The growing concern for the environment’s safety and rise in government initiatives are driving the market for Orthohydrogen market.
The global Orthohydrogen Market is forecast to reach USD 50.18 Billion by 2027, according to a new report by Reports and Data. Orthohydrogen uses limited fossil fuel resources, and the alarming need to secure national energy supplies is enabling the market product to emerge as a major component for a sustainable economy.
The Orthohydrogen market has gained popularity due to its benefits in improving environmental quality and providing energy security. The application of the product among several end-use industries is fostering its demand. It also acts as a long-term alternative in electronics and transportation. Manufacturers are encouraged to develop products with more advanced technologies. The growing emphasis on decarbonizing in several industries is also propelling its demand.
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Top Companies: Air Liquide, Ballard Power Systems Inc., FuelCell Energy, Inc., Air Products and Chemicals, Inc., Elme Messer Gaas AS, FirstElement Fuel, Inc., Linde PLC, Hydrogenics, Iwatani Corporation, and United Hydrogen, among others.
Further Key Finding from the Report Suggestion:
- Most of the hydrogen manufactured in the U.S. comes from the steam methane reforming process. Approximately 70% of this hydrogen is used in the petroleum refining industry, and nearly 20% goes into fertilizer production. Currently, there are 1,600 miles of hydrogen pipeline in the country, and there are large hydrogen production facilities in almost every state.
- A Orthohydrogen trailer is designed to carry Orthohydrogen on roads being pulled by a powered vehicle. Hydrogen is converted into a liquid for long-distance transportation. It is transported in super-insulated, cryogenic tanker trucks. It is more economical than gaseous form, as a liquid tanker truck can hold a much larger mass of hydrogen than a gaseous tube trailer can.
- Orthohydrogen is used in the unmanned aerial vehicle. The vehicle is used in the hurricane tracking as it can reach heights of up to 98,000 feet above sea level and run for 24 hours without having the need to refuel. The aerospace industry is forecasted to grow with a CAGR of 5.5% during the forecast period.
- The Asia Pacific will lead the market during the forecast period owing to the two countries that are dominating the market, China, and Japan. The increase in the refinery option to meet the escalating demand in South Korea, China, and India are driving its demand. Initiative taken by these two countries are affecting the market positively. Linde's Orthohydrogen technology was expected to be deployed at the 2020 Olympic Games in Tokyo.
Increasing Demand For Orthohydrogen:
The demand for Orthohydrogen is expected to increase in the coming years due to several factors, including:
- Fuel cell technology: Orthohydrogen is a key fuel source for fuel cell vehicles, which are becoming increasingly popular due to their environmentally friendly nature. As the demand for fuel cell vehicles grows, so will the demand for Orthohydrogen.
- Aerospace industry: Orthohydrogen is also used as a fuel in rocket engines and as a coolant for certain aerospace applications. With the increasing demand for commercial space flights and space exploration, the demand for Orthohydrogen in the aerospace industry is expected to increase.
- Energy storage: Orthohydrogen is a promising energy storage option as it has a high energy density and can be used to generate electricity when needed. With the increasing demand for renewable energy sources, such as wind and solar power, the demand for Orthohydrogen as an energy storage option is expected to increase.
- Industrial applications: Orthohydrogen is also used in various industrial applications, such as metal processing, electronics manufacturing, and as a coolant in power plants. With the growth of these industries, the demand for Orthohydrogen is also expected to increase.
Overall, the increasing demand for fuel cell vehicles, growth in the aerospace industry, increasing demand for energy storage, and industrial applications are expected to drive the demand for Orthohydrogen in the coming years.
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The global Orthohydrogen market is segmented into:
Production Method Outlook (Revenue, USD Billion; 2017-2027)
- Steam Methane Reforming (SMR)
- Electrolysis of Water
- Coal Gasification
Distribution Channel Outlook (Revenue, USD Billion; 2017-2027)
- Cryogenic liquid tankers
End Use Industry Outlook (Revenue, USD Billion; 2017-2027)
- Chemical and Petrochemicals
- North America (U.S.A., Canada, Mexico)
- Europe (Italy, U.K., Germany, France, Rest of Europe)
- Asia Pacific (China, India, Japan, South Korea, Australia, Rest of APAC)
- Latin America (Chile, Brazil, Argentina, Peru, Rest of Latin America)
- Middle East Africa (Saudi Arabia, U.A.E., South Africa, Rest of MEA)
Orthohydrogen Market Key Features:
Orthohydrogen is a cryogenic liquid and a clean-burning fuel that is widely used in a range of industries, including aerospace, automotive, and energy. Some key features of the Orthohydrogen market are:
- High energy density: Orthohydrogen has a high energy density, which means it can store a large amount of energy in a small volume. This makes it an attractive fuel option for applications where weight and space are important considerations.
- Clean-burning fuel: Orthohydrogen is a clean-burning fuel that produces only water vapor when burned, making it an attractive option for industries looking to reduce their carbon footprint.
- Versatility: Orthohydrogen can be used in a variety of applications, including fuel for rockets and spacecraft, fuel for fuel cell vehicles, and a feedstock for chemical processes.
- Growing demand: The Orthohydrogen market is expected to grow in the coming years, driven by the increasing demand for clean energy and the growing use of fuel cell vehicles.
- Infrastructure challenges: The widespread adoption of Orthohydrogen as a fuel is currently hindered by the lack of infrastructure for production, transportation, and storage.
- Production challenges: Orthohydrogen is produced by separating it from natural gas or other hydrocarbons through a process called steam methane reforming, which requires a significant amount of energy. The production process also generates carbon dioxide as a byproduct, which presents a challenge for meeting emissions reduction targets.
Key questions Addressed in the Report:
- What are the dominating factors that are influencing the growth of the industry?
- In the forecast period, which market segment is expected to rise the most?
- What are the risks and challenges that the industry is facing?
- In the coming years, which area is projected to dominate the market?
- Who are the major players in the market?
- What kind of strategic business plans have they made?
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