Synthesis of SOFC Materials by Ultrasonic spray Pyrolysis
Synthesis of Porous Particles of SOFC Positive and Negative Materials by Ultrasonic spray Pyrolysis.
Are you still troubled by the catalytic effect in industrial production? Today, we will introduce you to the ultrasonic spray pyrolysis technology to easily prepare catalyst powder!
Ultrasonic spray pyrolysis technology is a kind of micro powder preparation technology, which plays an important role in industrial production with its unique advantages. It uses solution as the precursor and uniformly atomizes it into micro or nano sized micro mist through ultrasonic atomization technology. These micro mist are then introduced into a high-temperature environment for thermal cracking or instant solvent evaporation, resulting in fine powders. Compared with the traditional wet chemical method, the ultrasonic spray pyrolysis technology avoids the drying and long-term calcination process. At the same time, because there is no subsequent washing and grinding steps, the powder obtained has good dispersion performance and controllable particle size. More importantly, the raw materials of this technology are mixed in a solution state to ensure uniform distribution of components, making it particularly suitable for the preparation of multi-component composite powders. For example, in the preparation of solid oxide fuel cells, ultrasonic spray pyrolysis can be used to synthesize porous particles of positive and negative electrode materials. These porous particles not only have excellent catalytic performance, but also improve the efficiency and stability of the battery.
Ultrasonic spray pyrolysis technology has brought revolutionary changes to the catalysis in industrial production. If you are interested in this technology or want to learn more about catalyst powder preparation, come and follow the blogger!
About Cheersonic
Cheersonic is the leading developer and manufacturer of ultrasonic coating systems for applying precise, thin film coatings to protect, strengthen or smooth surfaces on parts and components for the microelectronics/electronics, alternative energy, medical and industrial markets, including specialized glass applications in construction and automotive.
Our coating solutions are environmentally-friendly, efficient and highly reliable, and enable dramatic reductions in overspray, savings in raw material, water and energy usage and provide improved process repeatability, transfer efficiency, high uniformity and reduced emissions.
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