Customization: | Available |
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Application Fields: | New Energy |
Certification: | ISO |
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KYLIN Hydrogen independently develops and produces hydrogen generator with the world's advanced level, and its performance far exceeds that of similar equipment in the industry, with the following three obvious advantages: |
1) The size and weight of KYLIN equipment is about 1/4 of similar equipment, and large equipment can also be delivered in container skids, while electricity consumption is also reduced by about 15%, which saves a lot of infrastructure costs and operating costs for hydrogen projects and shortens the project cycle. |
2) The adjustment range of KYLIN hydrogen generator is twice as large as that of similar equipment, and the adjustment speed is also ten times as fast as that of similar equipment, it takes only about 20 seconds to change the productivity from 10% to 110% in hot standby state, whether power supply fluctuations or hydrogen consumption changes, it can regulate hydrogen production automatically and unattended, therefore, it can directly use unstable power sources such as wind power and photovoltaic, solving the problem that common equipment cannot run off-grid and realizing Green power to produce Green hydrogen in the REAL sense. |
3) KYLIN equipment has cost advantage, although the performance is similar to that of PEM (Proton Exchange Membrane) hydrogen generator, the cost is still at the level of alkaline hydrogen generator, which is much lower than that of PEM generator. This is conducive to the large-scale promotion of Green power to Green hydrogen project. |
• Independent research and development of outdoor integrated equipment |
• Output is selectable from 2Nm3/h to 500Nm3/h |
• High hydrogen purity and stable system performance |
• Container size can be designed according to user requirements |
• Can accommodate the hydrogen generator and its auxiliary equipment |
• Highly integrated equipment greatly reduces floor space and facilitates installation and use |
• This container type unit can also be placed inside the building |
Item | Description | Unit | 80 Nm³/h |
Process Water Parameters | |||
1 | Pressure | Mpa | ≥0.1 |
2 | Cond. | μs/cm | ≤5 |
3 | Fe2+ | mg/L | ≤1 |
4 | Cl- | mg/L | ≤1 |
5 | SS | mg/L | ≤1 |
6 | Flow | m³/h | ≤0.080 |
Cooling Water Parameters | |||
1 | Temp In | ºC | <35 |
2 | Flow | m³/h | 18 |
3 | Pressure | Mpa | 0.4~0.7 |
Chilled Water Parameters | |||
1 | Temp In | ºC | 7~10 |
2 | Flow | m³/h | 1.32 |
3 | Pressure | Mpa | 0.4~0.7 |
Instrument Air Parameters | |||
1 | Oiliness | mg/m3 | ≤5 |
2 | Dust | μm | ≤20 |
3 | Dew Point | ºC | < ambient temperature TA 10 |
4 | Pressure | Mpa | 0.4~0.7 |
5 | Flow | Nm3/h | 5 |
Inert Gas (Nitrogen or Other) Parameters | |||
1 | Pressure | Mpa | 0.6~2.0 |
2 | Dew Point | ºC | ≤-60 |
3 | Purity | % | ≥99.5% |
4 | Flow | Nm3/h | <5 |
5 | Startup | Nm3 | 30 |