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PEM cell costs can be up to 30% lower than the industry average—Xingran Technology’s 200 Nm³/h PEM electrolyzer production line is now operational.
In response to the nation’s major strategic goals of reaching peak carbon emissions by 2030 and achieving carbon neutrality by 2060, and to promote the consumption and utilization of renewable energy, Jiangsu Xingran Technology has actively invested in the research and development and production of PEM water electrolysis hydrogen production equipment. Currently, Xingran has established the capability to produce MW-scale PEM electrolyzers, with each unit capable of generating up to 200 Nm³/h of hydrogen. Through technological cost reductions and economies of scale, the company’s equipment manufacturing costs are now below 30% of the industry average, laying a solid technological and equipment foundation for the realization of affordable green hydrogen.
2024.05.11
Empowered by technology! Xingran Technology has been awarded the title of “High-Tech Enterprise” by Jiangsu Province.
Recently, Jiangsu Xingran Technology Co., Ltd. (referred to as Xingran Technology) successfully obtained certification as a high-tech enterprise and received the “High-Tech Enterprise” certificate jointly issued by the Jiangsu Provincial Department of Science and Technology, the Jiangsu Provincial Department of Finance, and the Jiangsu Provincial Tax Bureau of the State Administration of Taxation. The certificate number is GR202332001706, officially marking its entry into the ranks of high-tech enterprises.
2024.04.24
The cost of PEM hydrogen production has dropped significantly! Xingran Technology’s cost-reduction pathway for PEM water electrolysis hydrogen production.
Hydrogen production via water electrolysis is an important method for generating hydrogen energy, which involves splitting water into hydrogen and oxygen. Among various technologies, hydrogen production using PEM (Proton Exchange Membrane) electrolysis boasts advantages such as high efficiency, low energy consumption, and zero pollution, making it highly promising for applications in the hydrogen energy sector. However, current PEM water electrolysis technology still faces certain challenges, such as relatively high costs. Therefore, reducing the cost of the hydrogen-producing membrane-electrode assembly is crucial for enhancing the competitiveness of PEM water electrolysis technology.
2024.04.12
Xingran Technology’s hydrogen production equipment project, with a total investment of 500 million yuan, has been established in Changzhou, with an annual output value of 5 billion yuan.
On March 13, 2024, the PEM water electrolysis hydrogen production equipment project of Xingran Technology was officially signed and established in the Changzhou Wujin National-level Industrial Park in Jiangsu Province. The project is invested in by Jiangsu Xingran Technology Corporation to its Changzhou branch, with a total investment amount of 500 million yuan, of which approximately 200 million yuan will be allocated to fixed assets.
Is hydrogen production via water electrolysis cost-effective? Learn about PEM water electrolysis technology in just 1 minute!
PEM (Proton Exchange Membrane) is the abbreviation for proton exchange membrane water electrolysis technology. Unlike alkaline water electrolysis for hydrogen production, PEM water electrolysis technology uses a proton exchange membrane as a solid electrolyte, replacing the diaphragm and liquid electrolyte—typically a 30% potassium hydroxide solution or a 26% sodium hydroxide solution—employed in conventional alkaline electrolyzers. Furthermore, PEM technology utilizes pure water as the feedstock for hydrogen production via water electrolysis, thereby avoiding potential issues of alkali contamination and corrosion.
2023.09.05
Sinopec Announces: The Hydrogen Energy Era Is Coming!
In recent years, one major policy after another has been introduced regarding hydrogen energy. In April 2020, the National Energy Administration officially included hydrogen energy in the scope of energy in the "Draft Energy Law of the People's Republic of China (for Public Comments)." Several provinces and cities have incorporated content related to hydrogen energy development into their plans for the 14th Five-Year Period, thus laying the initial foundation for a comprehensive policy and industrial framework for hydrogen energy development.
2022.11.29