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QPG series airflow spray dryer
The air flow spray drying process can be divided into two types according to the needs of the process. One is the top spray type, that is, the nozzle
Product details
Product Overview:
The air flow spray drying process can be divided into two types according to the needs of the process. One is the top spray type, that is, the nozzle is set on the top of the drying tower, and the atomized liquid and hot air flow from top to bottom to complete the drying process, which is suitable for drying materials with high viscosity and certain heat sensitivity; The second method is to set the nozzle at the bottom of the drying tower, and the atomized liquid and hot air work together from bottom to top to complete the drying process, which is suitable for drying materials with good temperature resistance. This method was originally used for drying traditional small-scale water reducing agents.
The atomizer of the air flow spray dryer is also called the air flow nozzle. The nozzle structure is generally simple. Low viscosity materials and high viscosity liquid can be atomized. The application range is wide. The particles obtained are fine, generally about 5-30 microns, and the operation flexibility is large. But its disadvantage is also very obvious, that is, the power consumption of compressed air used for atomization is relatively high, mainly used for atomization drying of high viscosity or high molecular weight organic liquids.
Airflow nozzles can be divided into two fluid and three fluid types based on their structure, with the two fluid type further divided into external mixing and internal mixing types.
Working Principle:
After being heated by clean air, it enters the drying tower and is transformed into tiny droplets using a two fluid (or three fluid) nozzle in the hot air inside the tower. It undergoes rapid heat exchange with the hot air, evaporates the water (or solvent) in the liquid material, and is discharged with the hot air to obtain powdered products.
Equipment features:
1. Especially effective for sticky, paste like, and paste like materials, which cannot be replaced by other equipment.
2. Experimental variety and wide application of low-temperature drying.
3. The nozzle structure is simple, easy to maintain, and has low operating costs.
4. The operating environment is good, and the dust emissions meet the national standard requirements.
5. The dried product has excellent quality, uniform particle size, good flowability, and uniform final moisture content.
Application scope:
foodAmino acid, condiments, protein, milk powder, pig blood powder, soy sauce powder, tea powder, glucose, potassium sorbate, essence and spices, etc.
Pharmaceutical products:Vitamins, traditional Chinese medicine, antibiotics, etc.
Chemical products:Disperse dyes, reactive dyes, organic catalysts, white carbon black, laundry detergent, potassium carbonate, potassium phosphate, various waste liquids, etc.
Technical Specifications:
|
Parameter model |
5 |
25 |
50 |
100 |
150 |
200 |
|
|
Evaporation rate Kg/h |
△ t=150℃~90℃ |
1.5 |
7.5 |
15 |
30 |
45 |
60 |
|
△ t=200℃~100℃ |
2.5 |
12.5 |
25 |
50 |
75 |
100 |
|
|
△ t=250℃~90℃ |
3.75 |
18.75 |
37.5 |
75 |
112.5 |
150 |
|
|
△ t=300℃~100℃ |
5 |
25 |
50 |
100 |
150 |
200 |
|
|
△ t=350℃~110℃ |
6 |
30 |
60 |
120 |
200 |
240 |
|
|
Compressed air (m3/min) |
0.9 |
0.9 |
1.1 |
1.5 |
2.7 |
3.4 |
|
|
Compressed air source (Mpa) |
0.4 |
0.6 |
0.7 |
||||
|
Heat source method |
Electric, electric+steam, coal-fired (oil) hot blast stove |
||||||
|
Heating capacity (Kcal/h) |
1 |
5 |
10 |
20 |
30 |
40 |
|
|
Fan power (kw) |
0.75 |
2.2 |
4 |
7.5 |
11 |
15 |
|
Note:
1. This device can be designed and manufactured according to actual needs for models larger than 200;
2. The fan power is standard configuration, and if bag dust removal and solvent recovery devices are added, they need to be modified accordingly.
Structural diagram:

Cooperative Clients
| Chaoyang Smart Sea Buckthorn Biotechnology Development Co., Ltd | Guangzhou Boji Biomedical Technology Park Co., Ltd | Shanxi Jinxin Shuanghe Pharmaceutical Co., Ltd |
| Shanghai Xingling Technology Pharmaceutical Co., Ltd | Beijing Tongrentang Health Pharmaceutical Co., Ltd | Shandong Potang Biotechnology Co., Ltd |
| Zhejiang Kangenbei Pharmaceutical Co., Ltd | Shandong Shengli Bioengineering Co., Ltd | Anhui Jiuzhou Fangyuan Pharmaceutical Co., Ltd |
| Hebei Meiwei Pharmaceutical Co., Ltd | Beijing Kanghua Yuanjing Technology Co., Ltd | Hebei Meiwei Pharmaceutical Co., Ltd |
| Anguo Juyao Tang Pharmaceutical Co., Ltd | Hebei Anguo Pharmaceutical Group Co., Ltd | Guizhou Tongwei Biotechnology Co., Ltd |
| Dalian Meiluo Biotechnology Co., Ltd | Anhui Weibo Traditional Chinese Medicine Co., Ltd | Zhejiang Yixin Pharmaceutical Co., Ltd |
| Hubei Haiderun Pharmaceutical Co., Ltd | Shandong Huaerkang Biotechnology Co., Ltd | Shandong Shengdebao Pharmaceutical Co., Ltd |
| Shanghai Wanshicheng Pharmaceutical Co., Ltd | Zhejiang Niutoushan Pharmaceutical Co., Ltd | Shandong Qidu Pharmaceutical Co., Ltd |
| Beijing Shunfu Technology Co., Ltd | Guangxi Nanzhu Pharmaceutical Co., Ltd | Beijing Handian Pharmaceutical Co., Ltd |
| Beijing Zhonghui Pharmaceutical Co., Ltd | Shandong Qihuang Pharmaceutical Co., Ltd | Shandong Qidu Pharmaceutical Co., Ltd |
| Anhui Jiren Pharmaceutical Co., Ltd | Anhui Zhewan Decoction Pieces Co., Ltd | Shanghai Baolong Pharmaceutical Co., Ltd |
| Shanghai Shuangji Pharmaceutical Co., Ltd |
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