Poria cocos strain activity detection device

By designing a Poria cocos strain viability detection device, which uses a support frame and heat preservation tank, indoor cultivation of Poria cocos strains is realized, solving the problem of uncontrollable outdoor cultivation environment and improving the accuracy of sclerotium yield measurement and the precision of Poria cocos strain viability detection.

CN223752791UActive Publication Date: 2026-01-02JINGZHOU KANGYUAN LINGYE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423217494.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-02
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

In the existing technology, the outdoor cultivation environment of Poria cocos strains is uncontrollable, which leads to deviations in the results of the sclerotium yield determination method and cannot guarantee the accuracy of the vitality of Poria cocos strains.

Method used

A device for detecting the viability of Poria cocos strains was designed. It uses a support frame and heat preservation tank inside the box to realize the indoor cultivation of Poria cocos strains. The device ensures the consistency of cultivation conditions by using partitions for grouping, heat preservation tanks to provide temperature, and water tanks and spray guns to supply water.

Benefits of technology

This method achieves consistency in the cultivation conditions of Poria cocos strains, and improves the accuracy of sclerotium yield measurement and the precision of Poria cocos strain viability detection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223752791U_ABST
    Figure CN223752791U_ABST
Patent Text Reader

Abstract

The utility model discloses a poria cocos strain activity detection device which is characterized in that a support frame for placing cultivation boxes is arranged in a box body, the support frame comprises a first support plate, a second support plate and a third support plate, and the first support plate, the second support plate and the third support plate are combined to form a plurality of placing holes for placing the cultivation boxes; the poria cocos strain activity detection device is used for cultivating poria cocos strains in the process of testing poria cocos strains by using a sclerotium yield measurement method, the poria cocos strain activity detection device is provided with a plurality of cultivation boxes, the cultivation boxes are arranged in the cultivation boxes, and the poria cocos strain activity detection device can be used for detecting the poria cocos strain activity of the poria cocos strains in the process of testing the poria cocos strains by using the sclerotium yield measurement method. The poria cocos cultivation box is used for indoor cultivation of poria cocos strains, the consistency of poria cocos strain cultivation conditions is kept, the multiple cultivation boxes can be partitioned through the partition plates, grouped cultivation of different batches and types of poria cocos strains is formed, and the applicability is good.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a poria cocos spawn detection technical field especially relates to a poria cocos spawn activity detection device. BACKGROUND

[0002] The activity detection of poria cocos spawn can be comprehensively evaluated by various methods, including mycelium growth rate determination method, CMC enzyme activity detection method, and sclerotium yield determination method. The sclerotium yield determination method is to cultivate poria cocos spawn by a certain cultivation method, harvest after a certain period of cultivation, and determine the weight of each sclerotium, taking the total weight of single sclerotium as the sclerotium yield. The higher the yield, the stronger the activity of the spawn. The sclerotium yield determination method is generally carried out outdoors. Due to the uncontrollable outdoor cultivation environment, the cultivation conditions of poria cocos spawn cannot be unified, resulting in deviation of the results. SUMMARY

[0003] The utility model relates to a poria cocos spawn activity detection device proposed under the condition that the sclerotium yield determination method in the prior art cannot control the outdoor cultivation environment of poria cocos spawn, which is used for indoor cultivation of poria cocos spawn, maintains the consistency of the cultivation conditions of multiple poria cocos spawns, and further ensures the accuracy of the determination structure.

[0004] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0005] A poria cocos spawn activity detection device comprises a box body, a support frame for placing a cultivation box is arranged in the box body, the support frame comprises a first support plate, a second support plate and a third support plate, the first support plate and the second support plate are arranged in parallel, a plurality of second support plates are arranged in parallel between the two first support plates, the third support plate is arranged perpendicularly and staggeredly with the second support plate, and the first support plate, the second support plate and the third support plate are combined to form a plurality of placing holes for placing the cultivation box. A heat preservation groove is arranged below the placing hole, and the cultivation box is placed in the placing hole and located in the heat preservation groove.

[0006] A first insertion groove is arranged on the second support plate, a second insertion groove is arranged on the third support plate, the extension directions of the first insertion groove and the second insertion groove are perpendicular, the first insertion groove and the second insertion groove are used for inserting a partition plate, the partition plate is used for isolating the cultivation boxes in the placing holes, and grouping of the cultivation boxes is formed.

[0007] Preferably, support strips are arranged on the two sides of the inner wall of the cultivation box, and the support strips are used for supporting the planting plate.

