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Writer's pictureKomal Boudhh

Hydrogen Energy Storage Market: 2021 - Trends, Growth, Industry Analysis

Global Hydrogen Energy Storage Market Driven by the Increasing Need for Efficient Energy Storage

Over the past few years, hydrogen is being taken more seriously by the energy and power sector as a solution for getting the renewable energy grid equipped. The need for a solution for energy storage is becoming more urgent because wind turbine fields are now producing gigawatts of electricity, but with a significant inconsistency in grid demand. It's a well-established issue for the industry. Currently, there are a variety of energy efficiency and storage solutions in the market. However, none provides a complete solution that enables smooth plugging of wind and solar power into the grid. Storage of hydrogen energy is another form of storage of chemical energy in which electric power is converted to hydrogen. Instead, using the gas as fuel in a combustion engine or fuel cell will unleash this energy again. The electrolysis of water will generate hydrogen from electricity, a simple process that can be achieved with relatively high efficiency if cheap power is available. The hydrogen will then be deposited, possibly for large-scale energy storage in underground caverns, even if steel tanks may be used for smaller storage. Hydrogen can be used for piston engines, gas turbines, or fuel cells with hydrogen, the latter providing the highest performance. Hydrogen energy storage is of concern because, in many combustion systems, the gas forms the basis for the hydrogen industry where it substitutes fossil fuel.

Hydrogen energy storage systems receive increased positive attention worldwide. The technology is up-and-coming as hydrogen fuel storage can store in far more efficient energy consumption. Techniques for the use of hydrogen storage are implicit in the fact that efficient adoption of the system would require the production of applications using hydrogen fuel. Hydrogen storage is a technology that is important from the perspective of the fruitful promotion and consumer adoption of vehicles using hydrogen as a fuel. Hence, the rising need for hydrogen-based vehicles is expected to fuel competition in the hydrogen industry. In addition to the automobile industry, the need for the supply of hydrogen oil serves the needs of material handling devices, portable control systems, and light-duty cars aboard. The growing investment in hydrogen storage and its potential as clean energy supply is projected to fuel considerable growth in the near future for the hydrogen energy storage industry. A crucial technological obstacle to be met, however, is that loading sufficient quantities of hydrogen onboard different types of vehicles while satisfying all consumer needs (expense, safety, vehicle efficiency and ease of driving) without granting passenger room or luggage space is a significant challenge to be tackled, as it could prove to be a constraint for the hydrogen storage industry, even in the case of passengers.

There has been a growing global demand for energy supplies, which hydrogen as a fuel could meet. That, in effect, would allow the hydrogen storage system, thereby pushing the need for hydrogen storage. In recent times, the shift towards extracting sustainable green energy from hydrogen is projected to boost the hydrogen storage market, along with increasing demand for electricity production and utilization. Rising energy demand and resulting hydrogen aspirations as a fuel to partly fulfill potential energy requirements are anticipated to push the need for hydrogen storage in the coming years. These factors are likely to contribute to the growth of the global hydrogen energy storage market in the near future. As hydrogen production costs are increasing, however, the production of hydrogen and thus the demand for hydrogen storage may face some hurdles. Regardless of its low density, hydrogen storage has been found to be a critical problem for both stationary storage and transport. Storage of hydrogen can be achieved in either gaseous, liquid or solid forms, and is known as storing of hydrogen physical and material. Physical storage involves the storage of hydrogen in liquid or gaseous forms. Material storage includes storage of hydrogen in adsorbent, liquid organic, interstitial hydride, complex hydride, or chemical hydrogen forms.

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