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Method for preparing ultrahigh water filling material through cooperation of iron and aluminum series high-activity material and industrial solid wastes

A filling material and ultra-high water technology, which is applied to filling materials, mining equipment, earth square drilling and mining, etc., can solve the problems of excessive consumption of high water filling materials, unadjustable initial and final setting times, waste of clay and other resources, and achieve Alleviate the problem of land occupation by solid waste, considerable economic and social benefits, and the effect of alleviating economic pressure

Active Publication Date: 2018-08-21
SHANDONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, with the increase in the depth and breadth of karst subsidence areas and mine mining, the problems of high-water filling materials in the construction and application process are becoming more and more obvious: 1. The initial and final setting time of traditional high-water filling materials cannot be adjusted, and are more affected by the environment. 2. Traditional high-water filling materials have poor pumpability, and engineering problems such as early setting and pipe plugging often occur during ultra-long-distance construction; 3. However, due to the large treatment area of ​​karst caves, goafs, and subsidences, one-time filling consumes Excessive filling materials with high water will increase the project cost, and to a certain extent, cause waste of resources such as gypsum, limestone, clay, etc., and aggravate ecological damage

Method used

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  • Method for preparing ultrahigh water filling material through cooperation of iron and aluminum series high-activity material and industrial solid wastes
  • Method for preparing ultrahigh water filling material through cooperation of iron and aluminum series high-activity material and industrial solid wastes

Examples

Experimental program
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Effect test

Embodiment 1

[0052] Dry solid waste-based highly active materials, coal gangue, iron tailings, slag and desulfurized gypsum until the moisture content is not greater than 5%. The solid waste-based highly active material, coal gangue, iron tailings and slag are crushed, and mixed with desulfurized gypsum. In terms of solid matter, the solid waste-based high-active material is 17 parts by weight, the coal gangue is 15 parts by weight, and the iron tail 30 parts by weight of ore, 27 parts by weight of slag and 5 parts by weight of desulfurized gypsum, and the prepared matrix material should meet the standard of less than 10% of sieve over 0.10mm. Get above-mentioned base material, add the quick-setting agent (H-508 concrete quick-setting agent) of base material quality 1%, the expansion agent (JQ-QF type high-performance fiber expansion agent) of 1.2%, the dispersant (stearic acid ), take another 92 parts of water, the quality of every 2 parts of water is the same as the quality of the above-...

Embodiment 2

[0054] Dry solid waste-based highly active materials, coal gangue, iron tailings, slag and desulfurized gypsum until the moisture content is not greater than 5%. The solid waste-based highly active material, coal gangue, iron tailings and slag are crushed, and mixed with desulfurized gypsum. In terms of solid matter, the solid waste-based high-active material is 20 parts by weight, the coal gangue is 16 parts by weight, and the iron tailing 28 parts by weight of ore, 24 parts by weight of slag and 8 parts by weight of desulfurized gypsum, and the prepared matrix material should meet the standard of less than 10% of the sieve over 0.10mm. Get above-mentioned base material, add the quick-setting agent (H-508 concrete quick-setting agent) of base material quality 0.7%, the expansion agent of 1% (JQ-QF type high-performance fiber expansion agent), the dispersant of 0.8 (stearic acid ), take another 92 parts of water, the quality of every 2 parts of water is the same as the quality...

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Abstract

The invention provides a method for preparing iron aluminate based ultrahigh water filling material through cooperation of a solid waste based high-activity material serving as a main material and multiple types of bulk solid wastes serving as auxiliary materials. According to the method, bulk industrial solid wastes are used as raw materials of the ultrahigh water filling material, the productioncost of the ultrahigh water filling material is reduced while a large quantity of stacked solid wastes are consumed, and besides, the prepared ultrahigh water filling material has excellent performance than traditional filling materials and can better adapt to the requirements of backfill of karst subsidence areas and mine exploitation areas. The method comprises simple steps and is convenient tooperate and high in practicability.

Description

technical field [0001] The invention discloses a method for preparing a ferro-aluminate ultra-high water filling material by using solid waste-based high-activity materials in cooperation with various types of industrial solid waste, and relates to the fields of chemistry, solid waste recycling and environmental protection, especially It is suitable for filling in deep pits, foundation pits, subsidence areas in karst areas, and goafs in metal and non-metal mines. Background technique [0002] With the continuous development of my country's economical and industrialized production, industries such as electric power, metallurgy, and mining have produced a large amount of industrial waste in the production process, which is often treated by repairing storage or simple stacking, which occupies precious land resources. At the same time, it also caused huge pollution to the surrounding environment. [0003] At the same time, with the rapid development of social economy and urban p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/06E21F15/00
CPCC04B28/06C04B2111/00017C04B2111/00663C04B2111/00724C04B2201/50E21F15/005C04B18/12C04B18/141C04B14/365C04B2103/12C04B2103/408
Inventor 李召峰李术才张庆松齐延海林春金张健杨磊张霄刘人太
Owner SHANDONG UNIV
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