Dicky Wyldan Putra Permana
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Pengaruh Kapasitas Panel Surya dan Intensitas Cahaya Matahari terhadap Kinerja Generator Hidrogen Kering dalam Produksi Gas Hidrogen Rezha Apriansyah; Rifky; Tasyrik Al Qaida; Dicky Wyldan Putra Permana; Saddam Firly Mustarisiam
Prosiding Seminar Nasional Teknoka Vol 10 (2025): Proceeding of TEKNOKA National Seminar - 10
Publisher : Fakultas Teknik, Universitas Muhammadiyah Prof. Dr. Hamka, Jakarta

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Abstract

Hydrogen gas can be obtained from a hydrogen generator generated by solar panels. This study aims to obtain the performance of an integrated solar panel system with a dry hydrogen generator (GHK) in producing hydrogen gas. GHK has a design with an arrangement of HSS 316L type steel plates coated with rubber gaskets. The research methodology used is experimental, starting with the design of the GHK electrolysis system using two solar panels with a capacity of 50 Wp and 100 Wp as electrical energy suppliers. The test was carried out in an open area using sunlight. The input data measured included sunlight intensity, air humidity, air temperature, wind speed, and solar panel surface temperature. The output data measured included electrical voltage, electrical current, hydrogen gas discharge, oxygen gas discharge, electrolysis process temperature, and weather conditions. The results showed that the system with a 100 Wp solar panel produced a larger volume of hydrogen and had a higher efficiency of energy conversion than the 50 Wp panel.
Analisis Pengaruh Intensitas Cahaya Matahari dan Jenis Generator terhadap Kinerja Sistem Panel Surya-Generator Hidrogen 50 Wp Saddam Firly Mustarisiam; Rifky; Tasyrik Al Qaida; Dicky Wyldan Putra Permana; Rezha Apriansyah
Prosiding Seminar Nasional Teknoka Vol 10 (2025): Proceeding of TEKNOKA National Seminar - 10
Publisher : Fakultas Teknik, Universitas Muhammadiyah Prof. Dr. Hamka, Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22236/teknoka.v10i1.22714

Abstract

Hydrogen gas can be produced from wet hydrogen generators (GHB) and dry hydrogen generators (GHK). Both hydrogen generators are powered by a 50 Wp solar panel (PV). The aim of this research is to study the performance comparison of GHB and GHK in producing hydrogen gas flow rate and system efficiency to determine the more optimal system. The research began with a literature study and designing both generators, which underwent trials to obtain a research equipment system that adheres to the theory and concepts of GHB and GHK. Experimental methods were carried out by direct measurements of input and output variables from the solar panel as well as output variables from the GHB and GHK electrolysis systems. The research results show that the integrated PV-GHB system produces a larger hydrogen gas flow rate and higher system performance efficiency compared to PV-GHK.