Floating and shaking constant temperature anti-pollution cell thawing cup
An anti-pollution, cell-based technology, applied in biomass post-processing, specific-purpose bioreactors/fermenters, biochemical equipment and methods, etc., can solve the problems of delayed thawing time, fast cooling of the upper water temperature, and inability to take out the grate, etc. problem, to achieve the effect of increasing volatility, better melting, increasing shaking amplitude and shaking frequency
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Embodiment 1
[0018] Example 1: A floating and oscillating constant temperature anti-pollution cell thawing cup, see figure 1 , the thawing cup includes a thawing cup body 1, a support cover 2, a freezing tube 4, a handle 5 and other components. Wherein, the support cover 2 is provided with a through hole for arranging the freezing tube 4, and the support cover 2 can be matched and set on the upper end of the freezing cup.
[0019] A layer of floating body 3 is compounded at the bottom of the support cover 2, which can sufficiently float the support cover 2 and all cryotubes 4.
[0020] Mounting holes are arranged at the bottom of the thawing cup body 1 and a stirring motor 6 is sealed and installed in the mounting hole. The rotating shaft of the stirring motor 6 extends into the inside of the thawing cup body 1 and a stirring blade 7 is installed.
[0021] When the motor stirs, the warm water 8 in the thawing cup can be circulated to solve the problem of slow heat transfer in the thawing ...
Embodiment 2
[0023] Embodiment 2: On the basis of the embodiment, the thawing cup is provided with a closed double-layer structure, see figure 2 , the side wall of the thawing cup body 1 is designed to contain a hollow interlayer 10 .
Embodiment 3
[0024] Embodiment 3: On the basis of Embodiment 1, a counterweight plate 11 is further provided at the bottom of the support cover 2 . like image 3 As shown, the surface of the counterweight plate 11 is provided with continuously or discontinuously or circuitously distributed airtight guide channels 13 , and grooves 12 , and the grooves 12 are spaced apart from the guide channels. A counterweight fluid 14 or steel balls are poured into the diversion channel 13 . The counterweight liquid 14 that adopts can be mercury.
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