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Industrial Chemicals

We offer the best product range of Calcium Stearate, Dioctyl Phthalate, Polyethylene Wax, petroleum wax and Vinyl Acetate.

Calcium Stearate

Calcium Stearate is a white coloured powderywaxy substance that is obtained when soap is mixed with water that contains ions of Calcium. It is essentially a synthetic ingredient that is a product obtained as a reaction between Stearic Acid and Calcium Oxide, when heated together. Calcium Stearate is generally non-toxic. It is considered to be the most important type of Calcium Salt.Calcium Stearate is not poisonous for human consumption because of which it is commonly used in the manufacture of Pharmaceutical consumables and Food Products. The Cement Industry constantly employs Calcium Stearate. The Paper Industry also employs Calcium Stearate for enhancing the sheen and to prolong the life of Paper. Calcium Stearate is also used in the manufacture of a variety of Tablets and Capsules. It is used in the manufacture of PVC products such as PVC Compounds, Rigid PVC Pipes, Cables, Poly Propylene, Plastic, Explosives, Foundry Chemicals, Cement, Paints, and Cosmetics. The Food Industry uses Calcium Stearate in the manufacture of Spices and Salt, Confections, Supplements etc.
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Dioctyl Phthalate

Dioctyl Phthalate abbreviated as DOP is a general-purpose plasticizer. It is mainly used for improving the softness and pliability of PVC. DOP is essentially the phthalate ester of 2-Ethyl Hexanol. First, esterification is performed between Phthalic Anhydride and 2-Ethyl Hexanol. This esterification reaction occurs in two steps. In the first step, alcoholysis of Phthalic Acid takes place which results in the production of monoesters. In the second reaction step, monoester is converted into di-ester. To accelerate the reaction, temperature elevation and introduction of a catalyst takes place. Excess alcohol produced in the reaction is recovered and recycled. Finally, the DOP produced is purified through vacuum distillation andor by using activated charcoal. The entire reaction sequence occurs within a closed system.
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Polyethylene Wax

There are two major manufacturing processes for Polyethylene Wax namely, High Pressure Polymerisation and Low Pressure Polymerisation. Low Pressure Polymerisation is a controlled thermal degradation of high molecular weight Polyethylene. In the high-pressure reaction, Polyethylene Wax is prepared from either Polyethylene or Ethylene. Batch processing technology is employed for making PE wax in the degradation technique. This is because it is based on the Thermal Cracking Method and is cost effective as opposed to the Continuous Process Technology. In this degradation technique, by-products such as wax gel and wax emulsion are also obtained. The Technology for manufacturing Polyethylene Wax using either of the two processes as mentioned above was developed by an American Company which used Scrap HDPE and LDPE as the Raw Material.
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Petroleum Wax

Paraffin Wax is a solid substance derived from either one of Petroleum, Coal, or Shale. It constitutes of a mixture of Hydrocarbon molecules with anywhere between twenty and forty Carbon atoms. It has a very unreactive nature. Fully Refined Paraffin Wax contains less than 0.5% Oil and are made free of impurities and decolouration by hydro-treating or clay-treating them. As the refine grade of Paraffin Wax goes down, the Oil content increases up to 1.5%. Fully Refined Paraffin Wax is free of water and odour and is deemed a food grade substance. It has a clearly defined crystal structure and is hard and brittle in appearance. It has good physical stability and cannot be deformed easily.
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Vinyl Acetate

Ethylene-Vinyl Acetate is a Commodity Polymer that is a copolymer of Ethylene and Vinyl Acetate. EVA copolymer is classified into three categories according to Vinyl Acetate content present. The first type is EVA containing low VA percentage. This category of Ethylene-Vinyl Acetate is used as a Thermoplastics Material. The second type of EVA consists of 4% to 30% of VA and it is used as a Thermoplastic Ethylene-Vinyl Acetate. The third category of Ethylene-Vinyl Acetate consists of more than 40% VA and it is used as Ethylene-Vinyl Acetate Rubber. The process of manufacturing Ethylene-Vinyl Acetate involves a method wherein Ethylene and Vinyl Acetate are continuously polymerised. This continuous polymerisation is performed in a Polymerising Vessel.
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Titanium Tetrachloride

The by-product from this reaction is Iron Sulphate which is then crystallised and filtered off. Only the Titanium Salt remains in the Digestion Solution. This Titanium Salt is called Synthetic Rutile. Synthetic Rutile is further processed to obtain Titanium Dioxide. Synthetic Rutile is prepared specifically for the extraction of Titanium Dioxide. Titanium Dioxide can also be produced through Nanotechnology by Solvothermal Synthesis. The Becher process can also be used to produce Synthetic Rutile from Ilmenite. Crude Titanium Dioxide that occurs as Synthetic Rutile is purified through a Chloride process by converting it into Titanium Tetrachloride.
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