[0008] Preferably, side plates are arranged on the two sides of the cultivation box, the side plates are used for being placed on the first support plate, the second support plate or the third support plate when the cultivation box is placed in the placing hole, and the first support plate, the second support plate or the third support plate supports the cultivation box in the vertical direction.

[0009] Preferably, a handle is arranged on the side plate.

[0010] Preferably, an electric heating wire is arranged inside the heat preservation groove.

[0011] Preferably, the box body is provided with a plurality of illuminating lamps, the illuminating lamps are fixedly installed on the side wall of the box body, the illuminating lamps correspond to the number and positions of the placing holes, and the illuminating lamps are located above the placing holes.

[0012] Preferably, a water tank and a spray gun are arranged on one side of the box body, the water tank is provided with a water pump, a water outlet end of the water pump is communicated with a water inlet end of the spray gun, a water inlet end of the water pump is connected with a water inlet pipe, and the water inlet pipe extends to the bottom of the water tank.

[0013] Preferably, a placing table for placing the spray gun is arranged on the top of the water tank, a pipe joint is fixedly arranged on the placing table, the pipe joint is communicated with the water outlet end of the water pump through a water outlet pipe, and the water inlet end of the spray gun is communicated with the pipe joint through a hose.

[0014] The beneficial effects of the present application are as follows:

[0015] 1. The poria cocos strain activity detection device is provided with a plurality of cultivation boxes, is used for indoor cultivation of poria cocos strains, maintains consistency of cultivation conditions of poria cocos strains, and is good in applicability.

[0016] 2. The cultivation box of the poria cocos strain activity detection device is movably arranged, the cultivation box can be taken out from inside the cultivation box body, and the poria cocos strain is convenient for planting, harvesting and weighing.

[0017] 3. The poria cocos strain activity detection device is provided with a heat preservation groove below the placing hole for placing the cultivation box, the heat preservation groove provides suitable temperature around the cultivation box, and normal growth of the poria cocos strain is maintained.

[0018] 4. The poria cocos strain activity detection device is further provided with a water tank and a spray gun on one side of the cultivation box, and irrigation during cultivation is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structural schematic view of the poria cocos strain activity detection device;

[0020] Figure 2 It is a structural schematic view of the poria cocos strain activity detection device (with the cultivation box) from the top (without the cultivation box);

[0021] Figure 3 It is a structural schematic view of the cultivation box of the poria cocos strain activity detection device;

[0022] Figure 4 It is a structural schematic view of the poria cocos strain activity detection device (with the cultivation box).

[0023] Figure 5 Structure diagram of the front of the cultivation box mounted on the panus beijiangensis strain activity detection device.

[0024] In the figure: 1, box; 2, illuminating lamp; 3, heat preservation groove; 4, cultivation box; 5, partition; 6, water tank; 7, spray gun; 8, hose; 9, planting plate; 101, first support plate; 102, second support plate; 103, first slot; 104, third support plate; 105, second slot; 106, support rod; 107, placing hole; 31, electric heating wire; 41, side plate; 42, handle; 43, support strip; 61, water pump; 62, water outlet pipe; 63, pipe joint; 64, placing table; 65, water inlet pipe; 66, water inlet. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0026] Referring to Figure 1 and Figure 2 A panus beijiangensis strain activity detection device includes a box 1, and a support frame for placing a cultivation box 4 is arranged inside the box 1. The support frame includes a first support plate 101, a second support plate 102, and a third support plate 104. The first support plate 101 and the second support plate 102 are arranged in parallel, and a plurality of second support plates 102 are arranged in parallel between two first support plates 101. The two ends of the first support plate 101 and the second support plate 102 are fixedly connected to the inner wall of the box 1 by bolts. The third support plate 104 is arranged perpendicularly and staggeredly with the second support plate 102, and the end of the third support plate 104 is fixedly connected to the first support plate 101 or the second support plate 102 by a bolt. The first support plate 101, the second support plate 102, and the third support plate 104 are combined to form a plurality of placing holes 107, and the placing holes 107 are used for placing the cultivation box 4.

[0027] In the embodiment, a support rod 106 is arranged below the second support plate 102, the upper end of the support rod 106 is fixedly connected to the second support plate 102, the lower end of the support rod 106 is fixedly connected to the bottom of the box 1, and the support rod 106 is used for supporting the second support plate 102 and the entire support frame.

