Green additive for concrete

A technology for greening additives and concrete, applied in the field of concrete additives, can solve the problems of plant growth limitation, firmness limitation, ordinary concrete does not have an environment for plant growth, etc., and achieves the effects of greening, protecting slopes, and promoting growth.

Inactive Publication Date: 2002-07-17
许文年 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the slope greening technology, using ordinary concrete as the sprayed base material has good firmness, but ordinary concrete does not have the environment for plant g

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0006] Embodiment 1: Preparation of mixture A (percentage by weight): Iron ore powder 10, calcium 40, phosphate rock powder 40, silicon ore powder 10 are fully mixed to obtain mixture A; b: preparation of product B: get 70% of mixture A and The sulfuric acid with a concentration of 50% is fully reacted, and the solid phase obtained after removing the liquid phase is product B; C: Preparation of mixture C: (percentage by weight) fully mix product B with the remaining 30% of mixture A to obtain mixture C ; d: Other components: (percentage by weight) Add 12% of its weight water-retaining agent and 8% of compound fertilizer to the mixture C and mix evenly. The iron ore powder, calcium powder, phosphate rock powder and silicon ore powder used are 40 mesh. The compound fertilizer is nitrogen, phosphorus and potassium compound fertilizer.

Embodiment 2

[0007] Embodiment 2: Preparation of mixture A (percentage by weight): Iron ore powder 15, calcium 30, phosphate rock powder 35, silicon ore powder 20 are fully mixed to obtain mixture A; b: preparation of product B: get 80% of mixture A and The sulfuric acid with a concentration of 60% is fully reacted, and the solid phase obtained after removing the liquid phase is product B; C: Preparation of mixture C: (percentage by weight) fully mix product B with the remaining 20% ​​of mixture A to obtain mixture C ; d: Other components: (percentage by weight) Add 6% of its weight water-retaining agent and 15% of compound fertilizer to the mixture C and mix evenly. The iron ore powder, calcium powder, phosphate rock powder and silicon ore powder used are 50 mesh. The compound fertilizer is nitrogen, phosphorus and potassium compound fertilizer.

Embodiment 3

[0008] Embodiment 3: fully mix iron ore powder 17, calcium 35, phosphate rock powder 35, and silicon ore powder 13 to obtain mixture A; b: prepare product B: get 90% of mixture A and the concentration of 55% sulfuric acid to fully Reaction, the solid phase obtained after removing the liquid phase is product B; C: preparation of mixture C: (percentage by weight) fully mixes product B with the remaining 10% of mixture A to obtain mixture C; d: other components: ( % by weight) in mixture C, add 6% of its weight water retaining agent and 15% of compound fertilizer and mix evenly. The iron ore powder, calcium powder, phosphate rock powder and silicon ore powder used are 60 mesh. The compound fertilizer is nitrogen, phosphorus and potassium compound fertilizer.

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Abstract

The present invention discloses a concrete additive, said additive is mainly formed from mineral powder containing elements of iron, phosphoruc, calcium and silicone, water-retaining agent and composite fertilizer. Said additive can be added in concrete, it not only provides rich nutrients for growth of concrete, it not only provides rich nutrients for growth of plant in concrete, but also can change concrete property so as to provide growth environment for plant in the concrete, so that it is favorable for greening slope land.

Description

technical field [0001] The invention relates to a concrete additive used for greening rock slopes. Background technique [0002] In the construction of highways, railways, water conservancy, electric power, mines and other projects, it is often necessary to excavate a large number of slopes. The development of the slopes destroys the original vegetation cover, resulting in a large amount of bare land and causing a series of ecological environment problems. . Such as soil erosion, landslides, mudslides, deterioration of local microclimate, and destruction of biological chains. Traditional slope protection methods, such as mortar block stones, dry rubble stones, prefabricated concrete blocks, and sprayed concrete, have a good effect on reducing the instability of the slope at the initial stage of new construction, but cannot solve the problem of restoring the ecological environment. Concrete greening technology can not only solve the problem of shallow slope protection, but ...

Claims

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Application Information

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IPC IPC(8): C04B28/00
CPCC04B28/00C04B2111/00758C04B2111/00732
Inventor 许文年王铁桥
Owner 许文年
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