1.Influence on catalytic cracking reactions
Reactivity
Balancers with smaller particle sizes have larger specific surface areas. In a catalytic cracking reaction, this means there are more active sites for reactant molecules to adsorb. For example, in the catalytic cracking process of petroleum, the raw oil molecules are better able to contact the acidic active centers on the surface of the small particle size balance agent, thereby making the cracking reaction easier to occur and improving the reaction activity.
2. Influence on the adsorption separation process
Adsorption efficiency
Due to its large specific surface area, the small particle size balance agent can adsorb more target substances during the adsorption and separation process. For example, in some gas adsorption separation applications, small particle size balance agents can quickly adsorb harmful gas components, such as adsorbing pollutants such as sulfur dioxide in waste gas treatment. Its larger specific surface area can adsorb more pollutants per unit time. Improve adsorption efficiency.
3. Influence on the heat transfer process
Heat transfer rate
Due to the large specific surface area, the small particle size balance agent has a fast heat transfer rate when exchanging heat with the surrounding medium. For example, in some chemical reactors, small particle size balance agents as heat carriers can quickly absorb or release heat, helping to control the reaction temperature.
In summary, the particle size of the balancing agent has a particularly important impact on its application. This time, Winner2006A is recommended to measure the balancer particle size for customers.
Measuring instrument information is as follows:
The video of measuring nanoparticles is as follows:
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