[0028] Referring to Figure 2 and Figure 5Further, the second support plate 102 is provided with a first slot 103, and the third support plate 104 is provided with a second slot 105, the first slot 103 and the second slot 105 are perpendicular to each other. The first slot 103 and the second slot 105 are used for inserting the partition plate 5, the partition plate 5 is used for isolating the cultivation box 4 in the placing hole 107, and the cultivation box 4 is grouped. When different batches and different types of poria cocos spawn are cultivated, grouping cultivation is needed, and the partition plate 5 isolates the poria cocos spawn of the unused test group, which is practical in function.

[0029] With reference to Figure 3 The cultivation box 4 is a box body without a cover, and the upper portion of the cultivation box 4 is provided with an opening. The planting plate 9 is placed into the inside of the cultivation box 4 from the opening of the cultivation box 4. The two sides of the inner wall of the cultivation box 4 are provided with support strips 43, which are used to support the planting plate 9. The planting plate 9 is provided with a nutrient groove, and the nutrient groove is filled with a nutrient medium suitable for the growth of poria cocos spawn. The poria cocos spawn is cultivated in the nutrient groove of the planting plate 9.

[0030] Further, with reference to Figure 5 The two sides of the opening of the cultivation box 4 are provided with side plates 41, which are used for the lapping of the cultivation box 4 in the placing hole 107. When the cultivation box 4 is placed in the placing hole 107, the side plates 41 can be lapped on the first support plate 101, the second support plate 102 or the third support plate 104. The first support plate 101, the second support plate 102 or the third support plate 104 supports the side plates 41 of the cultivation box 4 in the vertical direction, and the cultivation box 4 is lapped on the placing hole 107.

[0031] With reference to Figure 5 The lower portion of each placing hole 107 is provided with a heat preservation groove 3, and the upper portion of the heat preservation groove 3 is fixedly connected to the support frame. When the cultivation box 4 is placed in the placing hole 107, the cultivation box 4 is located in the inside of the heat preservation groove 3. The heat preservation groove 3 is provided with an electric heating wire 31, and the electric heating wire 31 generates heat when electrified, so that the heat preservation groove 3 has a suitable temperature. The heat preservation groove 3 provides a suitable temperature around the cultivation box 4, and maintains the normal growth of the poria cocos spawn.

[0032] In this embodiment, the side plates 41 of the cultivation box 4 are provided with handles 42, which are convenient for taking out and lapping the cultivation box 4 from the support frame.

[0033] The box body 1 is provided with a plurality of illuminating lamps 2, which are fixedly installed on the side wall of the box body 1. The illuminating lamps 2 correspond to the number and position of the placing holes 107, and are located above the placing holes 107 to illuminate the cultivation box 4 in the placing holes 107, which is convenient for observing the growth of the poria cocos spawn.

[0034] The water tank 6 is arranged on one side of the box body 1 of the poria cocos strain activity detection device, and a spray gun 7 and a water pump 61 are further arranged on the water tank 6. The water pump 61 is located at the upper part of the water tank 6, the water inlet end of the water pump 61 is connected with a water inlet pipe 65, the water inlet pipe 65 extends to the bottom of the water tank 6, and the water outlet end of the water pump 61 is connected with a water outlet pipe 62. A placing table 64 is arranged at the top of the water tank 6, and the placing table 64 is used for placing the spray gun 7. A pipe joint 63 is fixedly arranged on the table top of the placing table 64, one end of the pipe joint 63 is connected with the water outlet pipe 62, and the other end of the pipe joint 63 is connected with the water inlet end of the spray gun 7 through a hose 8. The water pump 61 is used for sending the water in the water tank 6 into the spray gun 7, and the spray gun 7 is used for spraying water on the cultivation box 4 in the box body 1, so as to maintain the appropriate humidity of the planting plate 9.

[0035] In the embodiment, the hose 8 has a certain length, so that the spray gun 7 can extend to any cultivation box 4. When the spray gun 7 is not used, the hose 8 can be stored in the placing table 64.

[0036] In the embodiment, the water tank 6 is provided with a water inlet 66 at the upper part and a water outlet at the bottom, so as to facilitate the discharge of water in the water tank 6. The bottom of the cultivation box 4 can also be provided with a drain pipe for discharging excess water in the cultivation box 4.

[0037] In the embodiment, the plurality of lighting lamps 2, the water pump 61 and the electric heating wire 31 of the heat preservation groove 3 are respectively connected in parallel to a main circuit, and the main circuit is used for connecting a power supply. Each lighting lamp 2 is provided with an independent switch for being turned on and turned off individually. The water pump 61 and the electric heating wire 31 of the heat preservation groove 3 also have independent switches, and the switches of the lighting lamps 2, the switch of the water pump 61 and the switch of the electric heating wire 31 of the heat preservation groove 3 are arranged on the outer wall of the box body 1.

