Solid-liquid separation bottle using dry ice breaking film
A solid-liquid separation and dry ice technology, applied in bottles, bottle/can parts, containers with multiple items, etc., can solve the problems of inability to meet customer needs, difficult technical productization, and troublesome operation, and achieve easy operation. , Avoid preservatives, prevent spoilage effect
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Embodiment 1
[0030] Such as figure 1 As shown, a solid-liquid separation bottle using dry ice to rupture the membrane in this embodiment includes a bottle body containing sterile water, a bottle cap 100, and a storage vial 300 containing a mixture 301 of solid nutrients and dry ice. One end of the storage vial 300 is separated by a sealing film 205 between the discharge port and the bottle body feed port 204 , and the other end is closed by an outwardly protruding elastic film 305 . There is a blister 302 wrapped in a plastic film in the storage vial 300, and the surrounding of the blister is filled with the mixture 301. A thimble 304 is fixedly connected to the inner center of the convex elastic membrane 305. After the convex elastic membrane 305 is pressed inward, the thimble will follow. The movement punctures the blister 302.
[0031] The solid nutrient is in the form of granules or powder, and the storage vial 300 is arranged under the bottle body, and the middle of the bottom of the...
Embodiment 2
[0039] This embodiment is to improve the blister in embodiment 1, as Figure 5 As shown, a high-pressure gas tube 302b is housed in the blister 302, and nitrogen dioxide or nitrogen gas is installed in the tube. Can come into contact with dry ice.
Embodiment 3
[0041] The structure of this embodiment is different from Embodiment 1 and 2 in that: as Image 6 As shown, the thimble 304 is a hollow needle with an open tip, and a side hole 304a communicating with the inside is provided on the side. There is no need to place a blister within the storage vial 300 .
[0042] The length of the thimble 304 is longer here, and its tip is close to the parafilm 205 when not in use. When the convex elastic membrane 305 is pressed, the tip of the hollow needle can poke into the sealing film 205, and the water in the bottle enters the thimble 304 from the tip, and then flows out through the side hole 304a to contact the dry ice, and then the dry ice expands and breaks through the sealing film 205 , to achieve the mixing of solid nutrients and water.
[0043] The inside of the storage vial 300 is under negative pressure, and after the sealing film 205 is pierced, it will automatically absorb water from the tip of the thimble 304 to enter.
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