bermotor Yang Melalui Penyerap Karbon Aktif Dari Kulit Buah Durian ( Durio Zibethinus ),” J. Corresp. Author, Pp. 1–7, 2011.

[2] Prawoto, “Emisi Gas Buang Kendaraan Bermotor Berbahan Gas Cair (Lgv) Dan Pertamax Pada Kondisi Uji Awal Dingin Dan Panas,” J. Tek. Lingkung., Vol. 12, No. 1, Pp. 67–74, 2011.

[3] M. I. Saputra, “Dampak Pencemaran Udara Terhadap Kesehatan, Bangunan Bersejarah Dan Ekosistem : Kondisi Global Dan Di Indonesia,” Syntax Lit., Vol. 8, No. 2, 2023.

[4] I. Ismiyati, D. Marlita, And D. Saidah, “Pencemaran Udara Akibat Emisi Gas Buang Kendaraan Bermotor,” J. Manaj. Transp. Logistik, Vol. 1, No. 3, P. 241, 2014, Doi: 10.54324/J.Mtl.V1i3.23.

[5] M. R. Hendianto And N. Hendrasarie, “Kemampuan Filter Rokok Non-Pakai Sebagai Adsorben Dalam Mengurangi Gas Emisi Co Dan Hc,” J. Serambi Eng., Vol. 5, No. 4, Pp. 1427–1433, 2020, Doi: 10.32672/Jse.V5i4.2355.

[6] P. N. Cheremisinoff And A. Moressi, Carbon Adsorption Handbook, 1st Ed. Michigan: Ann Arbor Science Publishers, Inc, 1978.

[7] I. Indriyani, U. Rizqi, And U. Mahmudah, “Bagaimana Kreativitas Dan Keaktivan Mahasiswa Mempengaruhi Pemahaman Materi Abstrak Matematika Melalui E-Learning,” Al Khawarizmi J. Pendidik. Dan Pembelajaran Mat., Vol. 4, No. 2, P. 112, 2020, Doi: 10.22373/Jppm.V4i2.8130.

[8] J. Sinto, “Penurunan Kadar Emisi Gas Buang Karbon Monoksida Dan Hidrokarbon Pada Kendaraan Bermotor Dengan Karbon Aktif Berbahan Baku Limbah Kulit Pisang,” Universitas Indonesia, 2018.

[9] F. Mubin, A. Binilang, And Dkk, “Perencanaan Sistem Pengolahan Air Limbah Domestik Di Kelurahan Istiqlal Kota Manado,” Sipil Stat., Vol. 4, No. 3, Pp. 211–223, 2016, Accessed: Jul. 07, 2022. [Online]. Available: Https://Ejournal.Unsrat.Ac.Id/Index.Php/Jss/Article/View/11622.

[10] Y. A. Winoko And A. G. Wicaksono, “Aktifasi Tempurung Kelapa Untuk Mereduksi Emisi Gas Buang Motor Bakar,” Rang Tek. J., Vol. 4, No. 1, Pp. 104–108, 2021, Doi: 10.31869/Rtj.V4i1.2211.

[11] Men-Lhk, “Permen Lhk_8_2023,” Menteri Lingkung. Hidup Dan Kehutan., No. July, Pp. 1–23, 2023.

[12] A. Nabila, “Aplikasi Sabut Kelapa Sebagai Bioadsorben Logam Timbal (Pb) Dalam Media Air,” Universitas Islam Indonesia, 2022.

[13] F. Redha, R. Junaidy, And I. Hasmita, “Penyerapan Emisi Co Dan Nox Pada Gas Buang Kendaraan Menggunakan Karbon Aktif Dari Kulit Cangkang Biji Kopi,” Biopropal Ind., Vol. 9, No. 1, Pp. 37–47, 2018.

[14] Ismiyati, D. Marlita, And D. Saidah, “Pencemaran Udara Akibat Emisi Gas Buang,” J. Manajeen Transp. Logistik, Vol. 1, No. 3, Pp. 241–248, 2014, [Online]. Available: Https://Journal.Itltrisakti.Ac.Id/Index.Php/Jmtranslog/Article/View/23/24.

[15] Y. Fitrianingsih, S. Pramadita, And S. Apriyanti N.H, “Analisis Konsentrasi Karbon Monoksida ( Co ) Pada Ruang Parkir Ayani Mega Mall Kota Pontianak,” No. 13, Pp. 1–10, 2011.

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Published

01/01/2026

How to Cite

[1]
“Analisis Reduksi Emisi Gas Kendaraan Bermotor Menggunakan Adsorben Berbasis Biomassa Limbah Tempurung Siwalan”, jse, vol. 11, no. 1, Jan. 2026, Accessed: Apr. 29, 2026. [Online]. Available: https://jse.serambimekkah.id/index.php/jse/article/view/1418

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