
Custom Powder Development Capability
Our parent company SIZE Materials Co., Ltd. operates the Jiangxi Provincial Engineering & Technology Research Center for Multi-functional Zirconia Materials and an enterprise technical center.
Its laboratory is well-equipped with a comprehensive suite of analytical instruments, including SEM, XRF, ICP, TG, DIL,PSD and SAA.
The company conducts industry-university-research cooperation with Tsinghua University, Shanghai Institute of Ceramics (CAS), Institute of Applied Physics (CAS), China University of Mining and Technology, Fuzhou University and other research institutes.
It supports full-process R&D and pilot-to-mass production transformation, and provides customized electrolyte powder, electrode powder and coating powder for diverse applications.
Aqueous Tape Casting
Aqueous tape casting is an eco-friendly, mass-producible ceramic thin-film forming technology for SOFC electrolytes. It is mainly used to fabricate dense Yttria-Stabilized Zirconia (YSZ) electrolyte films with thickness ranging from 5 μm to 200 μm, meeting strict requirements on gas tightness and ionic conductivity for intermediate-temperature SOFC (600–850℃).
Eco-friendly & Safe:Zero VOC emissions, reduced safety risks, compliant with sustainable development standards.
Low Cost:Water serves as solvent without solvent recovery systems, greatly cutting production costs.
Process Compatibility:Compatible with multi-layer co-casting and co-sintering to fabricate integrated single-cell structures.
Superior Performance:Produces ultra-thin electrolyte sheets with density > 98%, uniform thickness and excellent batch consistency.
Wide Material Adaptability:Applicable to multiple SOFC electrolyte materials including YSZ, LSGM and GDC.
RSOC
RSOC is a high-temperature bidirectional energy conversion device. It seamlessly switches between SOFC power generation mode and SOEC hydrogen production mode on a single hardware platform. Operating at 600-850 ℃, the RSOC functions as a critical energy hub, linking power grids and hydrogen systems. Key applications include large-scale renewable energy storage, grid peak shaving, and multi-energy coupling systems.
Core Strengths
Industry-leading Energy Conversion Efficiency: The 60-70% power generation efficiency is achieved in SOFC mode, with overall CHP efficiency exceeding 90% being attained. In SOEC mode, power-to-hydrogen conversion efficiency of over 90% is realized.
Multi-functional & Highly Flexible: Power generation, hydrogen production, and energy storage are integrated into a single platform, through which system complexity and capital expenditure are reduced.
Broad Fuel Compatibility: In SOFC mode, fuels such as H₂, CO and CH₄ can be utilized. Co-electrolysis of H2O and CO2 for synthesis gas production is supported in SOEC mode.
Flexible Power Scaling: Covers kW-level distributed systems up to MW-scale power stations to fit diverse application scenarios.
Low-carbon & Easy System Integration: No noble metal catalysts required, delivering favorable material cost and low full-life carbon emissions. High-temperature waste heat can be coupled with industrial waste heat and solar thermal collection systems to boost overall energy efficiency.
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