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0.5~1.5 Nm³/h PEM electrolyzer
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- Product Description
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Indicator project Unit Product Model HB1-0.5 HB1-1.0 HB1-1.5 HB1-2.0 Hydrogen production rate N·m³/h 0.5 1.0 1.5 2.0 Hydrogen pressure MPa 0~3.0 Hydrogen purity % 99.999% after drying and purification Oxygen production N·m³/h 0.25 0.5 0.75 1.0 Electrolysis method / Pure water electrolysis does not require the addition of alkaline solution, which is safe, reliable, and easy to maintain Rated working current ADC 120 120 120 120 Rated working voltage VDC 25 50 75 100 Electrolytic energy efficiency % 78~84 Water source requirements ASTMD1193 Type I deionized water<0.1uS/cm or>10M Ω· cm Water cycle mode / Pump circulation, inlet pressure ≤ 2 bar Water consumption (both hydrogen and oxygen ports return to the water tank) L/h 0.5 1.0 1.5 2.0 Control temperature ℃ 45~65 Dimensions (length * width * depth) do not include terminal blocks, connectors, and bolts mm ≯195*195*125 ≯195*195*175 ≯195*195*260 ≯195*195*310 Net weight kg 22 27 37 45 Other matters Electrolytic cell inlet, hydrogen and oxygen outlet pipe size: sleeve joint outer diameter 4 pipes application area Laboratory hydrogen production machine, small mobile hydrogen refueling machine, fuel cell testing, distributed energy storage, semiconductor and other fields Widely used in laboratory hydrogen production machines, small mobile hydrogen refueling machines, fuel cell testing, distributed energy storage, semiconductors, and other fields.
Using high-quality aerospace grade materials to ensure the production of hydrogen and oxygen without any toxic or harmful impurities. Imported high-efficiency proton exchange membranes are used to ensure the lifespan and reliability of the electrolytic cell.
China has taken the lead in adopting single cell voltage monitoring function to ensure the safety of hydrogen and oxygen produced by electrolysis in electrolytic cells, and the voltage of each electrolytic cell can be monitored.
The detection report shows that there are no toxic or harmful impurities such as ozone and chlorine in the hydrogen and oxygen produced by the electrolytic cell.
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