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Hydrogen Production And Storage Challenges

Improving the Power to Weight Ratio of Hydrogen-based Systems

Improving the Power to Weight Ratio of Hydrogen-based Systems

Improving the Power to Weight Ratio of Hydrogen-based Systems

Hydrogen power generation systems are bulky and require large storage space. Owing to this, the amount of energy generated is low comparable to the weight of the system. This is a pain point especially for hydrogen-based transport systems. How can the power to weight ratio of hydrogen based systems be improved?

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Reducing Hazards through Low Pressure-high Density Hydrogen Transport Systems

Reducing Hazards through Low Pressure-high Density Hydrogen Transport Systems

Hydrogen is usually stored in highly pressurized containers, and this poses significant risks. Low pressure storage systems could be an alternative, but much research needs to be done on these systems.

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Increasing the Share of De-carbonized Hydrogen Production

Increasing the Share of De-carbonized Hydrogen Production

Most of the hydrogen generated currently is from fossil fuels, resulting in direct or indirect CO2 emissions. How can hydrogen be produced from clean and sustainable sources?

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Reducing Energy Intensity of Clean Hydrogen Generation

Reducing Energy Intensity of Clean Hydrogen Generation

Hydrogen generation through clean methods is possible primarily through electrolysis of water. But hydrolysis requires large amounts of electricity as input. How can electrolysis of water for hydrogen production be made less energy intensive?

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Developing Cold Storage Techniques to Store Hydrogen as a Liquid

Developing Cold Storage Techniques to Store Hydrogen as a Liquid

Storing hydrogen as a liquid significantly improves the hydrogen fuel density, thus requiring much less space for the same mass of hydrogen stored. This will eventually result in lower costs for the entire hydrogen economy. What are the key research efforts to be undertaken to accelerate progress in these cold storage techniques?

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