Novel binding agent as well as preparation method and application thereof

A binder and a new type of technology, applied in the field of new binders and their preparation, can solve the problems of affecting air permeability, high cost of binders, large amount of dust, etc., achieve broad application prospects, significant comprehensive benefits, and solve The effect of increased production costs

Active Publication Date: 2018-09-25
PANZHIHUA IRON & STEEL RES INST OF PANGANG GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] To sum up, since the above-mentioned secondary resources are mostly powder materials, the direct use of dust produces a large amount, which affects the air permeability. Therefore, the prior art needs to make them into blocks before reuse; however, the binder used for block making The high cost restricts the large-scale utilization of secondary resources to a certain extent

Method used

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  • Novel binding agent as well as preparation method and application thereof
  • Novel binding agent as well as preparation method and application thereof

Examples

Experimental program
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preparation example Construction

[0037] The present invention also provides a preparation method of the novel binder described in the above technical solution, comprising the following steps:

[0038] A new type of binder is obtained by mixing titanium slag electric furnace dust, plant adhesive and polyacrylamide. The present invention has no special limitation on the mixing method, and the technical solutions of mechanical stirring or manual stirring well known to those skilled in the art can be used; the purpose is to mix the titanium slag electric furnace dust, plant adhesive and polyacrylamide evenly.

[0039] The new type of binder provided by the invention uses titanium slag electric furnace dust as the main raw material, and other specific content components are used. The cost of the binder is reduced, the large-scale utilization rate of powder resources is improved, the economic benefit is remarkable, and the application prospect is broad.

[0040] The present invention also provides a method for agg...

Embodiment 1

[0063] (1) Preparation of new binder:

[0064] According to the following mass percentage ingredients: titanium slag electric furnace dedusting ash: starch glue: polyacrylamide=70%: 29%: 1%; above-mentioned titanium slag electric furnace dedusting ash, starch glue and polyacrylamide are mixed under the condition of stirring, Get new binders.

[0065] (2) Agglomeration of fine-grained titanium concentrate:

[0066] The main particle size distribution of the fine-grained titanium concentrate used in Example 1 is shown in Table 2;

[0067] The main particle size distribution of the fine-grained titanium concentrate used in the embodiment 1 of table 2

[0068] particle size

-200 mesh

-325 mesh

Proportion / %

79.24

46.32

[0069] Mixing the above-mentioned fine-grained ilmenite concentrate and the new binder obtained in step (1) according to the mass ratio of 100:5, dry mixing for 3 minutes to obtain a mixed material; then adding the mixed materi...

Embodiment 2

[0073] (1) Preparation of new binder:

[0074] According to the following mass percentage ingredients: titanium slag electric furnace dedusting ash: carboxymethyl cellulose glue: polyacrylamide=30%: 65%: 5%; above-mentioned titanium slag electric furnace dedusting ash, carboxymethyl cellulose glue and polyacrylamide Mix evenly under the condition of stirring to obtain a new binder.

[0075] (2) Iron and steel plant enriched sludge agglomeration:

[0076] The main components and content of the iron and steel plant enriched sludge used in Example 2 are shown in Table 3, and its particle size composition is shown in Table 4;

[0077] The main components and content (mass percentage) of the iron and steel plant enriched sludge used in Table 3 Example 2

[0078] / %)

[0079] raw material source

MFe

FeO

CaO

SiO 2

New material area

39.44

24.04

8.30

10.49

old material area

54.56

25.97

4.21

4.57

[0080] The part...

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Abstract

The invention provides a novel binding agent. The novel binding agent is prepared from the following raw materials: 20 weight percent to 70 weight percent of dust-removal ash of a titanium slag electric furnace, 20 weight percent to 70 weight percent of a plant adhesive and 1 weight percent to 10 weight percent of polyacrylamide. The invention further provides an agglomeration method of powder resources; the agglomeration method comprises the following steps: a) carrying out dry mixing on the powder resources and a binding agent; then adding water to carry out wet drying, so as to obtain a mixture, wherein the binding agent is the novel binding agent provided by the technical scheme or the novel binding agent prepared by a preparation method provided by the invention; b) granulating and molding the mixture obtained by step a) to obtain a molded agglomerated block. Compared with the prior art, the novel binding agent provided by the invention takes the dust-removal ash of the titanium slag electric furnace as a main raw material and the main raw material is matched with other components with specific content; the novel binding agent has relatively high resource utilization rate andrelatively low cost; meanwhile, the novel binding agent is applicable to granulation and molding of the powder resources and has relatively high molding rate and strength, so that the powder resourcesare sufficiently utilized.

Description

technical field [0001] The invention relates to the technical field of granulation and molding, and more specifically relates to a novel binder and its preparation method and application. Background technique [0002] Electric furnace smelting titanium concentrate to produce high-titanium slag is the main method for processing titanium raw materials. Panzhihua Iron and Steel Co., Ltd. has three titanium slag electric furnaces, which can process 250,000 tons of titanium concentrate and produce 140,000 tons of high-titanium slag annually. [0003] In actual production, due to the fine particle size of titanium concentrate (the proportion of particles below 200 mesh reaches more than 75%), fine particles are easily drawn into the flue by the ventilation system during the smelting process and enter the dust removal system to form dust. Titanium smelters 15,000 tons of dedusting ash is produced every year, the loss of raw materials is relatively large, and a certain amount of fun...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22B1/242
CPCC22B1/242
Inventor 秦洁刘功国齐建玲李占军
Owner PANZHIHUA IRON & STEEL RES INST OF PANGANG GROUP
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