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Preparation of manganese slag groundmass geopolymer cementing material

A technology of polymer glue and manganese slag, applied in cement production and other directions, can solve the problems of low utilization rate of manganese slag, climate and environment, etc., and achieve the effects of good seawater corrosion resistance, environmental improvement and energy saving.

Inactive Publication Date: 2008-12-24
GUILIN UNIVERSITY OF TECHNOLOGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to provide a method for preparing a manganese slag-based geopolymer material with manganese slag and kaolin as the main raw materials in order to solve the climate and environmental problems caused by the low utilization rate of the existing manganese slag and cement production

Method used

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  • Preparation of manganese slag groundmass geopolymer cementing material

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Experimental program
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Effect test

Embodiment 1

[0020] (1) The solid component is proportioned by weight percentage, manganese slag 70%, kaolin 30%; the liquid component is proportioned by volume percentage, water glass 40%, water 60%; water-cement ratio 0.45, activator chemically pure KOH is the solid component 4% of sub-mass percentage;

[0021] (2) Dry the manganese slag until the moisture content is less than 1%, put it into a ball mill and grind it until the specific surface area is 450m 2 / Kg; Kaolin is calcined at 650°C to form metakaolin, and ground to a specific surface area of ​​500m 2 / Kg;

[0022] (3) activator chemically pure KOH is mixed in the water glass solution, and it is mixed with water, obtains the water glass solution of water glass modulus 3.25, Baume degree 40 °;

[0023] (4) Slowly add the mixed solution prepared in step (3) into the mixed powder of manganese slag and metakaolin micropowder, stir for 60 seconds, mix evenly and then form it, and maintain it in an environment with a temperature of 2...

Embodiment 2

[0026] (1) Solid ingredients are proportioned by weight percentage, manganese slag accounts for 90%, kaolin 10%; liquid components are proportioned by volume percentage, water glass 40%, water 60%, water-cement ratio 0.45, and the activator is chemically pure NaOH. 4% of the mass percentage of solid content.

[0027] (2) Dry the manganese slag until the moisture content is less than 1%, put it into a ball mill and grind it until the specific surface area is 600m 2 / Kg; Kaolin is calcined at 900°C to form metakaolin, and ground to a specific surface area of ​​700m 2 / Kg.

[0028] (3) activator chemically pure NaOH is mixed in the water glass solution, and it is mixed with water, obtains the water glass solution that the water glass modulus is 3.25, Baume degree 40 °.

[0029] (4) Slowly add the mixed solution prepared in step (3) into the mixed powder of manganese slag and metakaolin micropowder, stir for 90 seconds, mix evenly and then form it, and maintain it in an environm...

Embodiment 3

[0033] (1) Solid ingredients are proportioned by weight percentage, manganese slag accounts for 80%, kaolin 20%; by volume percentage: water glass accounts for 40%, water accounts for 60%, water-cement ratio is 0.45, and wherein activator is chemically pure KOH accounts for solid 4% of the mass percentage of ingredients;

[0034] (2) Dry the manganese slag with a weight percentage of 90% until the moisture content is less than 1%, put it into a ball mill and grind it until the specific surface area is 600m 2 / Kg; take 10% kaolin by weight, calcinate metakaolin at 900°C, and grind until the specific surface area is 700m 2 / Kg.

[0035] (3) activator chemically pure NaOH is mixed in the water glass solution, and it is mixed with water, obtains the water glass modulus to be 3.25, the water glass solution of Baume degree 40 °.

[0036] (4) Slowly add the mixed solution prepared in step (3) into the mixed powder of manganese slag and metakaolin micropowder, stir for 90 seconds, m...

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Abstract

The invention discloses a method for preparing a manganese slag-based geological polymer binder comprising: (1) the solid components of the materials are manganese slag and kaolin; the liquid components are water glass, water and activator. (2) the manganese slag is dried till the moisture content is less than 1%, and is milled in a ball mill till the specific surface is 400-600m<2> / kg, the kaolin is calcined at 900 DEG C till the kaolin becomes metakaolin, and is milled till the specific surface is 500-700<2> / kg. (3) the activator is added into the water glass solution and is mixed uniformly with water to get a water glass solution with a water glass modulus value of 1.5-3.5 and a water glass baume of 35-45 degrees. (4) the mixed solution prepared by the step (3) is added into the mixed powder of managese and metakaolin micropowder, is stirred and moulded after uniform mixture and maintenance. The preparation method has advantages of simple technology, no pollution during the preparation process, good gelling property and strong anti-seawater erosion property using industrial waste residue.

Description

technical field [0001] The invention belongs to the category of inorganic nonmetals, and relates to a preparation method of manganese slag-based geopolymer gelling material. Background technique [0002] In the industrial production of modern building materials, cement is a very important class of basic materials. Cement production consumes a lot of resources and energy. In 2005, the total energy consumption of the cement manufacturing industry accounted for 75.5% of the total energy consumption of the building materials industry. my country's cement production ranks first in the world for many years. At the end of 2006, the cement production has reached 1.24 billion tons, while the cement production of other countries in the world in 2006 was 1.328 billion tons. It can be said that almost half of the world's cement is in China. However, the cement industry has become an important factor affecting climate change and environmental pollution, and a large amount of CO emitted ...

Claims

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Application Information

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IPC IPC(8): C04B7/153
CPCC04B12/005C04B2111/24Y02P40/10
Inventor 陈平刘荣进马帅贾韶辉安庆锋李海东王一靓
Owner GUILIN UNIVERSITY OF TECHNOLOGY
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