Moisture exhausting system for cut tobacco production
A technology for making silk and removing moisture and pipes, applied in the fields of food science, application, tobacco, etc., can solve the problems of increased alarm frequency, insufficient cleaning of pipes, and inability to meet fast cleaning, and achieve the effect of convenient maintenance.
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Embodiment 1
[0027] Such as figure 1 As shown, a moisture removal system for silk production includes a moisture removal pipeline 1, a static pressure tank 2, an odor treatment device 3 and a sedimentation separation device 4. The moisture removal pipeline 1 includes a second pipeline 11, a first pipeline 12 and an exhaust pipeline 13, wherein the first pipeline 12 is a vertical pipeline, the second pipeline 11 is a horizontal pipeline, and the silk production equipment in the factory building (omitted in the figure) is connected with the second pipeline 11 on the roof of the factory building through the first pipeline 12 , and then the second pipeline 11 communicates with the settling separation device 4 , the static pressure tank 2 and the odor treatment equipment 3 in sequence, and the odor treatment equipment 3 communicates with the exhaust pipeline 13 .
[0028] Such as figure 2 As shown, the settling and separating device 4 includes a settling box 41 shaped as a cuboid, and the set...
Embodiment 2~3
[0034] The difference from Example 1 is that the sedimentation separation device in the silk making moisture removal system in Embodiments 2-3 is replaced by a centrifugal separation device or an interception separation device in the prior art. The centrifugal separation device draws on the principle of centrifuge precipitated liquid suspension to separate the smoke and sand from the odor gas; while the interception separation device uses the principle of the Y-type filter to retain the smoke and sand impurities with the filter element to achieve the purpose of separation. Other components And connection relation is identical with embodiment 1, and its effect is as shown in table 1.
[0035] Table 1
[0036] Example 2 Example 3 separation device centrifugal separation device interception separation device Soot deposit cleaning rate 100% 75% wind pressure loss 6% 12% Washing cycle 7 days 4 days
[0037] It can be seen from the...
Embodiment 4~5
[0039] The difference from Example 1 is that the included angle between the curved deflector and the top of the settling box in Examples 4-5, and other components and connections are the same as those in Example 1, and the soot removal effect is shown in Table 2 .
[0040] Table 2
[0041] The included angle between the curved deflector and the top of the settling box The average concentration of soot and dust particles at the gas outlet Example 4 73.6° 16.7mg / m3 Example 5 109.6° 17.3mg / m3
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