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Please hide the reply. If you do not hide it, you will not be graded in principle. Specific hiding methods: http://bbs.hcbbs.com/viewthread.php?tid=492556&highlight=%D2%FE%B2%D8 Edited posts are not graded. (The title of this issue is taken from page 61 of "Technical Worker Job Training Question Bank - Soda Ash Production Operator". The electronic version of the book is available for download in the soda ash information sharing area. http://bbs.hcbbs.com/thread-13140-1-2.html ) Fill in the blanks 1. The jet ammonia absorber is composed of ( ), ( ), ( ) and ( ) and other components. 2. The production capacity of the jet ammonia absorber is directly proportional to the nozzle ( ) and the mother liquor ( ). 3. The settling speed is ( ) with the viscosity of the liquid, and the viscosity generally increases ( ) with the increase of temperature. 4. The carbonation tower can be roughly divided into three sections ; ( ), ( ), ( ).
This post was last edited by adsl121 on 2009-10-17 01:15 1. The jet ammonia absorber is composed of (shrink tube), (nozzle), (suction chamber) and (diffusion tube). 2. The production capacity of the jet ammonia absorber is directly proportional to the nozzle (cross-sectional area) and the mother liquor (flow rate). 3. The settling speed is (inversely proportional to) the viscosity of the liquid, and the viscosity generally (decreases) as the temperature increases. 4. The carbonation tower can be roughly divided into three sections ; (Absorption section), (Generation section), (Cooling section).
1. Shrink tube, nozzle, suction chamber, diffusion tube. 2. Cross-sectional area, flow rate 3. Inverse ratio, reduction 4. Absorption section, generation section, cooling section
1. Shrink tube, nozzle, suction chamber, diffuser tube 2. Cross-sectional area, flow rate 3. Inverse ratio, reduction 4. Absorption section, generation section, cooling section
1. Shrink tube, nozzle, suction chamber, diffusion tube 2. Cross-sectional area, flow rate 3. Inverse ratio, reduction 4. Absorption section, generation section, cooling section
1. The jet ammonia absorber consists of (shrink tube), (nozzle), (suction chamber) and (diffusion tube) and other components. 2. The production capacity of the jet ammonia absorber is directly proportional to the nozzle (cross-sectional area) and the mother liquor (flow rate). 3. The settling speed is (inversely proportional to) the viscosity of the liquid, and the viscosity generally (decreases) as the temperature increases. 4. The carbonation tower can be roughly divided into three sections ; (Absorption section), (Generation section), (Cooling section).
1. Shrinking tube, nozzle, suction chamber, diffusion tube 2. Cross-sectional area, flow rate 3. Inverse ratio, reduction 4. Absorption section, generation section, cooling section
1. Shrink tube, nozzle, suction chamber, diffusion tube 2. Cross-sectional area, flow rate 3. Inverse ratio, reduction 4. Absorption section, generation section, cooling section
1. Shrink tube; nozzle ; suction chamber ; Diffusion tube 2. Cross-sectional area ; Flow rate 3, inverse ratio ; Reduce 4. Absorption section ; generate segment ; cooling section
1. The jet ammonia absorber consists of (shrink tube), (nozzle), (suction chamber) and (diffusion tube) and other components. 2. The production capacity of the jet ammonia absorber is directly proportional to the nozzle (cross-sectional area) and the mother liquor (flow rate). 3. The settling speed is (inversely proportional to) the viscosity of the liquid, and the viscosity generally (decreases) as the temperature increases. 4. The carbonation tower can be roughly divided into three sections ; (Absorption section), (Generation section), (Cooling section).
1. Shrink tube nozzle, suction chamber diffuser tube 2. Cross-sectional area flow rate 3. Inversely proportional reduction, 4. Absorption section, generation section, cooling section