Biopharmaceutical assembly line device
A biopharmaceutical and assembly line technology, applied in solid solvent extraction, chemical instruments and methods, solvent extraction, etc., can solve problems such as inability to extract components
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specific Embodiment approach 1
[0030] Combine below Figure 1-9 To illustrate this embodiment, the present invention relates to the field of biopharmaceuticals, more specifically, a biopharmaceutical assembly line device, including a round box 1, an oil cylinder I101, a support 102, a filter plate 2, an annular rib 201, a stirring rod 202, and a stirring shaft 203, motor I204, top bar 205 and vertical slide bar 206, the present invention can extract the composition in the plant.
[0031] The rear side of the round box 1 is fixedly connected with an oil cylinder I101, the upper rear side of the round box 1 is fixedly connected with a support 102, the filter plate 2 is vertically slidably connected in the round box 1, and the upper edge of the filter plate 2 is provided with Annular edge 201, the upper side of filter plate 2 is fixedly connected with vertical slide bar 206, and vertical slide bar 206 is vertically slidably connected on support 102, and the upper end of vertical slide bar 206 is fixedly connec...
specific Embodiment approach 2
[0033] Combine below Figure 1-9 To illustrate the present embodiment, the biopharmaceutical assembly line device also includes a discharge pipe 106 and a heating wire 1107. The heating wire 1107 is arranged on the lower side of the round box 1, and the discharge pipe 106 is arranged on the lower side of the round box 1. The discharge pipe 106 is provided with a valve. The heating wire I107 heats the deionized water and the plants in the round box 1, and then the deionized water with plant components flows out through the discharge pipe 106.
specific Embodiment approach 3
[0035] Combine below Figure 1-9To illustrate this embodiment, the biopharmaceutical assembly line device also includes a support rod 105, a tank box 3 and a side shaft 304, the left and right ends of the lower side of the round box 1 are fixedly connected with the support rod 105, and the left and right sides of the middle part of the tank box 3 Both are fixedly connected with side shafts 304 , and the two side shafts 304 are respectively rotatably connected to the upper parts of the two support rods 105 , and the tank box 3 is located below the discharge pipe 106 . After the deionized water with plant components flows out through the discharge pipe 106, it falls on the tank box 3, and the tank box 3 can swing back and forth on the upper parts of the two support rods 105 through the two side shafts 304, and then drive the water with plant components. The deionized water flows back and forth in the tank box 3.
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