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Efficient breeding greenhouse for edible fungi

A technology of edible fungi and greenhouses, which is applied in the field of high-efficiency breeding of edible fungi, can solve the problems of inappropriate breeding and use of edible fungi, occupy a large land area, increase the cost of land use, etc., achieve compact structure, convenient disassembly and assembly, and improve utilization rate Effect

Inactive Publication Date: 2014-10-01
LUOYANG JIAJIALE AGRI PROD DEV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The edible fungus breeding greenhouses in the prior art belong to the form of simple structure and plane arrangement breeding, because of the characteristics of this type of greenhouse structure itself, it is not suitable for If it is too large, for the breeding of edible fungi that requires a larger breeding scale, it is necessary to repeatedly set up multiple smaller such greenhouses to meet the use, which will occupy a larger land area, thereby increasing the cost of land use; the other type It is possible to achieve three-dimensional planting, but this type of greenhouse is not suitable for large-scale edible fungus reproduction because of its complex structure and high cost.

Method used

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  • Efficient breeding greenhouse for edible fungi
  • Efficient breeding greenhouse for edible fungi
  • Efficient breeding greenhouse for edible fungi

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Experimental program
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Embodiment 1

[0032] Such as Figure 1-8 As shown, a high-efficiency breeding greenhouse for edible fungi is provided with 5 breeding units, and the breeding units are provided with four columns I11 (set in this specification: figure 1 The projection direction shown is the reference, the horizontal row is the row, and the vertical row is the column). In this embodiment, there are 18 columns I11 in each row, which are made of galvanized pipes with a diameter of 76 mm, and the distance between two adjacent columns I11 in each column I11 is set to 2 meters.

[0033] In practical application, different profiles and different specifications can be selected according to the size of the required scale, and the number of columns I11 in each column can be set according to needs, and the distance between two adjacent columns I11 in each column I11 can also be selected according to needs.

[0034] A transportation channel is formed between the two columns I11 in the middle. In this embodiment, the wi...

Embodiment 2

[0050] In this embodiment, the two breeding intervals of the breeding unit have a common top skeleton, such as Figure 9 As shown, all the other structures are substantially the same as in Embodiment 1. The top frame includes an integral crossbeam 24' and an integral top beam 9'. The integral top beam 9' is made of a round tube, which is arc-shaped or triangular as a whole. connect. The overall crossbeam 24' spans the four columns I11 as a whole, and is fixed on the corresponding four columns I11. In order to make the whole breeding unit more stable in this embodiment, the two adjacent straight rods are placed above the overall beam 24'. 10. The bracket is provided with a reinforcing rod 25, and the two ends of the reinforcing rod 25 are connected with the corresponding integral top beam 9' and the integral cross beam 24'.

[0051] In this embodiment, the connector I refers to the part of the integral beam 24' above the transportation channel, that is to say, the slide rail ...

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Abstract

An efficient breeding greenhouse for edible fungi comprises a plurality of breeding units, wherein two breeding areas are arranged in each breeding unit; a top framework is arranged on four uprights I forming the two breeding areas; a sliding track I is arranged on the top framework of each breeding area; a transportation channel is arranged between the two breeding areas; a sliding track II is arranged above each transportation channel through a connecting piece I; a plastic film covering the two breeding areas is arranged on the four uprights I and each top framework; an inlet / outlet is formed in the position, corresponding to the transportation channel, of each plastic film; the breeding units are arranged in parallel at intervals into a row; an integral peripheral truss structure is arranged on the peripheries of the breeding units; a plurality of uprights II forming the integral peripheral truss structure are arranged on the peripheries of the breeding units in an array; a fireproof net and a sun shading net are arranged at the top of the integral peripheral truss structure; wind shielding plates are arranged on the peripheral uprights II of the integral peripheral truss structure. According to the invention, the structure is simple, the cost is low, the land utilization rate is high, the production efficiency can be improved, and the greenhouse is suitable for large-scale application.

Description

technical field [0001] The invention relates to the technical field of edible fungi planting, in particular to a high-efficiency breeding greenhouse for edible fungi. Background technique [0002] The edible fungus breeding greenhouses in the prior art belong to the form of simple structure and plane arrangement breeding. Because of the characteristics of this type of greenhouse structure itself, it is not suitable to be too large. For the breeding of edible fungi that require a larger breeding scale Said that it is necessary to repeatedly set up multiple smaller such greenhouses to meet the needs, which will occupy a larger land area, thereby increasing the cost of land use; the other type can achieve three-dimensional planting, but this type of greenhouse is also because of The structure is complicated, the cost is higher and it is not suitable for large-scale edible fungus propagation. Contents of the invention [0003] In order to solve the above-mentioned technical ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G1/04A01G9/14
CPCY02A40/25
Inventor 杨超庆李军峰程帅印姚建波方秋玲
Owner LUOYANG JIAJIALE AGRI PROD DEV