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Aluminium Isopropoxide Used as Dispersing Agent
Aluminium Isopropoxide Used as Dispersing Agent
Aluminium Isopropoxide Used as Dispersing Agent
Aluminium Isopropoxide Used as Dispersing Agent
Aluminium Isopropoxide Used as Dispersing Agent
Aluminium Isopropoxide Used as Dispersing Agent

Aluminium Isopropoxide Used as Dispersing Agent

Payment Type:L/C,T/T,D/P,D/A

Incoterm:FOB,CFR,CIF,EXW

Product Description
Product Attributes

Brandkopeo

CAS No.555-31-7

Purity99.9%min

Place Of OriginChina

TypePesticide Intermediates

Other NamesAIP

MFC9H21AIO3

EINECS No.209-090-8

ApplicationPharmaceutical Chemical

AppearanceWhite Powder

Boiling Point138°C

Supply Ability & Additional Information

Payment TypeL/C,T/T,D/P,D/A

IncotermFOB,CFR,CIF,EXW

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Aluminium Isopropoxide

Uses of aluminum isopropoxide
1.It is the intermediate of hormone drugs such as isophytol, testosterone, progesterone, norethindrone, and also one of the raw materials of aluminum acid ester coupling agent.
2.Used as reducing agent, strong dehydrating agent.
3.Used as raw material of dehydrating agent, catalyst and waterproofing agent.
4.Pharmaceutical Intermediates, organic catalytic reaction. Isophytol, testosterone, Wolff's oxides, progesterone, androstenedione, progesterone and other hormones such as pharmaceutical Intermediates, one of the raw materials for rubber and plastic processing of aluminate coupling agent, ink thickening agent - fatty acid alumina hexahydroxide compounds AOC18 raw materials, but also the use of active catalysts and carriers, inorganic membranes, suitable for reductant, dehydrating agent and waterproofing agent.

Synthesis of Aluminum Isopropoxide
Aluminum isopropoxide can be synthesized by several methods, including the direct reaction of aluminum with isopropoxide, the reaction of aluminum with isopropoxide in the presence of a catalyst, and the reaction of aluminum chloride with isopropoxide.
The most common method used to synthesize aluminum isopropanol is the direct reaction of aluminum with isopropanol. In this method, aluminum powder or foil is added to isopropanol and the mixture is heated to reflux. The reaction produces released hydrogen gas and aluminum isopropoxide, which forms as a yellow liquid.
Another method of synthesizing aluminum isopropoxide involves the reaction of aluminum with isopropanol in the presence of a catalyst. Typical catalysts used for this reaction are mercuric chloride or mercuric chloride. The reaction is carried out under mild conditions and yields higher yields of aluminum isopropoxide compared to the direct reaction method.
The reaction of aluminum chloride with isopropanol is another method for synthesizing aluminum isopropoxide. In this method, aluminum chloride is added to isopropanol and the mixture is stirred at room temperature. The reaction produces aluminum isopropoxide and hydrochloric acid as by-products. The resulting aluminum isopropoxide can be purified by distillation or recrystallization.
In summary, aluminum isopropoxide is an important precursor for aluminum-based materials such as alumina and zeolites. It is synthesized by several methods, including the direct reaction of aluminum with isopropanol, the reaction of aluminum with isopropanol in the presence of a catalyst, and the reaction of aluminum chloride with isopropanol. The choice of synthetic method depends on the specific application and the desired purity of the resulting aluminum isopropoxide.
Aluminium Isopropoxide

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(1)Water Treatment:The way of water treatment includes physical treatment and chemical treatment. Human water treatment methods have been quite a few years of history, physical methods, including the use of a variety of different pore size of the filter material, the use of adsorption or barrier way, the impurities in the water outside, adsorption method in the more important for the adsorption of activated carbon, barrier method is to pass the water through the filter material, so that the impurities of a larger size can not pass, and thus obtain cleaner water.

(2)Catalysts And AuxiliariesThe catalyst is the active component that really acts as a catalyst and reduces the activation energy of the reaction. The additives, on the other hand, are auxiliary components, either structural additives or electronic additives, which can improve the stability of the catalyst, while the electronic additives can modulate the electronic properties of the catalyst.Our main Catalysts and Additives products include Plastic AdditivesWater Treatment Agent.

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