Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume

Hydrogen isclassified as New Energy and also considered as the most promising transportation fuel candidate in the future. Various pilots test of hydrogen fuel cell vehicles by the world's leading automotive industries since the last 50 years have begun to show bright spot in the utilization of...

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Main Authors: Sudrajat Ajat, Mayfa Handayani Eva, Tamaldin Noreffendy, Kamal Mat Yamin Ahmad
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:SHS Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/shsconf/20184902016
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author Sudrajat Ajat
Mayfa Handayani Eva
Tamaldin Noreffendy
Kamal Mat Yamin Ahmad
author_facet Sudrajat Ajat
Mayfa Handayani Eva
Tamaldin Noreffendy
Kamal Mat Yamin Ahmad
author_sort Sudrajat Ajat
collection DOAJ
description Hydrogen isclassified as New Energy and also considered as the most promising transportation fuel candidate in the future. Various pilots test of hydrogen fuel cell vehicles by the world's leading automotive industries since the last 50 years have begun to show bright spot in the utilization of hydrogen-based fuel cells as vehicle fuel. The electrolysis process of water (H2O) would produce H2 (hydrogen) and O2 (oxygen). The conventional method resulted in inconsistent volume and quality of HHO gas. However, the current development of HHO gas production through electrolysis process varies in term of materials, production process, design of certain tools, and technical modifications to obtain optimum results. In this research, the Hybrid Multistack TypeHHO generator has been designed and developed by combining two types of dry and wet cell generators. In this study using both cell type generator (wet and dry cell) or called as a hybrid type. Through the process of electrolysis in HHO enclosure space, the HHO gas was produced. The volume of HHO gas obtained from the HHO generator as an alternative fuel is strongly influenced by the electrical current supplied and the concentration of KOH catalyst used. The test was conducted with four stages of catalyst amount from 5.6g/L; 11.2g/L; 16.8g/L; and 22.4g/L. The applied current is linearly increased, with the increasing HHO gas production. It is proven when with the amount of catalyst used at 22.4g/L, the average HHO gas produced is 230.3mL/min. The author analyzes the performance of the generator in term of current and HHO gas production at a predetermined 12V constant voltage.
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spelling doaj.art-433cf2c6836d4c6ea78f3f2fd27beff12022-12-21T19:53:24ZengEDP SciencesSHS Web of Conferences2261-24242018-01-01490201610.1051/shsconf/20184902016shsconf_ices2018_02016Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volumeSudrajat Ajat0Mayfa Handayani Eva1Tamaldin Noreffendy2Kamal Mat Yamin Ahmad3Engineering Physics, Faculty of Engineering and Science, Universitas Nasional-JakartaEngineering Physics, Faculty of Engineering and Science, Universitas Nasional-JakartaEngineering Physics, Faculty of Engineering and Science, Universitas Nasional-JakartaEngineering Physics, Faculty of Engineering and Science, Universitas Nasional-JakartaHydrogen isclassified as New Energy and also considered as the most promising transportation fuel candidate in the future. Various pilots test of hydrogen fuel cell vehicles by the world's leading automotive industries since the last 50 years have begun to show bright spot in the utilization of hydrogen-based fuel cells as vehicle fuel. The electrolysis process of water (H2O) would produce H2 (hydrogen) and O2 (oxygen). The conventional method resulted in inconsistent volume and quality of HHO gas. However, the current development of HHO gas production through electrolysis process varies in term of materials, production process, design of certain tools, and technical modifications to obtain optimum results. In this research, the Hybrid Multistack TypeHHO generator has been designed and developed by combining two types of dry and wet cell generators. In this study using both cell type generator (wet and dry cell) or called as a hybrid type. Through the process of electrolysis in HHO enclosure space, the HHO gas was produced. The volume of HHO gas obtained from the HHO generator as an alternative fuel is strongly influenced by the electrical current supplied and the concentration of KOH catalyst used. The test was conducted with four stages of catalyst amount from 5.6g/L; 11.2g/L; 16.8g/L; and 22.4g/L. The applied current is linearly increased, with the increasing HHO gas production. It is proven when with the amount of catalyst used at 22.4g/L, the average HHO gas produced is 230.3mL/min. The author analyzes the performance of the generator in term of current and HHO gas production at a predetermined 12V constant voltage.https://doi.org/10.1051/shsconf/20184902016Cell generator HHOHHO GasHybrid Cell GeneratorCalibrationEvaluation and optimization
spellingShingle Sudrajat Ajat
Mayfa Handayani Eva
Tamaldin Noreffendy
Kamal Mat Yamin Ahmad
Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
SHS Web of Conferences
Cell generator HHO
HHO Gas
Hybrid Cell Generator
Calibration
Evaluation and optimization
title Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
title_full Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
title_fullStr Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
title_full_unstemmed Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
title_short Principle of generator HHO hybrid multistack type production technologies to increase HHO gas volume
title_sort principle of generator hho hybrid multistack type production technologies to increase hho gas volume
topic Cell generator HHO
HHO Gas
Hybrid Cell Generator
Calibration
Evaluation and optimization
url https://doi.org/10.1051/shsconf/20184902016
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AT tamaldinnoreffendy principleofgeneratorhhohybridmultistacktypeproductiontechnologiestoincreasehhogasvolume
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