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The last edit to this post was made by qy576100527 on 2017-7-12 at 22:24. How many steps are there in the catalytic reaction of methanol? Answer: The synthesis of methanol is a gas-solid phase catalytic reaction that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.
1. CO and H2 diffuse to the catalyst surface; 2. CO and H2 are adsorbed on the catalyst surface ; 3. CO and H2 undergo chemical reactions on the catalyst surface ; 4. Desorption of CH3OH from the catalyst surface ; 5. CH3OH diffuses into the gas phase.
The methanol synthesis reaction is a gas-solid phase catalytic process that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.
1. CO and H2 diffuse to the catalyst surface; 2. CO and H2 are adsorbed on the catalyst surface ; 3. CO and H2 undergo chemical reactions on the catalyst surface ; 4. Desorption of CH3OH from the catalyst surface ; 5. CH3OH diffuses into the gas phase.
1. CO and H2 diffuse to the catalyst surface. 2. CO and H2 are adsorbed on the catalyst surface. 3. CO and H2 react on the catalyst surface. 4. Methanol desorbs from the catalyst surface. 5. Methanol diffuses into the gas phase
1. CO and H2 diffuse to the catalyst surface. 2. CO and H2 are adsorbed on the catalyst surface. 3. CO and H2 react on the catalyst surface. 4. Methanol desorbs from the catalyst surface. 5. Methanol diffuses into the gas phase
The methanol synthesis reaction is a gas-solid phase catalytic process that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.
1. CO and H2 diffuse to the catalyst surface; 2. CO and H2 are adsorbed on the catalyst surface ; 3. CO and H2 undergo chemical reactions on the catalyst surface ; 4. Desorption of CH3OH from the catalyst surface ; 5. CH3OH diffuses into the gas phase.
The methanol synthesis reaction is a gas-solid phase catalytic process that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.
Answer: The methanol synthesis reaction is a gas-solid phase catalytic process that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.
The methanol synthesis reaction is a gas-solid phase catalytic process that consists of five steps: (1) CO and H2 diffuse to the surface of the catalyst; (2) CO and H2 are adsorbed on the catalyst surface ; (3) CO and H2 undergo chemical reactions on the catalyst surface ; (4) Desorption of CH3OH from the catalyst surface ; (5) CH3OH diffuses into the gas phase.