A method for preparing low-carbon cement clinker from iron tailings

A low-carbon cement clinker and iron tailings technology, which is applied in cement production and other directions, can solve the problems of sintering temperature lower than 1400 ℃ and emission reduction, and achieve good stability, reduced emission, and high blending ratio Effect

Active Publication Date: 2016-03-23
承德金隅水泥有限责任公司
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AI Technical Summary

Problems solved by technology

Although the main chemical composition of iron tailings is suitable as a raw material for the production of cement clinker, in the existing research literature, there is no iron tailings content of more than 15% in cement raw materials, and the sintering temperature is lower than 1400 ° C, and the CO 2 Documents or patents on low-carbon cement clinker with 20% reduction in greenhouse gas emissions and 28-day strength rating of 62.5

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0025] 1. First select the raw material:

[0026] Iron tailings: SiO 2 、Al 2 o 3 and Fe 2 o 3 The weight percentages are 72.40%, 7.84% and 7.80% respectively;

[0027] Limestone: 53.67% by weight of CaO;

[0028] Mineralizer: a mixture of natural gypsum and fluorite in a weight ratio of 10:1.

[0029] 2. After the raw material is selected, it is prepared according to the following weight (%):

[0030] Iron tailings 24.7

[0031] Limestone 71.8

[0032] Mineralizer 3.5

[0033] 3. After the raw materials are selected, the process steps are:

[0034] First, mix the raw materials described in step 2 and grind until the particle size reaches 10% of the 0.08mm square hole sieve, then calcinate at 1380°C for 20 minutes, and cool to obtain the low-carbon cement clinker of the present invention.

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Abstract

The invention provides a method for preparing low-carbon cement clinker by utilizing iron tailings. The method for preparing the low-carbon cement clinker comprises the step of firing the iron tailings and limestone as main raw materials at the temperature lower than 1400 DEG C. The low-carbon cement clinker comprises the following mineral compositions: 70-85% of dicalcium silicate, 5-15% of tricalcium silicate, 0-5% of tricalcium aluminate and 4-15% of tetra calcium aluminoferrite. The method has the advantages that the proportion of iron tailings in the raw materials can be up to 32%; in addition, compared with the firing temperature 1450 DEG C of traditional portland cement clinker, the firing temperature is reduced by 50-150 DEG C; compared with the emission of the greenhouse gases in traditional cement production, the emission of CO2 and other NOx-based greenhouse gases is reduced by about 20%. The cement prepared by utilizing the low-carbon cement clinker has the advantages that the 28-day strength can be up to 65-75 MPa; the strength grade is up to 62.5; the cement mortar dispersion degree can be up to 135-200mm; the cement is low in the hydration heat, good in safety and excellent in working performance.

Description

technical field [0001] The invention relates to the technical field of preparing cement clinker. Specifically, it relates to a method for preparing low-carbon cement clinker from iron tailings. Background technique [0002] Iron tailings are the wastes discharged from the concentrator after grinding iron ore and selecting useful components. Its main chemical components are oxides of silicon, aluminum, iron, magnesium, and calcium. The stockpiling of iron tailings not only occupies a large amount of land resources, but also causes serious environmental pollution. At present, as a secondary resource, iron tailings have few large-scale and effective utilization methods, and the utilization rate is very low. [0003] The raw materials for the production of Portland cement are mainly limestone, clay and their correction materials. The main mineral components of cement clinker are tricalcium silicate, dicalcium silicate, tricalcium aluminate and tetracalcium aluminoferrite. Usu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B7/14
CPCY02P40/10
Inventor 刘艳军郑永超张睿
Owner 承德金隅水泥有限责任公司
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