Brand:ABB
Product ID:3BHL000734P0003
Place of Origin:The United States
Warranty: 365 days
Goods status: new/used
Mail: 3598571032@qq.com
Phone/Wechat/Whatsapp:+86 15339539190
Product details
Brand: ABB
Model: 3BHL000734P0003
product description
3BHL000734P0003 is REACTOR 0,0046MH, 806A
The reactor is the equipment to realize the reaction process, which is widely used in chemical industry, oil refining, metallurgy, light industry and other industrial sectors.
Chemical reaction engineering takes the reaction process in industrial reactors as the research object, and establishes the reactor mathematical model by using mathematical model method to study the influence of the reactor transfer process on the chemical reaction, as well as the dynamic characteristics of the reactor and the sensitivity of the reactor parameters, so as to realize the reliable design and operation control of industrial reactors.
It is used to realize liquid-phase single-phase reaction process and liquid-liquid, gas-liquid, liquid-solid, gas-liquid-solid and other multi-phase reaction process. There is a permanent mixing (mechanical mixing, air mixing, etc.) device.
When the ratio of height to diameter is large, multiple mixing blades can be used. When the material needs to be heated or cooled during the reaction process, the jacket can be set at the reactor wall, or the replacement heat surface can be set in the device, or the heat can be exchanged by external circulation.
The application of the reactor began in ancient times, and the kiln for making pottery was a kind of primitive reactor. There are many types of reactors in modern industry, such as blast furnace and converter in metallurgical industry; Fermenters and various burners in bioengineering are all different forms of reactors.
Product Parameter
Model Number:3BHL000734P0003
Origin:USA
operating conditions
Mainly refers to the operating temperature and operating pressure of the reactor.
Temperature is a sensitive factor affecting the reaction process, and it is necessary to select the appropriate operating temperature or temperature sequence to make the reaction process proceed under optimal conditions.
For example, for reversible exothermic reactions, a high and then low temperature sequence should be used to take into account the reaction rate and the equilibrium conversion rate (see chemical equilibrium).
The reactor can be operated under atmospheric, pressurized or negative pressure (vacuum).
The pressurized reactor is mainly used for the reaction process involving gas, increasing the operating pressure is conducive to accelerating the gas phase reaction, and for the gas phase reversible reaction with a decrease in the total number of moles, it can improve the equilibrium conversion rate, such as ammonia synthesis and methanol synthesis.
Increasing the operating pressure can also increase the solubility of the gas in the liquid, so many gas-liquid phase reaction processes, gas-liquid-solid reaction processes using pressure operation to improve the reaction rate, such as p-xylene oxidation.
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