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Purification Daily Question 2018-12-10

2018-12-10View Original

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Sources of cooling capacity for the low-temperature methanol washing unit: ( ), ( ), ( ). The cooling capacity of the 1500 unit comes from: (1) the cooling capacity provided by the evaporation of liquid ammonia, (2) the cooling capacity generated after the flash vaporization of CO2-enriched methanol, and (3) the cooling capacity produced by the water cooler.
Reply #22018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash distillation of CO2-enriched methanol (3) Condensate water produced by the water cooler
Reply #32018-12-10
The ammonia cooler provides cooling capacity, the water cooler provides cooling capacity, and the cooling capacity generated by the desorption and regeneration of methanol-rich liquid
Reply #42018-12-10
The ammonia cooler provides cooling capacity, the water cooler provides cooling capacity, and the cooling capacity generated by the desorption and regeneration of methanol-rich liquid
Reply #52018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash vaporization of CO2-enriched methanol (3) Cooling capacity generated by the water cooler.
Reply #62018-12-10
Sources of cooling capacity for the low-temperature methanol washing unit: (cooling capacity provided by liquid ammonia evaporation), (cooling capacity generated after the flash distillation of CO2-enriched methanol), (cooling capacity provided by water coolers).
Reply #72018-12-10
The cooling capacity provided by the evaporation of liquid ammonia, the cooling capacity generated after the flash distillation of CO2-rich methanol, and the cooling capacity produced by the water cooler
Reply #82018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash vaporization of CO2-enriched methanol (3) Cooling capacity generated by the water cooler.
Reply #92018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash vaporization of CO2-enriched methanol (3) Cooling capacity generated by the water cooler
Reply #102018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash vaporization of CO2-enriched methanol (3) Cooling capacity generated by the water cooler
Reply #112018-12-10
(1) Cooling capacity provided by liquid ammonia evaporation (2) Cooling capacity generated after the flash vaporization of CO2-enriched methanol (3) Cooling capacity generated by the water cooler

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