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+86-13704995315

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GF105管式离心机

【主要用途】 用于分离各种乳浊液,特别适用于二相比重差甚微的液-液分离以及含有少量杂志的液-液-固分离 例如,变压器油,透平油、润滑油、燃料油、染料、油脂、皂化,各种微粉物料,Span-80料液的提纯,各种口服液,各种药液,“九二0”的分离;血浆生物药品的分离及从动物血中提取血浆;食用油,蔡盘浸泡液,茶多酚,大豆浓缩磷脂的精致,油水分离及污水处理等。

详细介绍
【型号及规格参数】
型号 GF系列离心机 通水能力(t/h) 电机功率(kw) 整机重量(kg) 外形尺寸(mm)
直径(mm) 转鼓容积(L) 转速(r/min)
GF150 142 10 10000-14000 1.5 3 700 600*500*1670
GF125 125 8 9000-15000 1.3 3 600 600*500*1670
GF105 105 6 8000-16300 1.2 2.2 450 600*500*1670
GF75 75 2 10000-20000 0.6 1.5 300 500*450*1200
 
 
【主要用途】
用于分离各种乳浊液,特别适用于二相比重差甚微的液-液分离以及含有少量杂志的液-液-固分离.
例如,变压器油,透平油、润滑油、燃料油、染料、油脂、皂化,各种微粉物料,Span-80料液的提纯,各种口服液,各种药液,“九二0”的分离;血浆生物药品的分离及从动物血中提取血浆;食用油,蔡盘浸泡液,茶多酚,大豆浓缩磷脂的精致,油水分离及污水处理等。
 
 
【工作原理】
分离机由机身、传动系统、转鼓、集液系统、进液系统组成。
转鼓上部与挠性主轴链接,底部是阻尼滑动轴承。
密度大的液相形成外环,密度小的液相形成内环,流动到转鼓上部各自的出液口排出,微量固体沉积在转鼓壁上,待停机后人工卸出。





GF105 tubular centrifuge 
 
Specification
Model GF series tubular centrifuge Water supply capacity(t/h) Motor power(kw) Overall weight(kg) External dimensions(mm)
Diameter(mm) Bowl Volume(L) Speed(r/min)
GF150 142 10 10000-14000 1.5 3 700 600*500*1670
GF125 125 8 9000-15000 1.3 3 600 600*500*1670
GF105 105 6 8000-16300 1.2 2.2 450 600*500*1670
GF75 75 2 10000-20000 0.6 1.5 300 500*450*1200
 
 
 
Characteristics
It is used to separate various emulsions, especially for liquid-liquid separation with little difference in specific gravity between two phases and liquid-liquid-solid separation with a small amount of magazines.
For example, transformer oil, turbine oil, lubricating oil, fuel oil, dye, grease, saponification, purification of various micropowder materials, SPAN-80 feed liquid, separation of various oral liquids, various liquid medicines, and "920";  Separation of plasma biological drugs and extraction of plasma from animal blood;  Edible oil, Cai pan soaking solution, tea polyphenol, refinement of soybean concentrated phospholipid, oil-water separation and sewage treatment, etc.
 
 
Principle】
The separator consists of a machine body, a transmission system, a rotating drum, a liquid collecting system and a liquid inlet system.
The upper part of the rotating drum is linked with the flexible main shaft, and the bottom part is a damping sliding bearing.
When the equipment works, the rotating drum rotates at high speed around its own axis, forming a strong centrifugal force field.  The material is injected from the liquid inlet nozzle of the bottom liquid inlet system, and the centrifugal force in the rotating drum forces the material liquid to flow upward along the inner wall of the rotating drum and delaminate due to the density difference of different composition of the material liquid.




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