Polyaluminium Chloride Plant Polyaluminum Chloride

Polyaluminium Chloride Plant Polyaluminum Chloride

Polyaluminium Chloride Plant Polyaluminum Chloride for short polyaluminum,also name PAC, is a kind of polyhydroxyl, polynuclear complex cationic inorganic polymer flocculant. Solid product appearance is yellow or white solid powder, liquid product appearance is light yellow liquid. Epoch Master® has a large supply of liquid and solid polyaluminum. And the poly aluminum chloride price is affordable.Welcome to buy Polyaluminium Chloride Plant Polyaluminum Chloride from us.

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Product Description

Code : 2520.20.90
Item : PC
Chemical Name : Polyaluminium Chloride Plant Polyaluminum Chloride
Other Name : Aluminum chlorohydrate; Poly Aluminum Chloride; Aluminum chloride, basic
CAS No. : 101707-17-9
Molecular Weight : 145.15 g mol-1
Molecular Formula : Al2Cl(OH)5
EINECS : 215-477-2
H.S CODE : 2818200000


Epoch Master® Polyaluminium Chloride Plant Polyaluminum Chloride is widely used in domestic water, industrial water and other water purification treatment, urban sewage treatment, industrial wastewater, sewage, sludge treatment and sewage in some slag recovery, at the same time for some difficult treatment of industrial sewage, PAC as the mother, mixed with other agents, mixed into the compound PAC, Treating sewage can yield surprising results.Epoch master have a favorable price of Polyaluminium Chloride Plant Polyaluminum Chloride. If you have any needs, you can contact us at sales01@epoch-master.com. Looking forward to your information.

Polyaluminium Chloride Plant Polyaluminum Chloride is slightly acidic and non-toxic. After diluting with water, alkaline polynuclear complex or bridging complex with complex ion structure is formed, and finally alumina hydroxide is precipitated. In the hydrolysis process, accompanied by electrochemical, condensation, adsorption and precipitation physical chemical processes, so as to achieve the purpose of water purification.


Product Description

Handling and storage

Precautions for safe handling

Handling in a well ventilated place. Wear suitable protective clothing. Avoid contact with skin and eyes. Avoid formation of dust and aerosols. Use non-sparking tools. Prevent fire caused by electrostatic discharge steam.

Conditions for safe storage, including any incompatibilities

Store the container tightly closed in a dry, cool and well-ventilated place. Store apart from foodstuff containers or incompatible materials.


Application

Treatment of oily wastewater

Oil-bearing wastewater mainly refers to the large amount of produced water produced by the exploitation of crude oil in oil fields, the oil-bearing wastewater discharged by oil refineries and petrochemical plants, and the oil-bearing wastewater produced by the cleaning of oil tankers and vehicles. The treatment of oil-bearing wastewater mainly adopts the methods of oil separation sedimentation, air flotation and biochemistry. PAC combined with modified cationic polyacrylamide, flocculation precipitation filtration treatment of oily wastewater, has a very good treatment effect. Modified cationic polyacrylamide relative molecular weight can not be too high, and easy to compound with PAC to achieve the ideal effect.


Treatment of papermaking wastewater

Paper industry wastewater discharge is large, its middle section water accounts for a large proportion, and many paper enterprise black liquor after pretreatment (anaerobic, strong acid treatment, cellulose separation, neutralization, etc.) also mixed with the middle section water treatment.


Dyeing wastewater treatment

Printing and dyeing wastewater has high COD, chroma and pH value, and admixture coagulation is a common method to treat it. Although PAC has good coagulation effect and low dosage required, its neutralization ability to printing and dyeing wastewater with high alkalinity is poor, and its application is limited to a certain extent. The traditional coagulant Al2Chemicalbook(SO4)3 was hydrolyzed to produce H+, which could neutralize alkali in printing and dyeing wastewater. It is proved that the two coagulants can reduce the treatment cost and improve the treatment effect of printing and dyeing wastewater by using the complementary advantages of the two coagulants and the synergistic effect of the same ion effect.


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