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Last edited by Small and on 2018-7-22 16:15. Summary: The thermocouple in the gasification furnace is damaged; what parameters can be used to ensure safe operation? 1. Estimate the operating temperature of the gasification furnace based on the methane content in the gases exiting the furnace. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions inside the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the amount of slag discharged.
1. Predict the operating temperature of the gasifier by analyzing the methane content in the gas exiting the gasifier. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions inside the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the amount of slag discharged.
1. Predict the operating temperature of the gasifier by analyzing the methane content in the gas exiting the gasifier. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions inside the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the amount of slag discharged.
If the thermocouple in the gasification furnace is damaged, the following parameters can be used to ensure safe operation: 1. The operating temperature of the gasification furnace can be estimated by examining the methane content in the gases exiting from the furnace. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions within the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the slag discharge volume.
1. Predict the operating temperature of the gasifier by analyzing the methane content in the gas exiting the gasifier. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions within the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the slag discharge volume.
The operating temperature of the gasifier can be predicted based on the methane content in the gas components exiting the gasifier. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions inside the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the amount of slag discharged.
If the thermocouple in the gasification furnace is damaged, the following parameters can be used to ensure safe operation: 1. The operating temperature of the gasification furnace can be estimated by examining the methane content in the gases exiting from the furnace. 2. Changes in carbon monoxide, carbon dioxide, and hydrogen are used to determine the reaction conditions within the vaporization furnace. 3. Monitor the pressure difference of the gasification furnace. 4. Gasifier outlet temperature and tray temperature. 5. Based on the coal quality analysis data, the reaction temperature of the gasification furnace is determined by observing the shape of the slag and the slag discharge volume.