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CN-224227005-U - Photosynthetic bacteria dashes material and inoculation device

CN224227005UCN 224227005 UCN224227005 UCN 224227005UCN-224227005-U

Abstract

The utility model discloses a photosynthetic bacteria punching and inoculating device, which comprises a barrel body, wherein a cover plate is arranged at the top of the barrel body, a punching hopper is arranged at the center of the cover plate, a plurality of hoppers are arranged at the outer side of the cover plate, a feed inlet is arranged at the bottom of each hopper, a discharge outlet is arranged at the bottom of the barrel body, the discharge outlet is connected with a discharge pipe, the discharge pipe is connected with a three-way joint, the three-way joint is connected with a feed pipe, the feed pipe is connected with a water pump, and a water inlet pipe is arranged above the punching hopper. The photosynthetic bacteria culture medium is placed in the material flushing hopper, the photosynthetic bacteria culture medium is dissolved in the barrel body by using high-pressure water, the discharge port is connected with the pump machine to pump the photosynthetic bacteria culture medium into a larger 5-ton stirring tank barrel, then the bottle filled with photosynthetic bacteria is placed in the hopper, the photosynthetic bacteria is poured into the hopper, and enters the barrel body from the feed port of the hopper, and the discharge port is connected with the pump machine to pump the photosynthetic bacteria into the larger 5-ton stirring tank barrel.

Inventors

  • XIAO YUNTAO

Assignees

  • 与光同行生物科技(阳江)有限公司

Dates

Publication Date
20260512
Application Date
20250513

Claims (10)

  1. 1. The photosynthetic bacteria flushing and inoculating device is characterized by comprising a barrel body, wherein a cover plate is arranged at the top of the barrel body, a flushing hopper is arranged in the center of the cover plate, a plurality of hoppers are arranged on the outer side of the cover plate, a feed inlet is arranged at the bottom of each hopper, and a discharge outlet is arranged at the bottom of the barrel body.
  2. 2. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein the hoppers are distributed in a circular array.
  3. 3. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein the hopper is arranged in a funnel shape.
  4. 4. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein a plurality of supporting feet are arranged at the bottom of the barrel body.
  5. 5. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein the discharging hole is connected with a discharging pipe.
  6. 6. The photosynthetic bacteria flushing and inoculating device of claim 5, wherein the discharging pipe is connected with a three-way joint, the three-way joint is connected with a feeding pipe, and the feeding pipe is connected with a water pump.
  7. 7. The photosynthetic bacteria flushing and inoculating device of claim 6, wherein the three-way joint is connected with an emptying pipe, and the emptying pipe is provided with a first switch valve.
  8. 8. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein a water inlet pipe is arranged above the flushing hopper.
  9. 9. The photosynthetic bacteria flushing and inoculating device of claim 8, wherein the water inlet pipe is provided with a second switch valve.
  10. 10. The photosynthetic bacteria flushing and inoculating device of claim 1, wherein the bottom of the barrel body is arranged in a circular arc shape.

Description

Photosynthetic bacteria dashes material and inoculation device Technical Field The utility model relates to the technical field of photosynthetic bacteria production, in particular to a photosynthetic bacteria punching and inoculating device. Background Photosynthetic bacteria, which are the earliest organisms on the earth and commonly exist in nature and have an original light energy synthesis system, are the general name of bacteria which do not carry out anaerobic photosynthesis under anaerobic conditions, are gram-negative bacteria without spore forming capability, and are microorganisms which take light as energy sources and can carry out photosynthesis under anaerobic illumination or aerobic darkness by taking organic matters, sulfides, ammonia and the like in nature as hydrogen donors and carbon sources. In the process of photosynthetic bacteria flushing and inoculation, water is needed to flush the photosynthetic bacteria culture medium, the photosynthetic bacteria culture medium is scattered so as to facilitate subsequent inoculation of photosynthetic bacteria, but the existing photosynthetic bacteria flushing and inoculation generally uses a barrel to contain the photosynthetic bacteria culture medium to scatter the photosynthetic bacteria culture medium, the photosynthetic bacteria culture medium is inconvenient to add, and uneven to scatter, the photosynthetic bacteria flushing efficiency is low, meanwhile, the pouring of the photosynthetic bacteria is inconvenient, the use effect is poor, and batch production is not facilitated. Accordingly, there is a need for improvements in the art to avoid the disadvantages of the prior art. Disclosure of utility model The utility model aims to overcome the defects and shortcomings in the prior art and provides a photosynthetic bacteria punching and inoculating device which is simple in structure and uniform in scattering. The utility model is realized by the following technical scheme: The utility model provides a photosynthetic bacteria dashes material and inoculation device, includes the staving, the top of staving is equipped with a apron, a material hopper is installed to the center of apron, a plurality of hoppers are installed in the outside of apron, the bottom of hopper is equipped with the feed inlet, the bottom of staving is equipped with a discharge gate. Further, the hoppers are distributed in a circular array. Further, the hopper is arranged in a funnel shape. Further, a plurality of supporting feet are arranged at the bottom of the barrel body. Further, the discharge hole is connected with a discharge pipe. Further, the discharging pipe is connected with a three-way joint, the three-way joint is connected with a feeding pipe, and the feeding pipe is connected with a water pump. Further, the three-way joint is connected with an emptying pipe, and the emptying pipe is provided with a first switch valve. Further, a water inlet pipe is arranged above the material flushing hopper. Further, the water inlet pipe is provided with a second switch valve. Further, the bottom of the barrel body is in an arc shape. Compared with the prior art, the photosynthetic bacteria culture medium (nutrient) is placed in the flushing hopper when the photosynthetic bacteria culture medium is used, the photosynthetic bacteria culture medium is dissolved in the barrel body by using high-pressure water, the discharge port is connected with the pump to pump the photosynthetic bacteria culture medium into a larger 5-ton stirring tank barrel, the flushing hopper is favorable for uniformly scattering the photosynthetic bacteria culture medium, the flushing efficiency is improved, then a bottle filled with photosynthetic bacteria is placed in the hopper, the photosynthetic bacteria are poured into the hopper, the photosynthetic bacteria enter the barrel body from the feed inlet of the hopper, and the photosynthetic bacteria are pumped into the larger 5-ton stirring tank barrel by the discharge port connection pump. Drawings In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art. FIG. 1 is a schematic diagram of a first directional structure of a photosynthetic bacteria flushing and inoculation device of the present utility model; FIG. 2 is a schematic diagram showing the structure of the photosynthetic bacteria flushing and inoculation device in the second direction. The drawing shows that the device comprises a 1-barrel body, a 2-cover plate, a 3-material flushing hopper, a 4-hopper, a 5-material inlet, a 6-material outlet, 7-supporting feet, 8-material discharging pipe