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An industrial-grade energy-saving and water-saving mvr continuous evaporation crystallization system

An evaporation crystallization and water-saving technology, applied in evaporation, solution crystallization, steam pressurized evaporation, etc., can solve the problems of wasting water resources, less consideration of water recycling, and unsatisfactory energy-saving effects, and achieve reasonable process and low equipment cost. Low cost and good for continuous production

Active Publication Date: 2016-06-15
乌海时联环保科技有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Due to unreasonable process design, many mechanical vapor recompression continuous evaporation and crystallization systems generally only have a single-stage steam compressor to supply heat to the evaporator. The crystallization effect of the recompression continuous evaporation crystallization system is not good, such as the problem of fine crystal particle size.
Of course, some manufacturers will add steam pipes to supplement the heating of the crystallization part, but this greatly increases the complexity of the MVR system and relies on steam boilers, making the MVR system lose its original significant advantage - get rid of the dependence on steam boilers
[0004] In view of these problems, the publication number is CN103203116A Chinese Invention Patent Application Publication Specification discloses a mechanical vapor recompression continuous evaporation crystallization system and method to solve the above problems, the mechanical vapor recompression continuous evaporation crystallization system uses two mechanical vapor compression machine, and the two compressors supply heat to the evaporator and the crystallizer respectively, and also recover the sensible heat of the cooling water for preheating, but the continuous evaporation and crystallization system uses two mechanical steam compressors, purchased The equipment cost of two mechanical steam compressors is very high, and there is no reasonable structure to preheat the material to the bubble point temperature, so the energy consumption of starting the two compressors is also high, and the structure is complicated, resulting in unsatisfactory energy saving effect
[0005] In addition, in addition to saving energy, the existing MVR continuous evaporation and crystallization system rarely considers the recycling of waterways, resulting in the continuous production process of the existing MVR continuous evaporation and crystallization system. Heat energy, to prevent the pollution of cooling water, and a large amount of new steam is required to fill in, wasting water resources

Method used

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  • An industrial-grade energy-saving and water-saving mvr continuous evaporation crystallization system

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Experimental program
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Effect test

Embodiment 1

[0020] Such as figure 1 Shown is an industrial-grade energy-saving and water-saving MVR continuous evaporation crystallization system, which is mainly composed of raw material inlet 1a, water supply inlet 1b, preheater 2, rising film evaporator 3, gas-liquid separator 4, a mechanical steam re- Composed of compressor 5, forced circulation evaporator 7, pipe heater 12, crystallization separator 6, buffer tank 13, forced circulation pump 10 and cooling water delivery pump.

[0021] Such as figure 1 As shown, the above-mentioned belt preheater 2, rising film evaporator 3 and forced circulation evaporator 7 mainly heat the materials flowing into them through heat exchange. The input end of the material flows through the output end of the material that flows out to complete heating or evaporation; it also has a heat source input end that flows into the heat source and a cooling water output end, a total of four ports. Such as figure 1 , the reference signs are as follows: the mat...

Embodiment 2

[0039] The difference between Embodiment 2 and Embodiment 1 is that the mechanical vapor compressor 5 of this embodiment is a centrifugal compressor, and the rest of Embodiment 1 is repeated.

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Abstract

The invention relates to an industrial grade energy-saving and water-saving type MVR (mechanical vapor recompression) continuous evaporative crystallization system. The industrial grade energy-saving and water-saving type MVR (mechanical vapor recompression) continuous evaporative crystallization system comprises a raw material inlet, a water supplementing inlet, a preheater, a film-rising evaporator, a gas-liquid separator, a compressor, a pipeline heater and a crystallization separator, wherein an inlet, a first outlet, a second outlet and a third outlet are formed in the gas-liquid separator, the preheater is connected with the film-rising evaporator by a pipeline, the film-rising evaporator is connected with the inlet of the gas-liquid separator, the compressor is connected between the gas-liquid separator and the film-rising evaporator by a steam conveying pipeline, a circulation evaporator is connected between the second outlet and the inlet by a pipeline, cooling water after heat exchange in the film-rising evaporator and cooling water after heat exchange in the circulation evaporator are used as heat sources of the preheater, the cooling water is fed into the preheater, the cooling water output end of the preheater and the water supplementing inlet are used for commonly supplementing water for the system; and the crystallization separator is connected with the first outlet in the gas-liquid separator. The system has low cost, is water-saving, energy-saving and raw material-saving, and has a good crystallization effect.

Description

technical field [0001] The invention relates to an industrial-grade MVR continuous evaporation crystallization system with both energy-saving and water-saving effects. Background technique [0002] Mechanical vapor recompression Mechanical VaporRecompression technology is a high-efficiency energy-saving and environmental protection technology, referred to as MVR. Although many MVR continuous evaporation and crystallization systems using mechanical vapor recompression technology are disclosed in the prior art, there are not many of them in industrial applications. [0003] Due to unreasonable process design, many mechanical vapor recompression continuous evaporation and crystallization systems generally only have a single-stage steam compressor to supply heat to the evaporator. The crystallization effect of the recompression continuous evaporation crystallization system is not good, such as problems such as small crystal particle size. Of course, some manufacturers will add...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01D9/02B01D1/00B01D1/28
Inventor 陈式好
Owner 乌海时联环保科技有限责任公司
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