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Industrial Application of Fluidized Drying Technology

Source: | Release date: 2009-07-29 00:00:00 | View: 26

Abstract:

Fluidized bed technology involves the application of heat transfer and mass transfer theory in various production areas such as drying, cooling, calcination, grading, desolvation, incineration, granulation, reaction……

Fluidized bed technology involves the application of heat transfer and mass transfer theory in various production areas such as drying, cooling, calcination, grading, desolvation, incineration, granulation, reaction, agglomeration and coating, The ideal process, is currently widely used in petrochemical, fine chemicals, pharmaceuticals, food, grain and oil, waste treatment and so on. I have a variety of fluidized bed models, to meet the characteristics of different processing materials and process conditions, and according to user requirements design and processing the overall process.
1, the polymer: ABS-copolymer, plexiglass, polycarbonate, polyethylene, polypropylene, polyvinyl chloride, polystyrene, polyacrylamide and other water or organic volatile solvent drying and cooling. Most of these polymers are not heat-resistant and require precise control of residence time and temperature. My company has a patented dual vitreous vibrating fluidized bed is particularly suitable for such materials, dry, good drying effect, low energy consumption.
2, chemical products: ceramics, dyes, salt, detergents, inorganic salts, organic chemistry and pharmaceuticals, fertilizers and other areas of production can use fluidized bed drying and processing systems.
3, pharmaceutical products and biochemical products: antibiotics, pharmaceuticals, enzymes, fermentation products, protein, vitamins, yeast and so on.
4, food and dairy products: for example: baby food, carbohydrates, coffee, dairy products, food additives, health food extracts and soup and so on.
At present you can use fluidized bed production and processing of the material table:
ABS plastic (acrylonitrile, butadiene, styrene terpolymer), oxalic acid, ammonium hydride, ammonium nitrate, calcium chloride, calcium formate, calcium chloride, calcium hypochlorite, calcium sulfate, cellulose derivatives Citrate, coal, copper sulfate, crystalline sugar, diammonium phosphate, dicalcium phosphate, granulated fertilizer, hydroquinone, ferric sulfate, lactose, latex resin, lysine, magnesium sulfate, pentaerythritol, Propylene, polystyrene, potassium carbonate, potassium chlorate, potassium chloride, potassium nitrate, potassium phosphate, sodium potassium tartrate, potassium sulfate, polyvinyl chloride, sewage sludge, sodium bicarbonate, sodium bromide, sodium potassium Sodium sulfate, sodium sulfate, sulfuric acid, sulfuric acid, waste water sludge, barium sulfate, magnesium sulfate, sodium sulfate, zinc sulfate, copper sulfate, aluminum sulfate, soybean, soybean, soybean, starch, starch derivatives, tartaric acid, Nickel sulfate, potassium bromide, ammonium bromide, sodium carbonate, basic nickel carbonate, basic zinc carbonate, sodium carbonate, Basic chromium sulfate, calcium carbonate, sodium metasilicate Sodium, sodium, potassium acetate, sodium benzoate, feed yeast (single cell protein), choline chloride powder, corn, soybean, mung bean, sesame, compound amino acid, acrylamide monomer, polyacrylamide, SMP, APC, nylon 1010, Polypropylene resin, polyester chips, polytetrafluoroethylene, phenolic resin, oxytetracycline, tetracycline, glucose, anhydride, dyes, salt, catalyst particles, humic acid, humic acid sodium.

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