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This post was last edited by qy576100527 on 2017-7-18 at 23:10. To increase the popularity of this section, daily quizzes on equipment, processes, and safety are held; the motto of these quizzes is: “Knowledge is gained through accumulation.” I hope everyone will participate actively; by learning and making progress, they can also earn wealth. What are the factors that affect the efficiency of methanol separation? Answer: (1) The cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid. Participation: Prize 1 Wealth ; Correct answer: Reward of 5-10 wealth points ; Note: Questions for the same day are valid only on that day; this post is valid for 24 hours.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.
Cooling temperature, syngas pressure, separator level, separation efficiency, gas flow rate, etc
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.
1. The cooling temperature of methanol. 2. The pressure of the syngas. 3. The quality of the separator’s design and whether the internal components are properly structured. 4. An appropriate gas flow rate; generally, this is 1–1.5 m/s. 5. The liquid level in the separator.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.
1. The cooling temperature of methanol. 2. Pressure of the syngas. 3. The quality of the separator’s structure, as well as whether the internal components are properly designed. 4. Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. 5. Level of liquid in the separator
1. The cooling temperature of methanol. 2. Pressure of the syngas. 3. The quality of the separator’s structure, as well as whether the internal components are properly designed. 4. Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. 5. Level of liquid in the separator
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) Level of the separator liquid
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.
(1) Cooling temperature of methanol. (2) Pressure of the syngas. (3) The quality of the separator’s structure, and whether the internal components are properly designed. (4) Appropriate gas flow rate; generally, the gas flow rate is 1–1.5 m/s. (5) The level of the separator liquid.