Method for preparing magnesium-oxy-chloride cement by utilizing chromium slag produced through salt sub-melting technology

A technology of magnesium oxychloride cement and sub-molten salt, which is applied in the field of resource utilization of chromium slag, can solve the problems of concentrated heat release, cracking of hardened body, long duration, etc., and achieve simple and easy process and equipment flow, and realize resource utilization Use and improve the effect of structure and performance

Inactive Publication Date: 2013-05-29
INST OF PROCESS ENG CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] However, the shortcomings of magnesium oxychloride cement are also obvious: (1) poor water resistance, the strength of general magnesite products is reduced by 70-80% after soaking in water for 28 days; Large water droplets appear, or even water droplets flow; (3) Improper ratio or too high active magnesium oxide in raw materials will cause excessive reaction and concentrated heat release, resulting in warping and deformation of the product; (4) hardened body cracks, manifested as The heat release is large, the condensation is too fast, the early strength develops quickly and the later strength is low, and it swells into fragments when it meets water; longer time

Method used

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  • Method for preparing magnesium-oxy-chloride cement by utilizing chromium slag produced through salt sub-melting technology
  • Method for preparing magnesium-oxy-chloride cement by utilizing chromium slag produced through salt sub-melting technology
  • Method for preparing magnesium-oxy-chloride cement by utilizing chromium slag produced through salt sub-melting technology

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Experimental program
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Embodiment 1

[0043] Experimental ingredients: Liaoning Haicheng magnesite light burnt powder (passed through a 200 mesh sieve, the composition is shown in Table 2) 135g, chromium slag (passed through a 300 mesh sieve, the composition is shown in Table 1) 70g, magnesium chloride hexahydrate 101.5g, Ferrous chloride tetrahydrate 5g, calcium hydrogen phosphate dihydrate 8.5g, deionized water 110ml.

[0044] Experimental conditions: the molar ratio of magnesium oxide, magnesium chloride and water in magnesite lightly burned powder is 6:1:18, the theoretical excess of hexavalent chromium in ferrous chloride relative to chromium slag is 10%, and the addition amount of chromium slag is 20%. The amount of calcium hydrogen phosphate modifier added is 2%; room temperature (about 28°C), stirring speed 150rpm, reaction time 0.5h, curing molding time 24h, curing time 5 days, water resistance test time 28 days.

[0045] Experimental results: According to the cement product strength inspection standard, ...

Embodiment 2

[0047] Experimental ingredients: Liaoning Haicheng magnesite lightly burned powder (passed through a 200-mesh sieve, the composition is shown in Table 2) 135g, chromium slag (passed through a 300-mesh sieve, the composition is shown in Table 1) 63.5g, magnesium chloride hexahydrate 101.5g, Ferrous chloride tetrahydrate 4.5g, calcium hydrogen phosphate dihydrate 7.7g, deionized water 81ml.

[0048] Experimental conditions: the molar ratio of magnesium oxide, magnesium chloride and water in magnesite lightly burned powder is 6:1:15, the theoretical excess of ferrous chloride relative to hexavalent chromium in chromium slag is 10%, and the addition amount of chromium slag is 20%. The amount of calcium hydrogen phosphate added is 2%; room temperature (about 28°C), stirring speed 150rpm, reaction time 0.5h, curing molding time 24h, curing time 5 days, water resistance test time 28 days.

[0049] Experimental results: According to the strength inspection standard of cement products,...

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Abstract

The invention provides a method for preparing magnesium-oxy-chloride cement by utilizing chromium slag produced through a salt sub-melting technology. The method is characterized in that based on the characteristic that the chromium slag produced through the salt sub-melting technology is rich in magnesium oxide, the chromium slag can be used for replacing a part of magnesite light burning powder, thereby reducing the preparation cost of the magnesium-oxy-chloride cement; toxic hexavalent chromium in the chromium slag is reduced by utilizing ferrous iron, thereby eliminating the potential safety hazard; chromium slag produced through the salt sub-melting technology is rich in iron and can generate ferric hydroxide gel when used for preparing the magnesium-oxy-chloride cement, so that the compactness of products can be improved and then the wear resistance and the strength of the products can be further increased; and a modifier is added so as to improve the properties of the products, obtain a good water-resisting effect and eliminate the defects that the products are rimed and halogenated easily. During the preparation of the magnesium-oxy-chloride cement by utilizing the chromium slag produced through the salt sub-melting technology, neither strong acid nor strong base is involved, the method is carried out at normal temperature and normal pressure, the requirements on equipment materials are not high, the utilization rate of raw materials is high, the technological process is simple, and the method is a novel method for preparing the magnesium-oxy-chloride cement and recycling the chromium slag.

Description

technical field [0001] The invention relates to a method for preparing magnesium oxychloride cement and recycling chromium slag, in particular to a method for preparing magnesium oxychloride cement by using the chromium slag produced by a sub-molten salt process as a raw material, and realizing resource utilization of the chromium oxychloride. technical background [0002] The sub-molten salt process uses potassium hydroxide and chromite as raw materials to produce chromium oxide green. After a series of treatments, the chromium slag produced still contains hexavalent chromium and has a high content of magnesium, making its resource utilization a problem. At present, the treatment methods of chromium slag can be roughly divided into two categories: "source treatment" and "end treatment". The idea of ​​"source treatment" is to reduce the generation of chromium slag through new methods and new processes, which belongs to clean production and has not yet solved the problem fund...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B9/02
Inventor 王云山杨刚张金平
Owner INST OF PROCESS ENG CHINESE ACAD OF SCI
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