Ardealite basis composite gelled material and coagulant thereof

A technology of composite cementitious material and phosphogypsum, which is applied in the field of phosphogypsum-based composite cementitious material and its coagulant, can solve the problems of limited extensive utilization, low strength and high energy consumption, and achieves broad development prospects and excellent waterproof performance. , the effect of reducing the stacking pressure

Active Publication Date: 2014-06-18
TONGLING CHEM IND GRP
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Problems solved by technology

The calcination method is to remove the crystal water in phosphogypsum by heating at high temperature to obtain a cementitious material whose main component is anhydrous gypsum or hemihydrate gypsum. The disadvantage is high energy consumption, which also limits its wide application.
The advantage of non-calcination treatment is low treatment cost, but due to the disadvantages of low strength of calcium sulfate dihydrate and long initial and final setting time, it usually needs to be mixed with other cementitious materials such as fly ash, blast furnace slag powder, cement, and It can only be made into products such as bricks or boards, and cannot be used as a cementitious material for direct on-site construction, which limits its application and limits the utilization and conversion rate of phosphogypsum

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  • Ardealite basis composite gelled material and coagulant thereof

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Embodiment Construction

[0011] The phosphogypsum used in the present invention is the phosphogypsum discharged by Anhui Liuguo Chemical Industry Co., Ltd. by utilizing low-grade Yichang phosphate rock to produce diammonium phosphate. The specific components are as follows:

[0012] CaO: 29.22%, SO 3 : 44.10%, P 2 o 5 : 1.02%, F: 1.28%, SiO 2 : 2.51%, Al 2 o 3 : 0.81%, Fe 2 o 3 : 1.05%, MgO: 1.37%, Na 2 O: 0.36%

[0013] Each embodiment of the present invention is carried out according to the following process flow: remove most of the free water from the primary broken phosphogypsum in a drying kiln, and control the content of free water to not more than 1%. According to the proportions of the components in the examples in the table below, take dry base phosphogypsum, blast furnace slag powder, Portland cement, limestone powder, quicklime, high alumina cement or sodium metaaluminate after drying as described above, and thoroughly mix and grind As fine as the specific surface area is 200 mesh,...

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Abstract

The invention discloses an ardealite basis composite gelled material and a coagulant of the ardealite basis composite gelled material, wherein the composite gelled material and the coagulant composed of dry basis ardealite, blast furnace slag, portland cement, agstone and quicklime are blended in proportion and are grinded; the proportion of ardealite, blast furnace slag, portland cement, agstone and quicklime by weight is (34-48): (35-42): (4-10): (6-16): (2-6); the coagulant is high-alumina cement or sodium aluminate; and the addition of high-alumina cement or sodium aluminate is 1-4% or 0.5-4% that of the weight of the composite gelled material. In part of the application fields, the ardealite basis composite gelled material and the coagulant of the material can replace cement, and the production costs for the ardealite basis composite gelled material and the coagulant are more than 20% lower than that of the cement, and a large amount of ardealite can be consumed, so that the pressure of piling the ardealite of the phosphatic fertilizer enterprises can be alleviated.

Description

technical field [0001] The invention relates to a phosphogypsum-based composite gelling material and a coagulant thereof. Background technique [0002] The main component of industrial by-product phosphogypsum is calcium sulfate dihydrate, which is an important choice to replace natural gypsum as a cementitious material. However, due to the large amount of harmful impurities contained in phosphogypsum, especially P 2 o 5 Impurities such as free sulfuric acid and free sulfuric acid have a great influence on the strength and setting time of the gelled material, so they cannot be used directly. At present, the application of phosphogypsum to prepare cementitious materials in industry usually adopts pretreatment and calcination. Pretreatment mainly includes washing method and neutralization method. Although water washing can remove most of the harmful impurities, its use is limited due to the high cost of treatment; the neutralization method is to use quicklime to neutralize...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C04B11/30
Inventor 胡成军石庆忠罗根宏姜跃
Owner TONGLING CHEM IND GRP
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