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Catalysis, Promoter & Poison - Chemical Kinetics Video Lecture | Chemistry for GRE Paper II

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FAQs on Catalysis, Promoter & Poison - Chemical Kinetics Video Lecture - Chemistry for GRE Paper II

1. What is catalysis in chemical kinetics?
Ans. Catalysis in chemical kinetics refers to the process by which the rate of a chemical reaction is increased with the help of a substance called a catalyst. The catalyst facilitates the reaction by lowering the activation energy required for the reaction to occur. It does not undergo any permanent change during the reaction and can be used repeatedly.
2. What is the role of a promoter in catalysis?
Ans. A promoter in catalysis is a substance that enhances the activity of a catalyst in a chemical reaction. It works by increasing the surface area of the catalyst or by modifying its electronic properties, leading to improved catalytic activity. Promoters can enhance the selectivity, efficiency, and stability of a catalyst, thereby promoting the desired reaction.
3. How does a poison affect catalysis?
Ans. In the context of catalysis, a poison refers to a substance that inhibits or deactivates the activity of a catalyst. It can bind to the active sites of the catalyst, blocking the reactant molecules from interacting with the catalyst's surface. This prevents the catalytic reaction from occurring, reducing or completely stopping the reaction rate.
4. What are the different types of catalysis?
Ans. There are three main types of catalysis: homogeneous catalysis, heterogeneous catalysis, and enzymatic catalysis. - Homogeneous catalysis involves a catalyst and reactants in the same phase, typically a liquid or gas phase. - Heterogeneous catalysis occurs when the catalyst and reactants are in different phases, such as a solid catalyst and gaseous reactants. - Enzymatic catalysis involves the use of biological catalysts called enzymes, which are typically proteins that facilitate specific biochemical reactions in living organisms.
5. How does catalysis impact industrial processes?
Ans. Catalysis plays a crucial role in various industrial processes. It allows for the production of desired products with higher efficiency and selectivity, reducing energy consumption and waste generation. Catalysis is widely used in the production of fuels, pharmaceuticals, polymers, and chemicals. It enables the transformation of raw materials into valuable products and helps in controlling reaction conditions, optimizing reaction rates, and improving the overall sustainability of industrial processes.
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