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Magnesium Hydroxide

Magnesium Hydroxide by Niknam Chemicals

Magnesium Hydroxide

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Antimony Trioxide

Our range of Antimony trioxide is produced from stibnite ores (antimony trisulfide) or as a by-product of lead smelting and production. Antimony Trioxide is used mainly in fire retardant formulations for plastics, rubbers, textiles, paper and paints. Further, Antimony Trioxide can be used as an additive in glass and ceramic products and as a catalyst in the chemical industry. Occupational exposure may occur during mining, processing and smelting of antimony ores, in glass and ceramics production, and during the manufacture and use of products containing antimony trioxide. Antimony trioxide and pentoxide do not react as flame-retardants directly. Antimony Trioxide are used as synergists to enhance the activity of halogenated flame-retardants by stepwise releasing the halogenated radicals to retard gas phase chain reaction of flame spread. Applications: Flame retardant for wide range of plastics, rubbers, paper and textiles Catalyst in PET production Activator in glass industry Flocculant in Titanium Dioxide production Paints and Adhesives industries Pigments, Ceramic frites Features: In flame retarding thermoplastics, the synergistic action between halogenated flame-retardants and antimony trioxide is well known in the plastic industry The Izod impact strength and translucency are two key properties that are diminished because of the particle size and pigmentation strength of antimony trioxide The loss in translucency limits the range of available color choices because of the high loading required to offset the tinting effect of antimony trioxide

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Magnesium Hydroxide

MAGNESIUM HYDROXIDE is a very finely grounded product having an extremely uniform and narrow particle size distribution. It is considered as a non halogenated, environment friendly and non toxic mineral based flame retardant & smoke suppressant. It is used in various plastics & rubber applications. The initial Decomposition Temperature of Magnesium Hydroxide is 320° C making it suitable for applications where the usage of Aluminium Trihydrate (ATH) has a limitation due to a higher polymer processing temperature of more than l 80°C. Due to its higher Decomposition Temperature than ATH, It is being used as an effective smoke suppressant in conjunction with ATH. TYPICAL CHEMICAL ANALYSIS:- PROPERTIES ANALYSIS Mg (OH2) 93.00% Min MgO 60.0-62.0% CaO 2.00-2.50% SiO2 1.00-1.50% Fe2O3 0.10-0.20% TYPICAL PHYSICAL ANALYSIS:- PROPERTIES ANALYSIS Specific Gravity 2.36+=0.02 Loss On Ignition 31.00%Max Max (1100 Deg C) Moisture Content 0.50% Max (105 Deg C) Coatings Available Silane & Stearic Average Particle Size (d50 By Laser Diffraction

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Aluminium Trihydrate

ALUMINIUM TRIHYDRATE (ATH) is a very finely grounded product having a uniform and controlled particle size distribution. Aluminium Trihydrate is the most effective low-cost Flame Retardant filler and is mainly used as a FLAME RETARDANT & SMOKE SUPPRESSANT in various Plastics & Rubber Applications. TYPICAL CHEMICAL ANALYSIS:- PROPERTIES ANALYSIS A1 (OH3) 99.50% Max A12O3 64.50% Min FE2O3 0.01% Max SiO2 0.01% Max Na2O (Total) 0.25% Max TYPICAL PHYSICAL PROPERTIES:- PROPERTIES ANALYSIS Specific Gravity 2.40+=0.02 Loss On Ignition 34.50% Max (1100 Deg C) Moisture Content 0.50% Max (105 Deg C) Coatings Available Silane & Stearic Average Particle Size 2.00-80.00 Mic (d50) (As Per Grade)

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