The Effect of Zeolite Catalysis Size on Biodiesel Characteristics of Bio-Oil from Tuna Waste

Imron Rosyadi, Haryadi Haryadi, Ni Ketut Caturwati, Syahrul Ivandy

Abstract


Indonesia is a country with the third largest tuna production in the world. Fish oil as a fishery product processing waste is a potential material for making biodiesel because it has a high fat content. In this research, biodiesel was made from bio-oil from tuna waste through esterification and transesterification processes at 60°C, stirring speed 360 rpm with a reaction time of 2 hours. The purpose of this study was to determine the levels of Free Fatty Acid (FFA) contained in bio-oil from tuna waste and to determine the effect of the size of the natural zeolite catalyst in the transesterification process on the characteristics of the biodiesel produced. The variables used were the size of the zeolite catalyst 10 - 20, 30 - 40, 50 - 60, 70 - 80, 100 - 120 mesh. From the research results, it can be concluded that the smaller the zeolite catalyst size, the resulting biodiesel is closer to the biodiesel standard and the size of 100-120 mesh which is very close to the SNI 7182: 2015 biodiesel standard with a density value of 849.6 kg/m3, kinematic viscosity 3,413 cSt, moisture content. 0%, acid number 1.10 mg.KOH /gr, flash point 75 ° C, calorific value 8.240 Cal/gr.


Keywords


Tuna Fish, Catalyst, Biodiesel

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References


. R. Santos, A. Pabon, W. Silva, H. Silva, and M. Pinho, Population structure and movement patterns of blackbelly rosefish in the NE Atlantic Ocean (Azores archipelago), vol. 29, no. 3. 2020.

. Greenpeace international, “Greenpeace International Annual Report 2018,” no. July, pp. 5–11, 2019.

. B. G. I. Samosir, F. Aulis, and L. Buchori, “Pengaruh Katalis Asam (H2So4) Dan Suhu Reaksi Dalam Pembuatan Biodiesel Dari Limbah Minyak Ikan,” J. Teknol. Kim. dan Ind., vol. 1, no. 1, pp. 474–481, 2012, [Online]. Available: https://ejournal3.undip.ac.id/index.php/jtki/article/view/1091.

. H. H. R.Hartono, Meliana R.S , Nurlaila, Rusdi, Anondho Wijanarko, “Proses Transesterifikasi Menggunakan Katalis Zeolit Alam Bayah,” Semin. Nas. Sains dan Teknol. 2017, no. November, pp. 1–2, 2017.

. H. Sukiman, Y. Yusnimar, and S. Bahri, “Pembuatan Biodiesel dari Limbah Ikan Baung Dengan Katalis Padat Lempung,” J. Online Mhs. Bid. Tek. dan Sains, no. Vol 1, No 1 (2014): Wisuda Februari Tahun 2014, pp. 1–8, 2014, [Online]. Available: http://jom.unri.ac.id/index.php/JOMFTEKNIK/article/view/3650.

. Maharani Nurul Hikmah dan Zuliyana, “ESTERIFIKASI DAN TRANSESTERIFIKASI,” pp. 1–7, 2011.

. M. N. Hikmah and D. Zuliyana, “Pembuatan Metil Ester (Biodiesel) Dari Minyak Dedak Dan Metanol Estrans,” Diponegoro University, 2010.

. B. Wahyudi, N. W. Triana, and E. Mulyadi, “Biodisel Dari Minyak Ikan,” J. Tek. Kim., vol. 11, no. 1, pp. 24–27, 2016.

. N. L. Arpiwi, Diktat Kuliah Bioenergi : Biodiesel Dan Bioetanol. Prodi Biologi Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Udayana, 2015.

. S. P. Handayani, “Pembuatan biodiesel dari minyak ikan dengan radiasi gelombang mikro,” Universitas Sebelas Maret, 2010.

. A. Wibowo, H. Febriansyah, and S. Suminto, “Pengembangan Standar Biodiesel B20 Mendukung Implementasi Diversifikasi Energi Nasional,” J. Stand., vol. 21, no. 1, p. 55, 2019, doi: 10.31153/js.v21i1.736.




DOI: http://dx.doi.org/10.30870/vanos.v6i1.9269

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