Recently, the desktop CO₂ electrolysis test system independently developed by Sunshine Green Hydrogen successfully completed the entire delivery process, covering equipment delivery, on-site installation and commissioning, and final acceptance. All performance parameters of the entire system met design standards, and it has now been officially handed over to the client for routine scientific research experiments.
The successful implementation of this project indicates that Sunshine Green Hydrogen's productisation and standardised manufacturing capabilities in the field of CO₂ electrochemical conversion test equipment have been fully validated by the market, providing a one-stop solution for CO₂ electrolysis experiments that is stable in performance, efficient in operation, and fully localised for universities, research institutions, and internal R&D departments of enterprises.
Focusing on key research needs to address industry equipment pain points
Against the backdrop of the advancing "dual carbon" goals, CO₂ electrochemical reduction technology is regarded as one of the key technological pathways for achieving carbon emission reduction and carbon resource utilisation due to its outstanding advantages such as clean and low-carbon nature, high conversion efficiency, and recyclable processes.
However, the R&D of advanced technologies relies on high-precision experimental test equipment. Whether it is the development of new-type electrocatalytic materials, optimisation of electrolysis process parameters, exploration and validation of reaction mechanisms, or process finalisation in the industrialisation stage, all depend on reliable basic hardware platforms. For a long time, traditional test equipment on the market has generally suffered from shortcomings such as low system integration, insufficient operational stability, complex and cumbersome operating procedures, and poor repeatability of experimental data, which have to some extent constrained R&D efficiency and the accuracy of experimental results.
To address these common industry pain points, Sunshine Green Hydrogen's desktop CO₂ electrolysis test system highly integrates modules such as gas path control, liquid path circulation, electrical regulation, electrochemical testing, and data acquisition into one unit, covering the full-process needs of CO₂ electrocatalytic electrolysis experiments and widely applicable to diverse R&D scenarios including rapid screening of catalytic materials, comprehensive evaluation of electrode performance, overall performance testing of electrolytic cells, and optimisation of process conditions.
Integrated compact design for comprehensive improvement of experimental efficiency
The delivered equipment adopts a compact desktop integrated architecture, with a reasonable and neat overall layout and an intuitive and concise operation interface. Researchers can quickly start experiments without complex system setup, making it particularly suitable for routine, high-frequency R&D testing in laboratory environments.
Functionally, the system can stably achieve continuous CO₂ gas supply, electrolyte circulation, precise constant control of reaction temperature and pressure, high-precision electrochemical parameter testing, and real-time synchronous recording of experimental data. The equipment supports parallel acquisition of core experimental data under multiple operating conditions and parameter sets, enabling accurate calculation of key indicators such as current efficiency, target product selectivity, and system energy consumption, providing researchers with high-precision, traceable, and reproducible experimental data assurance.
Before delivery, the equipment underwent multiple rounds of rigorous performance testing, simulated operating condition runs, and long-duration stability verification. The entire system runs smoothly with strong resistance to external interference, effectively avoiding issues such as parameter drift, data deviation, and frequent faults that traditional equipment is prone to during long-term continuous operation.
Full-process closed-loop delivery with comprehensive technical service support
From technical solution communication in the early stage of the project, customisation of equipment, quality inspection before delivery, to on-site installation and positioning, pipeline connection and commissioning, overall system integration and commissioning, and operator training, the Sunshine Green Hydrogen technical team participated throughout the entire process, strictly controlling each delivery period in accordance with project management standards.
During the acceptance phase, technical personnel conducted systematic hands-on demonstrations and training on equipment operation logic, parameter configuration methods, standard experimental operation procedures, data export and analysis, daily maintenance, and safety operation specifications, helping the client's R&D team quickly master the equipment usage and ensuring that the equipment could be efficiently put into scientific research work once in place.
The client highly evaluated the overall performance, operational stability, test data accuracy, and supporting technical services of the delivered equipment, and the project was finally successfully accepted.
Continuous technological iteration to empower low-carbon industry upgrading
The successful delivery and acceptance of the desktop CO₂ electrolysis test system is another substantial achievement of Sunshine Green Hydrogen in the field of electrochemical low-carbon equipment. Looking ahead, the company will continue to promote iterative optimisation of product performance, continuously launch localised professional test equipment and system solutions with high stability and high precision, deeply empower industry-university-research collaborative innovation, help more low-carbon technologies break through laboratory barriers and move towards industrial application, and provide solid technical equipment support for low-carbon transformation in the industrial sector and the development of a green circular economy.
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