Jul 14, 2020 5:00 PM ET
iCrowd Newswire – Jul 14, 2020
Rising Demand for Decarbonized Hydrogen to Drive Forward Global Water Electrolysis Market
Industrial procedures done in an eco-friendly manner are always a sign of avant-garde technology. Water electrolysis is one such procedure which marks the blend of technology and eco-awareness. The process releases hydrogen, which is carbon-free, as a sustainable fuel, and for the production of ammonia methanol and fertilizers. The global water electrolysis market is expecting a growth with an astounding CAGR of 6.31% during the forecast period (2015-2023). Market Research Future (MRFR) in an extensive report asserts that the market can climb up to an estimated value of USD 11,426.8 million during the same period riding on demands generated by mainly chemical, petroleum, and pharmaceutical industries.
However, various substitutes of this method such as natural gas reforming, coal gasification, biomass gasification, and solar thermochemical hydrogen can rein in the normal growth by a considerable margin. At the same time, the process incurs massive cost which can hamper the expected market growth.
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The global market is eyeing for strategies that would help in market expansion. The densely packed market is competitive enough where market influencers are going to develop plans to stay afloat. For instance, Praxair Inc. and Linde AG alliance could ensure a cross-country business expansion. On the other hand, Air Products announced its acquisition of the Rotoflo turboexpander business from Baker Hughes, a GE company, to expand its market portfolio.
Prominent players in global water electrolysis market are ThyssenKrupp AG (Germany), Linde AG (Germany), Air Products and Chemicals, Inc. (U.S.), Siemens AG (Germany), ProtonOnsite (U.S.), Teledyne Energy System Inc. (U.S.), Areva H2Gen (France), Hydrogenics Corporation (Canada), Erre Due s.p.a (Italy) and Peak Scientific (Scotland), and others.
Researchers from Energy Science and Engineering at Daegu Gyeongbuk Institute of Science and Technology (DGIST) in collaboration with Pacific Northwest National Laboratory (PNNL) has developed a highly efficient, ultra-durable core-shell nanostructured electrocatalyst that will invite low cost. The research can revolutionize the sector and assist it to reach to a wider audience.
Voestalpine in Linz has launched, the world’s most extensive and the most efficient among its kind, water electrolysis plant that would use proton exchange membrane (PEM) electrolysis process developed by Siemens.
The market can be segmented by technology and end-user.
Based on technology, the market can be segmented into alkaline water electrolysis and proton exchange membrane. The former segment accounted for the largest share in the global market and is expected to retain its current position during the forecast period with the fastest CAGR.
By end-user, the market comprises chemical, petroleum, pharmaceutical, power plants, electronics & semiconductor, and others. Chemical industry owns the maximum share of the market. Petroleum sector is catching up quickly with increased expenditure in research and development.
Based on region, the global water electrolysis market can be segmented by Asia Pacific (APAC), North America, Europe, and Rest-of-the-World (RoW).
The APAC region is controlling the market with a significant 34.2% (as measured in 2016) of the global market share and is projected to grow further during the forecast period. China and India, two emerging economies, are the major market contributors as the burgeoning industries in those regions are commanding remarkable market share. China relies heavily on such hydrogen to process heavy crude oil.
The North American chemical industry is boosting the regional water electrolysis market as the region has a comparatively low gas price. End-user industries are also going to drive the market further as the infrastructure to support the industries is only getting better with time in this region.
Key Questions Addressed by the Report
- What was the historic market size (2018)?
- Which segmentation (product category/end users) is driving market growth?
- What will be the growth rate by 2025?
- Who are the key players in this market?
- What are the strategies adopted by key players?