[0038] The poria cocos strain activity detection device in the embodiment is used for cultivating poria cocos strains in the poria cocos strains by using sclerotia yield determination method. The process of cultivating poria cocos strains by using the poria cocos strain activity detection device is as follows: placing a nutrient medium in the nutrient groove of the planting plate 9, and planting poria cocos strains in the nutrient medium. The planting plate 9 with the poria cocos strains is placed in the cultivation box 4, and then the cultivation box 4 is placed in the placing hole 107 of the support frame of the box body 1, and the support frame supports the cultivation box 4. The cultivation box 4 is located in the heat preservation groove 3, the heat preservation groove 3 provides appropriate temperature for the cultivation box 4, the water tank 6 provides moisture for the cultivation box 4 through the spray gun 7, and the moisture in the cultivation box 4 is maintained to be normal for the production of the poria cocos strains.

[0039] The contrasted Poria cocos species can be grouped and isolated by the partition 5 to avoid confusion. The contrasted Poria cocos species can be provided with the same cultivation conditions, such as keeping the temperature of the incubator 3 same, the water adding amount same, the nutrient medium same, and the cultivation time same. After the Poria cocos species is cultivated to a certain time length, the cultivation box 4 can be taken out, and the planting plate 9 is taken out from the cultivation box 4 to obtain the sclerotia of the unit Poria cocos species, the sclerotia is weighed to obtain the sclerotia yield, and then the activity of the Poria cocos species is judged.

[0040] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A poria cocos spore viability detection device, comprising a box, a support frame for placing a cultivation box is arranged in the box, characterized in that, The support frame comprises a first support plate, a second support plate and a third support plate, the first support plate and the second support plate are arranged in parallel, a plurality of the second support plates are arranged in parallel between two first support plates, the third support plate is arranged perpendicularly and staggeredly with the second support plate, the first support plate, the second support plate and the third support plate are combined to form a plurality of placing holes for placing the cultivation boxes; The second support plate is provided with a first slot, the third support plate is provided with a second slot, the extending direction of the first slot is perpendicular to the extending direction of the second slot, the first slot and the second slot are used for inserting the partition plate, the partition plate is used for isolating the cultivation boxes inside the placing hole to form groups of cultivation boxes; The lower part of the placing hole is provided with a heat preservation groove, when the cultivation box is placed in the placing hole, the cultivation box is located inside the heat preservation groove.

2. The device for detecting the viability of Poria cocos species according to claim 1, characterized in that, Both sides of the inner wall of the cultivation box are provided with support strips, the support strips are used for supporting the planting plate.

3. The device for detecting the viability of Poria cocos species according to claim 2, characterized in that, Both sides of the cultivation box are provided with side plates, when the cultivation box is placed in the placing hole, the side plates are used for being lapped on the first support plate, the second support plate or the third support plate to form the support of the first support plate, the second support plate or the third support plate to the cultivation box in the vertical direction.

4. The Grifola frondosa viability detection device of claim 3, wherein, The side plate is provided with a handle.

5. The Grifola frondosa spore viability detection device of claim 1, wherein, The heat preservation groove is provided with an electric heating wire.

6. The Grifola frondosa spore viability detection device of claim 1, wherein, The box body is provided with a plurality of illuminating lamps, the illuminating lamps are fixedly installed on the side wall of the box body, the number and position of the illuminating lamps correspond to the number and position of the placing holes, and the illuminating lamps are located above the placing holes.

7. The device for detecting the viability of Poria cocos spores according to any one of claims 1-6, wherein, One side of the box body is provided with a water tank and a spray gun, the water tank is provided with a water pump, the water outlet end of the water pump is communicated with the water inlet end of the spray gun, the water inlet end of the water pump is connected with a water inlet pipe, and the water inlet pipe extends to the bottom of the water tank.

8. The Grifola frondosa viability detection device of claim 7, wherein, The top of the water tank is provided with a placing table for placing the spray gun, the placing table is fixedly provided with a pipe joint, the pipe joint is communicated with the water outlet end of the water pump through a water outlet pipe, and the water inlet end of the spray gun is communicated with the pipe joint through a hose. The top of the water tank is provided with a placing table for placing the spray gun, the placing table is fixedly provided with a pipe joint, the pipe joint is communicated with the water outlet end of the water pump through a water outlet pipe, and the water inlet end of the spray gun is communicated with the pipe joint through a hose.