Analisis Perbandingan Material Plat Stainless Steel 304 Dengan Graphite Sheet Dalam Produksi Gas Hidrogen Pada Generator Dry Cell

Authors

  • Danu Darma Wijaya Universitas Muhammadiyah Prof. Dr. Hamka
  • R. Mohammad Alansyah Mauludi Universitas Muhammadiyah Prof. Dr. Hamka
  • Arif Putra Pratama Universitas Muhammadiyah Prof. Dr. Hamka
  • Delvis Agusman Universitas Muhammadiyah Prof. Dr. Hamka
  • Hendi Saryanto Universitas Muhammadiyah Prof. Dr. Hamka

Keywords:

hidrogen, energi, elektrolisis, efisiensi

Abstract

Energy are the most important part of human life, every activity in human life is dependent on energy consumption. Humans are now using fossil fuel energy sources on a large scale so that fuel (fuel oil) is running low and alternative energy is needed. Hydrogen gas is an alternative energy that can replace fossil energy sources by using the electrolysis process in dry cell generators. The research aims to determine the material with the highest production and highest efficiency in the electrolysis process. This study used an experimental method by comparing stainless steel material with graphite sheets. From the results of the study it was concluded that the highest production rate was obtained for the variation of stainless steel 304 plate material at a time variation of 30 seconds with a result of 0.013333 l/s and the lowest variation for graphite sheets. at a time variation of 90 seconds with a result of 0.002222 l/s. The highest efficiency was obtained from variations in Stainless steel material with a time of 30 seconds reaching an efficiency of 45.19% and the lowest was obtained from variations of Graphite sheet with a time variation of only 7.53%.

Downloads

Download data is not yet available.

Author Biographies

Danu Darma Wijaya, Universitas Muhammadiyah Prof. Dr. Hamka

Fakultas Teknologi Industri dan Informatika

Teknik Mesin

R. Mohammad Alansyah Mauludi, Universitas Muhammadiyah Prof. Dr. Hamka

Fakultas Teknologi Industri dan Informatika

Teknik Mesin

Arif Putra Pratama, Universitas Muhammadiyah Prof. Dr. Hamka

Fakultas Teknologi Industri dan Informatika

Teknik Mesin

Delvis Agusman, Universitas Muhammadiyah Prof. Dr. Hamka

Fakultas Teknologi Industri dan Informatika

Teknik Mesin

Hendi Saryanto, Universitas Muhammadiyah Prof. Dr. Hamka

Fakultas Teknologi Industri dan Informatika

Teknik Mesin

References

B. S. (2016). Application of Dry Cell Hho Gas Generator With Pulse Width Modulation on Sinjai Spark Ignition Engine Performance. International Journal of Research in Engineering and Technology, 05(02), 105–112. https://doi.org/10.15623/ijret.2016.0502019

Amin, M. S. Al, & Nurdiana, N. (2019). Pemanfaatan Hydrogen dari HHO Generator sebagai Penghemat Bahan Bakar pada Prime Mover Generator. Prosiding Seminar Nasional II Hasil Litbangyasa Industri, May, 49–55.

Basori, B. (2018). Experimental Investigation on Dry Cell Hho Generator With Catalyst Variation for Reducing the Emissions. Journal of Mechanical Engineering and Vocational Education (JoMEVE), 1(1), 1. https://doi.org/10.20961/jomeve.v1i1.18950

Bow, Y., Sari, A. P., Harliyani, A. D., Saputra, B., & Budiman, R. (2020). Produksi Gas Hidrogen Ditinjau dari Pengaruh Duplex Stainless Steel terhadap Variasi Konsentrasi Katalis dan Jenis Air yang Dilengkapi Arrestor. Jurnal Kinetika, 11(03), 46–52

Tranggono, A., Salim, A., Yudha, R. G. P., Lawu, K. S., & Yusuf, A. (2019). Performance Characteristics between Titanium and Stainless

Steel Materials as Electrodes on Dry Cell Type HHO Gas Generator. 4(3), 563–566.

Tumilar, G. P., Lisi, F., & Pakiding, M. (2015). Optimalisasi Penggunaan Bahan Bakar Pada Generator Set Dengan Menggunakan Proses Elektrolisis. Jurnal Teknik Elektro Dan Komputer, 4(2), 77–88. https://doi.org/10.35793/jtek.4.2.2015.7938

Budiarthana, I. N., & Ketut, I. (2013). Produksi Gas Dengan Proses Elektrolisis Dalam Pembuatan Generator Gas Hho , Elektroda Lembaran Dan Spiral Dengan Katalis NaOH , NaCl DAN NaHCO 3. Jurnal Logic, 13(1), 61–67.

Chinguwa, S., Jen, T. C., & Akinlabi, E. T. (2020). Conceptualization of the optimal design of a hydroxyl booster dry cell for enhancing efficiency of internal combustion engines. Procedia CIRP, 91, 819–823. https://doi.org/10.1016/j.procir.2020.03.118

Rizal, S. (2014). Generator Gas Hho Dry Type 6 Cell Tersusun Seri Dan Implementasinya Pada Dump Truck Nissan Diesel Cwa 211 With Arranged Series and Implementation of Dump Truck Nissan.

Marlina, E., S. Wahyudi., L. Yulianti. 2013. Produksi Brown’s gas hasil elektrolisis H2O dengan katalis NaHCO3. Jurnal Rekayasa Mesin Vol. 4 No. 1.

Salek, F., Zamen, M., Hosseini, S. V., & Babaie, M. (2020). Novel hybrid system of pulsed HHO generator/TEG waste heat recovery for CO reduction of a gasoline engine. International Journal of Hydrogen Energy, 45(43),23576–23586. https://doi.org/10.1016/j.ijhydene.2020.06.075

Pelat, V. J., Pelat, L., & Katalis, D. A. N. P. (2019). Analisa Volume Hidrogen Dan Temperatur Nyala Api Pada Generator Hho. Ciastech, 275–280.

Pradigdo, D., Sudjito, S., & W, A. S. (2017). Pengaruh Luasan Elektrode Stainless Steel Terhadap Produksi Gas Hho Pada Proses Elektrolisis Menggunakan Baterai 12 Volt 70 AH. 3.

Produksi, K., Pada, H., Menggunakan, H. H. O., Pid, M., Bahan, U., Kapal, B. A., Christoven, J., Teknik, D., Perkapalan, S., Teknik, F., &

Hasanuddin, U. (2021). Kendali produksi hidrogen pada generator hho menggunakan metode pid untuk bahan bakar alternatif kapal.

Purwondho, R., Sudrajat, A., & Handoko. (2021). Research on the effect of SS316L electrode Pelate treatment on HHO gas production performance. IOP Conference Series: Earth and Environmental Science, 794(1). https://doi.org/10.1088/17551315/794/1/012021

Published

2022-12-23

How to Cite

Wijaya, D. D., Mauludi, R. M. A., Pratama, A. P., Agusman, D., & Saryanto, H. (2022). Analisis Perbandingan Material Plat Stainless Steel 304 Dengan Graphite Sheet Dalam Produksi Gas Hidrogen Pada Generator Dry Cell. Prosiding Seminar Nasional Teknoka, 7, 38–42. Retrieved from https://journal.uhamka.ac.id/index.php/teknoka/article/view/11192