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Low-alkalinity plant-growing porous concrete

A porous concrete, plant-based technology, applied in planting substrate, lawn growth, plant cultivation and other directions, can solve problems such as poor plant growth, and achieve good slope protection effect, good fertilizer effect, and good connection effect.

Active Publication Date: 2018-04-20
CHONGQING JIAOTONG UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the currently prepared vegetation concrete is too alkaline, resulting in poor plant growth.

Method used

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  • Low-alkalinity plant-growing porous concrete

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] The low-alkalinity vegetation-type porous concrete provided in the present embodiment comprises porous concrete having a thickness and the mixed fine loam covered on the surface of the porous concrete, and the mixed fine loam consists of the fine loam and soaked grass seeds in a weight ratio of The ratio of 1:2 is evenly mixed, and the raw materials of the porous concrete include the following components according to the volume density: Portland cement 150kg / m 3 , waste concrete recycled coarse aggregate 1495kg / m 3 , Zeolite powder 20kg / m 3 , fly ash 25kg / m 3 , Bentonite 10kg / m 3 , silica 20kg / m 3 , fine loam 110kg / m 3 , plant ash 2kg / m 3 , rice husk charcoal 15kg / m 3 , Polycarboxylate superplasticizer 2.5kg / m 3 , EVA latex powder 22kg / m 3 , SBR powder 23kg / m 3 , polyacrylate emulsion 19kg / m 3 , organic compost 30kg / m 3 , seaweed powder 3.5kg / m 3 , vermiculite 10kg / m 3 , tea meal 0.8kg / m 3 , neem cake 2kg / m 3 , Polyacrylamide 1.0kg / m 3 , ferrous sulfate ...

Embodiment 2

[0048] The low-alkalinity vegetation-type porous concrete provided in the present embodiment comprises porous concrete having a thickness and the mixed fine loam covered on the surface of the porous concrete, and the mixed fine loam consists of the fine loam and soaked grass seeds in a weight ratio of The ratio of 1:3 is evenly mixed, and the raw materials of the porous concrete include the following components according to the volume density: Portland cement 325kg / m 3 , waste concrete recycled coarse aggregate 1550kg / m 3 , Zeolite powder 30kg / m 3 , fly ash 42kg / m 3 , Bentonite 15kg / m 3 , silica 15kg / m 3 , fine loam 130kg / m 3 , plant ash 3kg / m 3 , rice husk charcoal 30kg / m 3 , Polycarboxylate superplasticizer 4kg / m 3 , EVA latex powder 15kg / m 3 , SBR powder 42kg / m 3 , polyacrylate emulsion 26kg / m 3 , organic compost 40kg / m 3 , seaweed powder 4.5kg / m 3 , Vermiculite 20kg / m 3 , tea meal 1.0kg / m 3 , neem cake 3kg / m 3 , polyacrylamide 1.5kg / m 3 , ferrous sulfate 1k...

Embodiment 3

[0066] The low-alkalinity vegetation-type porous concrete provided in the present embodiment comprises porous concrete having a thickness and the mixed fine loam covered on the surface of the porous concrete, and the mixed fine loam consists of the fine loam and soaked grass seeds in a weight ratio of The ratio of 1:2 is evenly mixed, and the raw materials of the porous concrete include the following components according to the volume density: Portland cement 220kg / m 3 , waste concrete recycled coarse aggregate 1500kg / m 3 , Zeolite powder 25kg / m 3 , fly ash 35kg / m 3 , Bentonite 12kg / m 3 , silica 18kg / m 3 , fine loam 120kg / m 3 , plant ash 2.5kg / m 3 , rice husk charcoal 22kg / m 3 , Polycarboxylate superplasticizer 3.2kg / m 3 , EVA latex powder 17kg / m 3 , SBR powder 30kg / m 3 , polyacrylate emulsion 21kg / m 3 , organic compost 35kg / m 3 , seaweed powder 4.0kg / m 3 , vermiculite 15kg / m 3 , tea meal 0.9kg / m 3 , neem cake 2.5kg / m 3 , polyacrylamide 1.2kg / m 3 , ferrous sulf...

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Abstract

The invention provides low-alkalinity plant-growing porous concrete. The low-alkalinity plant-growing porous concrete comprises porous concrete with a thickness and mixed fine loamy soil covering thesurface layer of the porous concrete, wherein the porous concrete is prepared from the following raw material components in volume density: 150-325kg / m<3> of cement, 1495-1550kg / m<3> of waste concreterecycled coarse aggregate, 20-30kg / m<3> of zeolite powder, 25-42kg / m<3> of coal ash, 10-15kg / m<3> of bentonite, 15-20kg / m<3> of silicon dioxide, 110-130kg / m<3> of fine loamy soil, 2-3kg / m<3> of plantash, 15-30kg / m<3> of rice husk charcoal, 2.5-4kg / m<3> of a water reducing agent, 15-22kg / m<3> of EVA emulsion powder, 23-42kg / m<3> of butadiene-styrene rubber powder, 19-26kg / m<3> of polyacrylate emulsion, 30-40kg / m<3> of organic compost, 3.5-4.5kg / m<3> of seaweed meal, 10-20kg / m<3> of vermiculite, 0.8-1.0kg / m<3> of tea seed meal, 2-3kg / m<3> of azadirachta indica cake, 1.0-1.5kg / m<3> of polyacrylamide, 0.5-1kg / m<3> of ferrous sulfate, 4-5kg / m<3> of modified towel gourd fibers, 1.0-1.2kg / m<3> of an organic defoaming agent and 70-100kg / m<3> of water.

Description

technical field [0001] The invention relates to the field of civil engineering materials, in particular to a plant-growing porous concrete with low alkalinity. Background technique [0002] At present, the technologies used in slope protection in my country mainly include: hard and dense slope protection technology, hole type slope protection technology, and natural vegetation slope protection technology. However, the hard dense slope protection has a hard texture, dark color, and poor visual effect. Moreover, the hard dense slope protection has small porosity and strong alkalinity, which blocks the material and energy exchange between the slope surface and the air, and destroys the surface of the slope surface. The ecological environment required for plant growth. The perforated slope protection technology has high requirements on the design of the perforations. If the perforations are too small, there will be little room for plant growth. If the perforations are too large...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B38/08C04B28/04C05F15/00C05F17/00C05G3/00A01G24/25A01G24/22A01G24/12A01G24/13A01G24/17A01G24/10A01G24/27A01G20/10C04B20/02
CPCC04B20/023C04B28/04C04B2111/00758C05D1/00C05F5/002C05F17/50C05G5/40C04B18/167C04B18/08C04B14/104C04B14/06C04B14/361C04B18/101C04B18/24C04B2103/302C04B24/26C04B24/2641C04B18/248C04B18/0418C04B14/043C04B24/2652C04B22/149C04B24/42C04B38/08C05F7/00C05F11/00C05F11/08C05D9/00C05F9/04Y02W30/40
Inventor 赵宁雨陈凯向阳蒋海飞
Owner CHONGQING JIAOTONG UNIVERSITY
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