Pengaruh Penggunaan Variasi Konsentrasi Perekat Kanji Terhadap Lama Bakar RDF-5 Ampas Kopi Dan Serbuk Kayu Sengon

Fuad Yanuar Widya Darmawan, Danar Susilo Wijayanto, Ngatou Rohman

Abstract

This research aims to determine the effect of the variations use of starch adhesive on the RDF-5 burn time from coffee ground and sengon sawdust. The method used in this research is experimental. Independent variables in this research are ratio of variations in composition of the ingredients are 0:100, 30:70, 50:50, 70:30, 100:0 and variations in concentration of adhesive are 10%, 20%, 30%. Dependent variables in this research is burn time. Control variables in this research are mesh, pressing pressure, and the resulting RDF-5 dimensions. This research was conducted in the Mechanical Engineering Education Laboratory of the UNS in Campus V. Data collection of burning time using stopwatch and blower. The longest burn time was found in 100:0 composition variation and 30% adhesive concentration. The result of research showed that the longest burn time produced by RDF- 5 which uses the most starch adhesive.

Keywords

Coffee grounds, sengon sawdust, RDF-5, burn time

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References

Asri, S. (2013). Efisiensi Konsentrasi Perekat Tepung Tapioka terhadap Nilai Kalor Pembakaran pada Biobriket Batang Jagung (Zea mays L.). Jurnal Teknosains.

Dhuha Lamanda, Dina Setyawati, Nurhaida, Farah Diba, E. R. (2015). Karakteristik Biopelet Berdasarkan Komposisi Serbuk Batang Kelapa Sawit dan Arang Kayu Laban dengan Jenis Perekat sebagai Bahan Bakar Alternatif Terbarukan. In Journal of Chemical Information and Modeling.

Deac, T., Fechete-Tutunaru, L., & Gaspar, F. (2016). Environmental Impact of Sawdust Briquettes Use - Experimental Approach. Energy Procedia.

Huseini, M. R., Marjuki, E. I., Iryawan, D., & Hendrawati, T. Y. (2018). Pengaruh Variasi Temperatur Pengolahan Hidrothermal Ampas Kopi terhadap Yield Energi untuk Bahan Baku Pembuatan Biobriket. Seminar Nasional Sains Dan Teknologi.

International Coffee Organization. (2018). World Coffee Export; Coffee Market Report. International Coffee Organization.

Iskandar, T., & Poerwanto, H. (2015). Identifikasi Nilai Kalor dan Waktu Nyala Hasil Kombinasi Ukuran Partikel dan Kuat Tekan pada Bio-briket dari Bambu. 9(2), 33–37.

Munawar, S. S., & Subiyanto, B. (2014). Characterization of Biomass Pellet Made from Solid Waste Oil Palm Industry. Procedia Environmental Sciences.

Nugraha, A., Widodo, A., & Wahyudi, S. (2017). Pengaruh Tekanan Pembriketan dan Persentase Briket Campuran Gambut dan Arang Pelepah Daun Kelapa Sawit terhadap Karakteristik Pembakaran Briket. Jurnal Rekayasa Mesin, 8(1), 29–36.

Rahman. (2011). Uji Keragaan Biopelet dari Biomassa Limbah Sekam Padi (Oryza Sativa Sp.) sebagai Bahan Bakar Alternatif Terbarukan.

Thrän, D., Seidenberger, T., Zeddies, J., & Offermann, R. (2010). Global Biomass Potentials — Resources, Drivers and Scenario Results. Energy for Sustainable Development, 14(3), 200–

Yudhiartono, Anindhita, Sugiyono, A., Laode, & Adiarso (2018). Outlook Energi Indonesia 2018. Pusat Pengkajian Industri Proses dan Energi.

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