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TABLE OF CONTENT
1 Water Electrolysis Market Overview
1.1 Product Overview And Scope Of Water Electrolysis
1.2 Classification Of Water Electrolysis By Product Category
1.2.1 Proton Exchange Membrane
1.2.2 Alkaline Water Electrolysis
1.2.3 Solid Oxide Electrolyte (SOE)
1.3 Global Water Electrolysis Market By End-Users
1.3.2 Electronics & Semiconductor
1.3.3 Power Plants
1.4 Global Water Electrolysis Market By Region
1.4.1 Global Water Electrolysis Market Size (Value) Comparison By Region (2014–2025)
1.4.2 United States Water Electrolysis Status And Prospect (2014–2025)
1.4.3 China Water Electrolysis Status And Prospect (2014–2025)
1.4.4 Europe Water Electrolysis Status And Prospect (2014–2025)
1.4.5 Japan Water Electrolysis Status And Prospect (2014–2025)
1.4.6 Southeast Asia Water Electrolysis Status And Prospect (2014–2025)
1.4.7 India Water Electrolysis Status And Prospect (2014–2025)
1.5 Global Market Size (Value And Volume) Of Water Electrolysis (2014–2025)
1.5.1 Global Water Electrolysis Revenue And Growth Rate (2014–2025)
2 Global Water Electrolysis Competition by Players, Technology and End-User
2.1 Global Water Electrolysis Market Competition By Players
2.1.1 Global Water Electrolysis Revenue And Share By Players (2016)
2.2 Global Water Electrolysis (Value) By Technology
2.2.1 Global Water Electrolysis Revenue And Market Share By Technology (2014–2018)
2.3 Global Water Electrolysis (Value) By Region
2.3.1 Global Water Electrolysis Revenue And Market Share By Region (2014–2018)
2.4 Global Water Electrolysis (Volume) By End-User
2.4.1 Global Water Electrolysis Revenue And Market Share By End-User (2014–2018)
3 United States Water Electrolysis (Value)
3.1 United States Water Electrolysis Value (2014–2018)
3.1.1 United States Water Electrolysis Revenue And Growth Rate (2014–2018)
3.2 United States Water Electrolysis Value And Market Share By Technology
3.3 United States Water Electrolysis Value And Market Share By End-User
4 China Water Electrolysis (Value)
4.1 China Water Electrolysis Value (2014–2018)
4.1.1 China Water Electrolysis Revenue And Growth Rate (2014–2018)
4.2 China Water Electrolysis Value And Market Share By Technology
4.3 China Water Electrolysis Value And Market Share By End-User
5 Europe Water Electrolysis (Value)
5.1 Europe Water Electrolysis Value (2014–2018)
5.1.1 Europe Water Electrolysis Revenue And Growth Rate (2014–2018)
5.2 Europe Water Electrolysis Value And Market Share By Technology
5.3 Europe Water Electrolysis Value And Market Share By End-User
List of Tables
TABLE 1 GLOBAL WATER ELECTROLYSIS MARKET SIZE (VALUE) COMPARISON BY REGION (2014–2025)
TABLE 2 GLOBAL WATER ELECTROLYSIS REVENUE AND GROWTH RATE (2014–2018)
TABLE 3 GLOBAL WATER ELECTROLYSIS REVENUE AND GROWTH RATE (2019–2025)
TABLE 4 GLOBAL WATER ELECTROLYSIS REVENUE, BY TECHNOLOGY (2014–2018) (USD MILLION)
TABLE 5 GLOBAL WATER ELECTROLYSIS REVENUE, BY REGION (2014–2018) (USD MILLION)
TABLE 6 GLOBAL WATER ELECTROLYSIS REVENUE, BY END-USER (2014–2018) (USD MILLION)
TABLE 7 UNITED STATES WATER ELECTROLYSIS REVENUE (2014–2018) (USD MILLION)
List of Figures
FIGURE 1 MARKET SHARE ANALYSIS, 2018 (%)
FIGURE 2 GLOBAL WATER ELECTROLYSIS REVENUE, BY TECHNOLOGY (2014–2018) (USD MILLION)
FIGURE 3 GLOBAL WATER ELECTROLYSIS MARKET SHARE BY TECHNOLOGY (2014–2018) (%)
FIGURE 4 GLOBAL WATER ELECTROLYSIS REVENUE, BY REGION (2014–2018) (USD MILLION)
FIGURE 5 GLOBAL WATER ELECTROLYSIS MARKET SHARE BY REGION (2014–2018) (%)
FIGURE 6 GLOBAL WATER ELECTROLYSIS REVENUE, BY END-USER (2014–2018) (USD MILLION)
FIGURE 7 GLOBAL WATER ELECTROLYSIS MARKET SHARE BY END-USER (2014–2018) (%)
FIGURE 8 UNITED STATES WATER ELECTROLYSIS REVENUE (2014–2018) (USD MILLION)
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Keywords: Water Electrolysis Market