• High Purity Aluminium Potassium Sulphate for Sale System 1
  • High Purity Aluminium Potassium Sulphate for Sale System 2
High Purity Aluminium Potassium Sulphate for Sale

High Purity Aluminium Potassium Sulphate for Sale

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
20 m.t.
Supply Capability:
6000 m.t./month

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Aluminium Sulphate

Property:

It is white or grey flake,particle or massive crystallization.Apt to cake after moisture absorption when laid in air for a long time.A little green because of Fe2+ ,yellow when Fe2+ is oxided to Fe3+.Soluble in water easily,and water solution is acid.

Specification:

Item

 Grande


Excellence

Grade A

Quality

Apperance

White flake,lump,granular or powder

Al2O3 %

17.00

16.00

15.80

Fe %

0.005

0.005

0.01

PH

3.0

3.0

3.0

As %

0.0005

0.0005

0.0005

Water Insoluble %

0.1

0.2

0.3

Packing

PP/PE,50KG or 25KG/BAG

Applications:

Water effluent treatment system It's used for purification of drinking water and wastewater treatment by settling of impurities by means of precipitation and flocculation.

Paper Industry It helps in sizing of paper at neutral and alkaline pH, thus improving paper quality (reducing spots and holes and improving sheet formation and strength) and sizing efficiency.

Textile Industry It is used for color fixing in Naphthol based dyes for cotton fabric.

Other Uses Leather tanning, lubricating compositions, fire retardants; decolorizing agent in petroleum, deodorizer; food additive; firming agent; dyeing mordant; foaming agent in firefighting foams; fireproofing cloth; catalyst; pH control; waterproofing concrete; aluminum compounds, zeolites etc.

3.Applications:

Water effluent treatment system
It's used for purification of drinking water and wastewater treatment by settling of impurities by 

means of precipitation and flocculation.

 

Paper Industry
It helps in sizing of paper at neutral and alkaline pH, thus improving paper quality (reducing spots 

and holes and improving sheet formation and strength) and sizing efficiency.

 

Textile Industry 
It is used for color fixing in Naphthol based dyes for cotton fabric.

 

Other Uses
Leather tanning, lubricating compositions, fire retardants; decolorizing agent in petroleum, deodorizer; food additive; firming agent; dyeing mordant; foaming agent in firefighting foams; fireproofing cloth; catalyst; pH control; waterproofing concrete; aluminum compounds, zeolites etc.

 

4. Package:

Packaging Detail: PP/PE 50kg/bag;25kg/bag;Jumbo bag or according to customers' requirements.

20-25MT will be loaded in per 20'FCL container.

 

5. Attention and Storage:

The product is liable to absorb moisture and clot due to long-term exposure, so shady, cool and ventilated environment is needed.



High Purity Aluminium Potassium Sulphate for Sale

Q: TRUE OR FALSE: the addition of salts to water will always increase the surface tension of water. explain.?
False. Although inorganic salts will increase surface tension of the water by increasing the attractive forces between water molecules on the surface, organic salts will typically (always?) decrease the surface tension.
Q: Do inorganic mercury salts bioaccumulate?
Yes they do bioaccumulate. Mercury builds up for years and years, and eventually sits in a residue of pure mercury. - JJ
Q: What are the important physiological effects of inorganic salts in cells
Composition of cells in some important compounds,
Q: Several inorganic salts are lacking in symptoms and food sources
Ingredients of iron-containing inorganic salts: fruit
Q: What are the effects of inorganic salts on plant growth?
In addition to these three types of inorganic salts, plants also require many types of inorganic salts. Among them, the demand for some inorganic salts is very small, but they are in the life of the plant also plays a very important role. For example, the lack of inorganic salts containing Fe, fruit trees will be yellow leaf disease; lack of inorganic salts containing B, rape will be "flowers and not real" (only flowering fruit).
Q: What is the inorganic salt, is not the organic salt and is not the inorganic salt
There is no concept of organic salt inorganic salt inorganic salts in the class of chanting
Q: Why are inorganic sodium salts much better soluble in ethanol than potassium salts?
Sodium ions are smaller cations than potassium ions. Ethanol has a polar bond in the OH, but it also has a nonpolar tail, the ethyl group. So, unlike water, that has two OH groups that are polar and can interact with cations, ethanol has only one, so it requires strong electrostatic attractions to form a hydrogen bond - dipole interaction with any cation that it encounters. Being smaller, the sodium ions have their positive charge concentrated over a much smaller volume, so the polar OH bond in ethanol is more strongly attracted to the concentrated charge of the sodium than to the diffuse charge of the potassium ion, making the salt more soluble in this solvent.
Q: What does salt form when it dissolves?
Most inorganic salts are ionic in nature and therefore it will dissociate in ions. For example Copper sulphate will dissociate in Cu+2 and SO4 -2 ions. If the dissociation energy of the salt is too high, it will remain partially or completely as salt in the solution. large number of organic salts do not dissociate completely and the solution will contain Ions and salt - both.
Q: The addition of inorganic salt viscosity of micelles increased first and then increased again and then reduced, there is no possibility ah? Yes, then what is the reason for the increase ah?
possible. The inorganic salt is dissolved in water to form positive and negative ions, and the ions of the micelles are extruded to make the solubility smaller and form an increase in the viscosity. With the increase in the amount of inorganic salt, it does not have the ability to dissolve in water, there is no micelles and the molecular state exists in the water, the liquid becomes thin ...
Q: What is the use of inorganic salts in plants? How is it discharged
Plants need inorganic salts, just as people need trace elements, the growth of auxiliary organisms can be through the leaves of the surface of the pores, with the water discharged together

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