Novel bacteria inoculating tool
A bacterial inoculation and tool technology, applied in the field of microbial culture, can solve problems such as uneven bacterial inoculation, bacterial cross-contamination, and contamination of the experimental environment, and achieve the effects of easy acquisition, low production cost, and good safety.
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Embodiment 1
[0043] Such as figure 1 As shown, a novel bacterial inoculation tool includes a pipette 1 and an inoculation hose 4. The inside of the pipette 1 is provided with a piston 2, and the end of the pipette 1 is provided with a suction nozzle 3. The suction nozzle 3 is connected to the inoculation soft tube. The pipe 4 is connected, and the pipette 1 is also provided with a sampling needle 6. One end of the sampling needle 6 is connected to the piston 2, and the other end passes through the suction nozzle 3 and is arranged in the flexible pipe 4. The piston 2 A handle 5 is also provided on the top, and the handle 5 is arranged on the outside of the pipette 1 .
[0044] Wherein the outer layer of the pipette 1 is coated with a wear-resistant anti-skid layer, comprising the following components: by weight components,
[0045] Low-density polyethylene: 60 parts
[0047] Aluminum Chlorohydrate Glycol: 2 parts
[0048] Sodium oleate: 1 part
[0049] P...
Embodiment 2
[0070] Such as figure 1 As shown, a novel bacterial inoculation tool includes a pipette 1 and an inoculation hose 4. The inside of the pipette 1 is provided with a piston 2, and the end of the pipette 1 is provided with a suction nozzle 3. The suction nozzle 3 is connected to the inoculation soft tube. The pipe 4 is connected, and the pipette 1 is also provided with a sampling needle 6. One end of the sampling needle 6 is connected to the piston 2, and the other end passes through the suction nozzle 3 and is arranged in the flexible pipe 4. The piston 2 A handle 5 is also provided on the top, and the handle 5 is arranged on the outside of the pipette 1 .
[0071] Wherein the outer layer of the pipette 1 is coated with a wear-resistant anti-skid layer, comprising the following components: by weight components,
[0072] Low-density polyethylene: 68 parts
[0073] Sodium sulfate: 2 parts
[0074] Aluminum Chlorohydrate Diol: 2-3 parts
[0075] Sodium oleate: 2 parts
[0076]...
Embodiment 3
[0097] Such as figure 1 As shown, a novel bacterial inoculation tool includes a pipette 1 and an inoculation hose 4. The inside of the pipette 1 is provided with a piston 2, and the end of the pipette 1 is provided with a suction nozzle 3. The suction nozzle 3 is connected to the inoculation soft tube. The pipe 4 is connected, and the pipette 1 is also provided with a sampling needle 6, one end of the sampling needle 6 is connected to the piston 2, and the other end passes through the suction nozzle 3 and is arranged in the flexible pipe 4, and the piston 2 A handle 5 is also provided on the top, and the handle 5 is arranged on the outside of the pipette 1 .
[0098] Wherein the outer layer of the pipette 1 is coated with a wear-resistant anti-skid layer, comprising the following components: by weight components,
[0099] Low-density polyethylene: 80 parts
[0100] Sodium sulfate: 2 parts
[0101] Aluminum Chlorohydrate Glycol: 3 parts
[0102] Sodium oleate: 4 parts
[0...
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