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Method for removing non-calcium mineral impurities in carbide slag

A calcareous mineral, carbide slag technology, applied in chemical instruments and methods, calcium/strontium/barium oxide/hydroxide, wet separation, etc. Impurities are meaningless, cannot remove fine clay mineral impurities, etc.

Active Publication Date: 2019-09-24
XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY
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  • Abstract
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  • Application Information

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Problems solved by technology

The patent introduces the Ca(OH) in the cyclone separation slurry 2 The purity can reach 96%, but there are still shortcomings in the technical scheme of sorting and removing impurities after careful exploration: (1) Like the previous patented technology, it cannot remove fine clay mineral impurities; nor can it make the calcareous minerals present stable Single mineral dispersion form ensures the separation effect of the cyclone
(2) It is meaningless to extract ferrosilicon impurities by magnetic separation from -180μm carbide slag fines
[0006] To sum up, the existing methods for removing non-calcareous impurity minerals in calcium carbide slag have low removal capacity of submicron fine-grained clay minerals, and the removal capacity of quartz, mullite, and albite micron-level cyclone less, the problem of obtaining calcium raw material product purity is still low

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  • Method for removing non-calcium mineral impurities in carbide slag

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Embodiment Construction

[0028] The implementation of the present invention will be described in detail below in conjunction with the drawings and examples.

[0029] Such as figure 1 As shown, a method for removing non-calcareous mineral impurities in calcium carbide slag of the present invention comprises the following steps:

[0030] Step Ⅰ, sieving with 315μm sieve

[0031] Dry sieve carbide slag raw materials with a sieve mesh size of 315 μm, and use an electromagnetic three-dimensional vibrating sieve or an ultrasonic vibrating sieve for the sieving instrument. The oversize material (+315μm) is the material containing impurities; the undersize material (-315μm) is the primary purified carbide slag material.

[0032] Step II 1 , dry magnetic separation

[0033] The ferrosilicon material in the +315μm calcium carbide slag was extracted by dry magnetic separation with a magnetic separator, and the remaining non-magnetic material was impurity 1. Ferrosilicon is a strong magnetic mineral, so a ma...

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Abstract

The invention relates to a method for removing non-calcium mineral impurities in carbide slag. The method comprises the following steps of screening carbide slag raw materials by using a sieve with the sieve pore size of 315 [mu]m, and performing secondary screening on sieved materials by using a sieve with the sieve pore size of 18 [mu]m; adding water and a dispersing agent into oversize materials to prepare slurry; and performing grinding in a ball mill to prepare a carbide slag suspension liquid in a ball mill, pumping the carbide slag suspension into a hydrocyclone for grading and sorting, performing filtering to obtain an overflow material, and performing sorting to obtain the final product high-calcium carbide slag. The carbide slag raw materials are sorted by adopting a physical method. A high-calcium carbide slag material and a silicon iron material product are obtained. Impurities are selected for three times in the sorting process. According to the method, clay minerals are removed in the screening and sorting process, so that the burning base CaO content in carbide slag slurry is improved; and meanwhile, because the dispersing agent is adopted to prepare the uniform suspension liquid, the sorting efficiency of a swirler is improved.

Description

technical field [0001] The invention belongs to the technical field of calcium carbide slag resource utilization, in particular to a method for removing non-calcareous mineral impurities in calcium carbide slag. Background technique [0002] Carbide slag is the off-white solid residue produced when calcium carbide reacts with water to generate acetylene gas, containing about 85-95% Ca(OH) 2 , 1~10%CaCO 3 , 1 to 3% unreacted carbon particles, quartz, silicon compounds and silicates. The resource utilization of calcium carbide slag includes two ways: direct utilization and reutilization after processing. The common large-scale direct utilization method is as a raw material or material for cement production, soil improvement, and acid wastewater treatment. Due to the limited amount of carbide slag directly used by local production enterprises, the high cost of transporting this low-value material across regions, and the limitation of the technical conditions and technical le...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B03B7/00C01F11/16
CPCB03B7/00C01F11/16C01P2006/80
Inventor 侯新凯石一鸣王丹郭海涛武志江刘犇李周赵炜
Owner XI'AN UNIVERSITY OF ARCHITECTURE AND TECHNOLOGY