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Sodium Amide

Sodium amide is a chemical compound. It is used in the industrial production of indigo, hydrazine, and sodium cyanide. It is the reagent of choice for the drying of ammonia and is also widely used as a strong base in organic chemistry, often in liquid ammonia solution. One of the main advantages to the use of sodamide is that it is an excellent base and rarely serves as a nucleophile.

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Sodium Azide

Sodium azide is an inorganic compound. This colourless azide salt is the gas-forming component in many car airbag systems. It is used for the preparation of other azide compounds. In the laboratory, it is used in organic synthesis to introduce the azide functional group by displacement of halides. Sodium azide is a useful probe reagent, mutagen, and preservative. In hospitals and laboratories, it is a biocide; it is especially important in bulk reagents and stock solutions which may otherwise support bacterial growth where the sodium azide acts as a bacteriostatic by inhibiting cytochrome oxidase in gram-negative bacteria; gram-positive are resistant, a characteristic similar to antibiotic resistance. It is also used in agriculture for pest control.

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Squeeze-Rite is formulated with natural and synthetic graphite, minerals, waxes, binders and polymers in various combinations to achieve specific quality, process or casting objectives. These products are proven performers and will provide added insulation, release and anti-solder while improving casting tensile strength, yields and porosity requirements.

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Supralatex® is a dispersion with optimum pigment / resin ratio for coloring natural latex, it ensures coloring while leaving manufacturing process variables and final product properties unchanged.

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Tert-Butanol is used as a solvent, as a denaturant for ethanol, as an ingredient in paint removers, as an octane booster for gasoline, as an oxygenate gasoline additive, and as an intermediate in the synthesis of other chemical commodities such as MTBE, ETBE, TBHP, other flavors and perfumes.

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Therminol 59

Therminol 59 is a synthetic heat transfer fluid with excellent low temperature pumping characteristics. Therminol 59 has surprisingly low viscosity for a high temperature heat transfer fluid. It is ideally suited for combination heating and cooling applications delivering excellent heat transfer rates even at 20°C.Therminol 59 is used in oil and gas processing, switch condensers, pharmaceuticals manufacturing.

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Therminol 62

Therminol 62 is a synthetic heat transfer fluid whose chemistry is custom contoured for high-performance, high-purity, low-pressure and exceptional thermal stability to 620°F (325 °C). Therminol 62 is designed for typical liquid phase heat transfer fluid systems which operate at low pressures. Therminol 62 can be used in oil and gas processing, biodiesel, plastics.

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Therminol 66

Therminol 66 is the world’s most popular high temperature, liquid phase heat transfer fluid. Suitable for operation up to 650° F (345° C).Therminol 66 sets the performance standard for high temperature liquid phase fluids. Therminol 66 is specifically engineered to resist solids formation and system fouling. Your system will operate more reliably and you will save money. Therminol 66 is used in chemicals, plastics, biodiesel.

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Therminol 68

Therminol 68 is a high temperature liquid phase heat transfer fluid with excellent thermal stability. Therminol 68 was developed for use at temperatures up to 360° C in liquid phase heat transfer fluid systems. Therminol 68 is used in refining process.

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Therminol 72

Therminol 72 is a high temperature liquid phase heat transfer fluid having excellent thermal stability. Therminol 72 was developed for use at temperatures up to 380° C in liquid phase heat transfer systems. Therminol 72 has been carefully selected to minimize the formation of low boilers and eliminate the risk of insoluble high boilers formation and fouling, provided proper attention is given to system design and operation within the maximum bulk and film temperatures specified. Therminol 72 is used in chemicals, refining.

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