High quality factory Liquid filter bag (LD) series to Uruguay Factories
High quality factory Liquid filter bag (LD) series to Uruguay Factories Detail:
LD series adopt 100% pure PP/PET/PE/NY fiber, make it as needle-punched sterescopic bag. With characteristic of fluffy fibrous tissue, high void ratio increase the capacity of interception. Can remove solid and particles, bigger impurity will ne intercepted on the surface, the fine particles will be intercepted on the depth of the element. Make sure it wont be damaged when increasing operating pressure.
Car manufacture industry: Ultra-filter water, paint, pre-treatment fluid;
Chemical industry: lubricating oilpolymer, glue;
Food&Beverage: wine, white, white wine, beerfruit wine etc.
Electronic industry: slobents treatment, plating solution filtration;
Large filter area, high flow rate;
Highly developed three-dimensional structure, high void ratio;
Small fluid resistance, economical operation;
Low cost, high efficiency sterilization;
Filter media: PP/PET/PE/NY fiber
Sealing: hot melt
Seal ring: PP/PE/Stainless steel/Galvanized iron wire ring
|ItemModel||Bag 1||Bag 2||Bag 3||Bag 4||Bag 5|
|Material||聚乙烯(PE) 聚丙烯(PP) 尼龙(NY) 聚酯(PET)|
|Max differential pressure(bar)||EP/PP@1.03-1.72, NY/PET@1.03-2.41|
|Max temperature||PE@135℃，PP@94℃，NY@135℃ PET@135℃|
|Fix ring material||Galvanized iron wire ring|
See quality warranty or test report along with products
Product detail pictures:
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Froth Floatation Process
Froth flotation is a process for selectively separating hydrophobic materials from hydrophilic. This is used in several processing industries. Historically this was first used in the mining industry
The following steps are followed:
1.Grinding to liberate the mineral particles
2.Reagent conditioning to achieve hydrophobic surface charges on the desired particles
3.Collection and upward transport by bubbles in an intimate contact with air or nitrogen
4.Formation of a stable froth on the surface of the flotation cell
5.Separation of the mineral laden froth from the bath (flotation cell)
Simple flotation circuit for mineral concentration. Numbered triangles show direction of stream flow, Various flotation reagents are added to a mixture of ore and water (called pulp) in a conditioning tank. The flow rate and tank size are designed to give the minerals enough time to be activated. The conditioner pulp  is fed to a bank of rougher cells which remove most of the desired minerals as a concentrate. The rougher pulp  passes to a bank of scavenger cells where additional reagents may be added. The scavenger cell froth  is usually returned to the rougher cells for additional treatment, but in some cases may be sent to special cleaner cells. The scavenger pulp is usually barren enough to be discarded as tails. More complex flotation circuits have several sets of cleaner and re-cleaner cells, and intermediate re-grinding of pulp or concentrate.
froth flotation cell. Numbered triangles show direction of stream flow. A mixture of ore and water called pulp  enters the cell from a conditioner, and flows to the bottom of the cell. Air  or nitrogen is passed down a vertical impeller where shearing forces break the air stream into small bubbles. The mineral concentrate froth is collected from the top of the cell , while the pulp  flows to another cell.
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