GoReal Energy successfully participated in the HEIE2024

2024-03-28


On March 25-27, 2024, Beijing GoReal Energy Technology Co., Ltd. (hereinafter referred to as GoReal Energy) successfully participated in the annual World Hydrogen Energy Conference held at Beijing China International Exhibition Center (New Hall) -2024 Beijing International Hydrogen Energy Technology and Equipment Exhibition (HEIE2024). The exhibition covers hydrogen production, storage and transportation, filling and monitoring; fuel cell systems and application of results; key components; fuel cell vehicles and other key areas.

Against the backdrop of deep decarbonization in the global energy system, hydrogen energy has become an important part of energy system transformation. China's dependence on foreign crude oil exceeds 70%, and over 50% of the oil is consumed by transportation. The carbon reduction goal is forcing energy structure adjustment. The automotive industry has formulated a "three-step" development strategy of "reaching carbon peak in 2028, nearly zero emissions by 2050, and carbon neutrality by 2060.". Hydrogen energy is the center of renewable energy conversion in the future, and fuel cells are an important direction for transportation electrification and low-carbon. Shouldering the mission of promoting the hydrogen energy industry and supporting a zero carbon society, the founding team established Beijing Goreal Energy Technology Co., Ltd. with a strategic choice led by hydrogen energy utilization. Goreal Energy is based on testing equipment and provides leading high-performance and reliable testing technology solutions, providing "manufacturing-storage-operation-processing" testing system and digital services for the hydrogen energy industry. The fuel cell test system and electrolyzer test system exhibited by our company at this exhibition have received widespread attention.

The GR-FCTS-SC100 proton exchange membrane fuel cell test system is a performance test system developed and manufactured by Beijing GoReal Energy Technology Co., Ltd. to meet the test power range of 0~100W hydrogen/oxygen fuel cell. On the basis of the performance of the existing products in the industry, the test system has been upgraded and optimized. Based on hardware architecture optimization and software precision algorithm, combined with fuel cell nonlinear system parameter identification and multivariable optimization control technology, the accurate and controllable operation parameters are realized. Based on data mining and parameter identification technology, simulation models such as micron/millimeter liquid water transfer and impedance analysis are established to provide users with battery life cycle data service analysis.

Initial heart, responsibility, innovation and truth-seeking "are the company's values, and" promoting the hydrogen energy industry and helping the zero-carbon society "is the company's development mission. Relying on university resources, national projects, local governments and head enterprises, GoReal Energy has carried out research and development and layout of key technologies and advanced products for testing equipment in the whole industry chain of hydrogen energy and fuel cells, aiming to promote the overall technical level of the industry, accelerate China's early entry into a hydrogen energy society and jointly build a bright future of low-carbon sustainable development.

 

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National Policy On Hydrogen Energy

Steadily promote the development of green and clean liquid fuels, orderly promote the technological innovation and industrialization of cellulose and other non-grain fuel ethanol, and do a good job in pilot demonstrations of the promotion and application of biodiesel. We will steadily promote the diversified development and utilization of biomass energy. Promote the implementation of low-carbon and zero-carbon transformation in conditional industrial parks, and promote green and efficient energy supply models such as integrated energy stations and integration of source, network, load and storage. According to local conditions to explore the implementation of new energy microgrid, micro-energy network, the development of a high proportion of new energy applications and other demonstration projects.

2024-03-23

GoReal Energy Appears at FCVC 2024 Shanghai International Hydrogen Expo

The International Hydrogen and Fuel Cell Vehicle Congress & Exhibition 2024(FCVC 2024) was grandly held from June 4th to 6th at the Shanghai Automotive Exhibition Center. The FCVC technology exhibition covers the core technologies and products of the entire hydrogen and fuel cell industry chain, creating a one-stop technology exchange and business cooperation platform for many exhibitors. The conference attracted top hydrogen developers, government agencies, investors, automobile manufacturers, and representatives from industry chain enterprises from over 20 countries and regions around the world. Beijing Goreal Energy Technology Co., Ltd. (hereinafter referred to as "Goreal Energy") appeared at the exhibition with multiple products and application achievements.

2024-06-10

Experimental investigation and comprehensive analysis of performance and membrane electrode assembly parameters for proton exchange membrane fuel cell at high operating temperature

Abstract:The future trend in proton exchange membrane fuel cells (PEMFCs) is developing towards higher operating temperatures, although the current lack of comprehensive investigation into the PEMFC characteristics at elevated temperatures. This work provides a comprehensive summary of commonly used test methods and data processing methods for PEMFCs, encompassing polarization decomposition, electrochemical impedance spectroscopy (EIS) processing methods, electrochemical surface area (ECSA) and hydrogen crossover current density (iH) calculation methods. Experiments on PEMFC performance and membrane electrode assembly (MEA) parameters at 80 to 95 ℃ under various humidities are conducted. The experimental results indicate that elevated temperatures contribute to increased ohmic loss and reduced mass transfer and activation losses. Increased temperature can substantially accelerate the reaction rate and compensate for the decrease in ECSA. The ECSA decreases at elevated temperatures, and higher temperatures will result in a faster drop. The iH demonstrates an increase with both temperatures and humidities, with higher humidities leading to faster growth. Based on the comprehensive test and analysis methods for PEMFC, this study could enhance understanding and provide valuable guidance for PEMFC performance variation laws at high operating temperatures.

2024-07-30