A device for producing basic magnesium carbonate by pyrolyzing heavy magnesium water

A technology of heavy magnesium water and magnesium carbonate, applied in the direction of magnesium carbonate, etc., can solve the problems such as failure to achieve great changes in production input and overall operating benefits, high comprehensive cost, low thermal efficiency, etc., and achieve good industrial application prospects and solutions. Easy to scale and block, and the effect of high heat energy utilization rate

Inactive Publication Date: 2017-01-11
JISHOU UNIVERSITY
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0003] In industrial production, the concentration of magnesium in heavy magnesium water is low, usually 8-15g / L (calculated as MgO). It takes a lot of heat energy to heat and pyrolyze a large amount of aqueous solution, while the traditional pyrolysis temperature is 95-105°C. Its energy consumption accounts for more than 60% of the entire magnesium salt production. The current pyrolysis technology has made some continuous improvements to the traditional pyrolysis technology: one is to improve the continuous production of negative pressure and realize low-temperature continuous production; Utilize low-level heat energy to achieve graded utilization of heat energy, but they are all slightly modified on the basis of the original device, and no major changes have been achieved in terms of production input and overall operating efficiency.
[0004] Such as patent CN200910180206.6 (special device for continuous production of light magnesium carbonate by low-pressure pyrolysis), still need to use boiler and vacuum pump, and the thermal efficiency of boiler is low, as a kind of hot water boiler, directly heat heavy magnesium water, long-term use Afterwards, it is easy to foul, the heat transfer effect is worse, and the thermal efficiency is lower. The vacuum pump consumes a lot of power, the system is negative pressure, and the investment of the whole device is also large. Although the production cost is lower than that of the traditional device, the overall cost is still high. , industrial production can not show benefits
[0005] Such as patent CN201210147887.8 (method and device for producing basic magnesium carbonate by pyrolyzing heavy magnesium water) in its embodiment involves 20g / L, even reaches 100g / L heavy magnesium water containing magnesium oxide concentration, to produce such high concentration Heavy magnesium water itself requires a high cost, which does not meet the reality of industrial production; or involves high-temperature liquid at 90°C, which is difficult to achieve with low heat energy, or requires high cost to achieve
For the utilization of low-level heat energy, thermal media such as molten salt and heat-conducting oil are also taken into consideration. In this way, a single device for obtaining low-level heat energy requires a large amount of capital investment, which is higher than that of a coal-fired boiler with the same power, so the fixed investment of the entire pyrolysis device is very large. The production cost saved is not enough to offset the depreciation of equipment, and the production cost is too high

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  • A device for producing basic magnesium carbonate by pyrolyzing heavy magnesium water

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Embodiment Construction

[0019] The technical solutions of the present invention will be further described below in conjunction with the accompanying drawings and through specific implementation methods.

[0020] Such as figure 1 As shown, a device for producing basic magnesium carbonate by pyrolyzing heavy magnesium water mainly includes a burner 1, a hot blast stove 2, and a pyrolysis tank 7. The heat cylinder 4 is connected through pipelines, and the atomization pressure nozzle 3 is arranged inside the first-stage heat exchange cylinder 4, and the first-stage heat exchange cylinder 4 is connected with the pyrolysis tank 7, and the top of the pyrolysis tank 7 is connected to the cyclone The separator 10 is connected through a pipeline near the top, and the bottom of the pyrolysis tank 7 is connected with a filter press pump 21 through a pipeline, and the filter press pump 21 is connected with a filter press 22 through a pipeline, and the pyrolysis tank 7 is connected through a pipeline. A preheatin...

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Abstract

The invention discloses a novel device for preparing basic magnesium carbonate by pyrolyzing heavy magnesium water. The device mainly comprises a combustor, a hot-blast furnace, a pyrolysis tank, heat exchange barrels, a cyclone separator and a preheating coiled tube, wherein the hot-blast furnace is connected with the first-stage heat exchange barrel; an atomization pressure nozzle is arranged in the first-stage heat exchange barrel; the first-stage heat exchange barrel is connected with the pyrolysis tank; the top of the pyrolysis tank is connected with a part close to the top, of the cyclone separator; one end of the preheating coiled tube is connected with a heavy magnesium water storage groove through a heavy magnesium water conveying pump; the other end of the preheating coiled tube is connected with the second-stage heat exchange barrel through a pipeline; one end of the second-stage heat exchange barrel is connected with the top of the cyclone separator through a pipeline; the other end of the second-stage heat exchange barrel is connected with a preheating tank; the preheating tank is connected with the first-stage heat exchange barrel through a pump. The equipment disclosed by the invention is simple, low in fixed investment, low in running expense, low in pyrolysis temperature, less in energy consumption, high in heat energy utilization rate, not liable to scale and block, and good in product quality.

Description

technical field [0001] The invention belongs to the technical field of producing magnesium carbonate with high bulkiness by carbonization of dolomite or magnesite, and in particular relates to a device for preparing basic magnesium carbonate by pyrolyzing heavy magnesium water. Background technique [0002] The aqueous solution of magnesium bicarbonate is commonly called heavy magnesium water, and magnesium bicarbonate is an unstable weak acid salt. The pyrolysis referred to in the present invention is that heavy magnesium water is heated and decomposed into basic magnesium carbonate precipitation (also known as light magnesium carbonate) and The process of releasing carbon dioxide. The main reaction formula is as follows: 5Mg(HCO 3 ) 2 +nH 2 O=4MgCO 3 ·Mg(OH) 2 4H 2 O↓+6CO 2 ↑+nH 2 O. [0003] In industrial production, the concentration of magnesium in heavy magnesium water is low, usually 8-15g / L (calculated as MgO). It takes a lot of heat energy to heat and pyrol...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C01F5/24
Inventor 高峰颜文斌银永忠王兆兵华骏
Owner JISHOU UNIVERSITY
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