Anti-seepage air-permeable pot culture container and preparation method thereof

A technology for potting containers and aggregates, which is applied in botany equipment and methods, container cultivation, gardening, etc., and can solve the problems that potting containers cannot have anti-seepage, air permeability and water storage properties at the same time

Active Publication Date: 2014-08-13
BEIJING RECHSAND SCI & TECH GRP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The technical problem to be solved by the present invention is the problem that the existing potted containers cannot have anti-seepage, air permeability and water storage properties

Method used

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  • Anti-seepage air-permeable pot culture container and preparation method thereof
  • Anti-seepage air-permeable pot culture container and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0060] figure 1 It is the anti-permeation gas potting container of the present invention, the anti-permeation gas potting container 1 has an open cavity, and the pores of 0.01-0.2 mm formed between adjacent aggregate particles are spread all over the potting container, Pores in this size range can allow gas molecules to pass through smoothly, and can effectively prevent liquid water molecules from penetrating.

[0061] The aggregate particles are a mixture of quartz sand and slag at a weight ratio of 5:1, the particle size of the quartz sand is 0.075-0.3 mm, the particle size of the slag is 0.1-0.3 mm, and the hydrophobic binder contains Fluorine epoxy resin binder 2,2-bisphenol-based hexafluoropropane diglycidyl ether, hydrophobic binder and aggregate particles are used at a weight ratio of 1:99.

[0062] Described potting container 1 is to make by following method:

[0063] a. Mix the aggregate particles with the hydrophobic binder and pour into the mixer to stir evenly;...

Embodiment 2

[0068] The air-proof potted plant container 1 in this embodiment has an open cavity, and the potted plant container is covered with pores of 0.02-0.3 mm formed between adjacent aggregate particles, and the pores in this size range can make gas molecules Smooth enough to pass through, and can effectively prevent liquid water molecules from penetrating.

[0069] The aggregate particles are formed by mixing ceramsite and glass microspheres at a weight ratio of 2:1, the particle size of the ceramsite is 0.075-0.6 mm, and the particle size of the glass microspheres is 0.04-0.15 mm.

[0070] The hydrophobic binder is a silicon-containing epoxy resin binder diphenylsilane modified bisphenol A epoxy resin, and the hydrophobic binder and aggregate particles are used in a weight ratio of 1:49.

[0071] The aggregate particles are coated with hydrophobic epoxy resin, and the hydrophobic epoxy resin is 8wt% of the aggregate particles. The hydrophobic epoxy resin is prepared by copolymeri...

Embodiment 3

[0082] The anti-permeation air potting container 1 in the present embodiment has an open cavity, and the potting container is covered with pores of 0.001-0.2 mm formed between adjacent aggregate particles, and the pores in this size range can make gas molecules Smooth enough to pass through, and can effectively prevent liquid water molecules from penetrating.

[0083] The aggregate particles are mixed with ceramsite and quartz sand at a weight ratio of 1:4, the particle size of the ceramsite is 0.05-0.3 mm, and the particle size of the quartz sand is 0.06-0.112 mm.

[0084] The hydrophobic binder is a silicone binder methylphenylpolysiloxane resin, and the hydrophobic binder and aggregate particles are used in a weight ratio of 3:97.

[0085] The aggregate particles are coated with hydrophobic polytetrafluoroethylene, and the hydrophobic polytetrafluoroethylene accounts for 3wt% of the aggregate particles.

[0086] The method that the hydrophobic polytetrafluoroethylene is co...

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Abstract

The invention relates to an anti-permeable gas potting container, which has an open cavity, and the potting container is formed by bonding aggregate particles and a hydrophobic binder, and gas is formed between adjacent aggregate particles A pore through which molecules can pass and which liquid water molecules cannot pass through. The aggregate particles are one or a mixture of quartz sand, slag, ceramsite or glass microspheres. The invention also discloses a preparation method of the anti-permeation air potted container. The invention utilizes the material with good performance of anti-permeation gas to be applied to the potted plant container, the water in the potted plant can be effectively blocked, the water required by the plant can be maintained, and the water-proof and air-permeable properties are also provided. The air-proof potted plant container can be widely used for planting various potted plants, transplanting in garden nurseries and planting crops in arid areas.

Description

Technical field [0001] The present invention involves a potted container, especially a potted container with anti -permeability. Background technique [0002] At present, potted plants are widely used in various fields in life, and are placed in various corners such as family and office spaces.Most of the existing potted containers are made of inorganic materials, and the structure itself is dense and breathable. Generally, small holes are opened at the bottom of the container to ensure breathability.Experience, it cannot guarantee that moisture is fully penetrated throughout the entire flower pot, and the root system of potted plants cannot be fully irrigated; and the soil in the flower pot will also flow from small holes, which causes pollution to the living environment. At the same timeNeed to be continuously supplemented to water and waste water resources. [0003] In response to the current problems of potted implantation of potted plants, people usually place some anti -see...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01G9/02C04B26/10C04B26/12C04B26/16C04B26/18C04B26/32
Inventor 秦升益陈杰贾屹海
Owner BEIJING RECHSAND SCI & TECH GRP
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