• Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta
  • Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta

Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta

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Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta Detail:

Molasses alcohol waste liquid five-effect evaporation device

Overview

Source, characteristics and harm of molasses alcohol wastewater
Molasses alcohol wastewater is high-concentration and high-color organic wastewater discharged from the alcohol workshop of the sugar factory to produce alcohol after the fermentation of molasses. It is rich in protein and other organic matter, and also contains more inorganic salts such as Ca and Mg and higher concentrations. SO2 and so on. Normally, the pH of alcohol wastewater is 4.0-4.8, COD is 100,000-130,000 mg/1, BOD is 57-67,000 mgSs, 10.8-82.4 mg/1. In addition, most of this kind of wastewater is acidic, and the color is very high, brown-black, mainly including caramel color, phenolic color, Maillard color and so on. Since the waste liquid contains about 10% solids, the concentration is low and cannot be used. If it is directly discharged into rivers and farmland without treatment, it will seriously pollute the water quality and the environment, or cause soil acidification and compaction, and the growth of crop diseases. How to deal with and use the molasses alcohol waste liquid is a serious environmental problem facing the sugar industry.

Molasses alcohol waste liquid is highly corrosive and has high chroma, which is difficult to remove by biochemical method. Concentrated incineration or high-efficiency liquid fertilizer is the most thorough treatment plan at present.

The device adopts a five-effect forced circulation step-down evaporation system, with saturated steam as the heat source, one-effect heating and five-effect work. The molasses alcohol waste liquid with a concentration of 5 to 6% is concentrated and evaporated, and a concentrated slurry having a concentration of ≥ 60% is sent to the boiler for incineration, and the generated heat substantially satisfies the steam for the device. Evaporate the condensed water back to the previous section for dilution water.

Second, the process flow chart

Second, the process flow chart

Third, the process characteristics

1. Set the spare evaporator to clear the material, which can realize non-stop cleaning and ensure continuous production.

2. The device adopts automatic program control to save labor costs.

3. High processing efficiency and stable operation.

4. By using thick slurry to return to the boiler, molasses can produce alcohol without adding fuel.

5. A spare evaporator is set for the discharge effect, which can realize non-stop cleaning and ensure continuous production.

6. Alcohol can be produced from molasses without adding fuel through thick slurry to the boiler for reuse and molasses.


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Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta detail pictures


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Sticking to the perception of "Creating products of top of the range and earning mates with people today from all over the world", we constantly put the desire of consumers in the first place for Trending Products Common Alcohol Plant - Evaporation and crystallization technology – Jinta , The product will supply to all over the world, such as: Nepal, Canada, Kuwait, Our company has built stable business relationships with many well-known domestic companies as well as oversea customers. With the goal of providing high quality products to customers at low cots, we are committed to improving its capacities in research, development, manufacturing and management. We have honored to receive recognition from our customers. Till now we have passed ISO9001 in 2005 and ISO/TS16949 in 2008. Enterprises of "quality of survival, the credibility of development" for the purpose, sincerely welcome domestic and foreign businessmen to visit to discuss cooperation.
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