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Question 21: When operating with one or more catalyst coolers on a regenerator, what control philosophy do you employ (e.g., constant heat duty, constant regenerator temperature, etc.)? What are the advantages and

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A catalyst cooler is basically a vertical shell-andtube heat exchanger attached to the regenerator. The cooler extracts high quality heat from the catalyst in the regenerator to produce high pressure steam.

Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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Question 21: When operating with one or more catalyst coolers on a  regenerator, what control philosophy do you employ (e.g., constant heat  duty, constant regenerator temperature, etc.)? What are the advantages and

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