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Grade : Technical Grade Formula : MgSO4.7H2O HS Code :28332100 Appearance :White crystals CAS NO : 10034-99-8 with the formula Assay % 98.00min ,Magnesium (as Mg) 9.60 min..pH(of1%aq.Soln) 6.5â??8.5,, Heavy metals (as Pb and As) %NIL ,,Iron Content (as Fe) PPM 70 max ,,Water Insoluble matter % 0.05 max
PRODUCT NAME : NITRIC ACID 68% FORMULA : HNO3 HS Code : 8080010 Appearance : Clear Colourless Liquid to Light yellow liquid CAS NO : 7697-37-2 with the formula Total Acidity (as HNO3 by mass (Purity) % 68.00 % min, Specific Gravity (at 20OC) 1.4 Nitrous Acid (As HNO2) by mass 0.01 max , Chlorides (as Cl) by mass 0.0002 max ,Sulphates (as H2SO4) by mass 0.0002 max , Residue on Ignition by mass 0.002 max, Iron Content (as Fe) by mass 0.0001 max
DCP is a DiCalcium phosphate Dihydrate product, with the formula CaHPO4.2H2O, with a minimum 18% P content and Min 23 % Ca content. Dihydrate means 2 molecules of water inside the phosphate and higher digestible product. The product has the highest digestibility of any DiCalcium phosphate one can find in the market. Purity is closely correlated with the bioavailability of phosphorus. In the traditional process, the more contaminated the raw material is, the more indigestible the feed phosphate's elements will contain. This is not the case with our processing technology.
MAP MONO-AMMONIUM PHOSPHATE (12/ 61 / 0) Boosts rooting and improves flowering Develop tillering in grain crops, and increases yield and quality Boots early maturity and productivity. Suitable to be used at the early growing stages, when the root, vegetables, and oil crops need plentiful phosphorus Content Percentage Total Nitrogen (NH â??-N) 12% Phosphorus (P â??O â??) 61% Potassium (K â??O) 0% Specification Crystalline fertilizer It has an acidic effect, which reduces the soil pH and increases the availability of micro-nutrients for plants Essential for seed germination and root development, especially at flowering and seed formation. Applications It can be used in all irrigation systems and as foliar spray (3-5 gm/L) Packaging 25 kg
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Melamine formaldehyde resin is a type of thermosetting plastic that is formed by the polymerization of melamine and formaldehyde. This resin is commonly used in various applications, including laminates, coatings, adhesives, and molded products. When you refer to "Concentrated Melamine Formaldehyde Resin," it suggests a formulation with a higher concentration of the resin, which may be used in specific industrial processes. Composition: Melamine formaldehyde resin is typically produced by the reaction of melamine (a nitrogen-rich compound) and formaldehyde (a reactive aldehyde). The reaction results in a highly cross-linked polymer with excellent hardness, chemical resistance, and heat resistance. Properties: High Heat Resistance: Melamine formaldehyde resin exhibits high heat resistance, making it suitable for applications where exposure to elevated temperatures is a concern. Hardness and Durability: The resin imparts hardness and durability to the materials it is used in, making it valuable for products like laminates and molded items. Chemical Resistance: Melamine formaldehyde products are known for their resistance to chemicals and staining. Applications: Laminates: Melamine formaldehyde resin is commonly used as a coating for laminates, which are widely used in furniture, countertops, and decorative surfaces. Molded Products: It is used in the production of molded items, such as kitchenware, dinnerware, and electrical components. Adhesives: The resin is used in the formulation of adhesives for bonding wood and other materials. Concentration: The concentration of melamine formaldehyde resin can vary based on the specific formulation required for a given application. A concentrated form may be used to achieve specific performance characteristics or to facilitate easier handling and storage. Manufacturers and Suppliers: Different manufacturers may produce concentrated melamine formaldehyde resins with varying specifications. It's essential to consult with the specific manufacturer or supplier for detailed information about the product's formulation, recommended uses, and handling guidelines.
Ammonium sulfate is a common inorganic salt. It contains two ammonium ions and one sulfate ion. This salt is widely used in various applications, including agriculture, industrial processes, and laboratory settings. Here are some key points about ammonium sulfate: Nitrogen and Sulfur Content: Ammonium sulfate is a good source of both nitrogen and sulfur. The nitrogen is in the ammonium form, making it readily available for plants. Solubility: Ammonium sulfate is highly soluble in water, allowing it to be easily dissolved for use in liquid fertilizers or irrigation systems. Fertilizer Use: It is commonly used as a nitrogen and sulfur fertilizer in agriculture to provide essential nutrients for plant growth. The nitrogen in ammonium sulfate is gradually released, providing a sustained nutrient supply to plants. Acidity: Ammonium sulfate is acidic in nature, and its application can contribute to lowering the pH of the soil. This can be beneficial in alkaline soils or for crops that prefer slightly acidic conditions. Soil Amendment: In addition to providing nutrients, ammonium sulfate can also serve as a soil amendment for improving certain soil characteristics. Industrial Applications: Ammonium sulfate is used in various industrial processes, including the production of textiles, dyes, and flame retardants. It is also employed in certain chemical reactions and as a precipitant in laboratories. Yeast Nutrient: In the brewing industry, ammonium sulfate is sometimes used as a yeast nutrient in the fermentation process. Compatibility: Ammonium sulfate is generally compatible with other fertilizers, and it can be used in combination with them to provide a balanced nutrient profile. Safety Considerations: When handling ammonium sulfate, it's important to follow safety guidelines and use appropriate protective equipment to prevent skin or eye contact and inhalation. Storage: Ammonium sulfate should be stored in a cool, dry place to prevent moisture absorption.
Potassium sulfate, often referred to as sulfate of potassium or SOP, is a chemical compound with the formula K2SO4. It is a colorless or white crystalline solid that is soluble in water. Potassium sulfate is commonly used in various applications, including agriculture, industry, and laboratory settings. Here are some key points about potassium sulfate: Chemical Formula: K2SO4 Solubility: Potassium sulfate is highly soluble in water, and its aqueous solution is neutral. Sources: Potassium sulfate can be obtained from natural sources, such as minerals like arcanite and aphthitalite. It can also be produced through chemical processes, including the reaction between potassium chloride and sulfuric acid. Agricultural Use: Potassium sulfate is a popular fertilizer in agriculture, providing essential potassium and sulfur nutrients to plants. It is often favored in situations where the addition of chloride is undesirable, as opposed to potassium chloride. Industrial Applications: Potassium sulfate is used in various industrial processes, including the production of glass and textiles. It is employed in certain types of glazes for ceramics. Laboratory Use: In laboratory settings, potassium sulfate can be used as a drying agent due to its hygroscopic nature. Compatibility with Plants: Potassium is an essential nutrient for plant growth and development. It plays a crucial role in various physiological processes, including enzyme activation, photosynthesis, and osmoregulation. Sulfur is also important for plant nutrition and is involved in the synthesis of amino acids and proteins.
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Nickel Wire
Lead powder and lead concentrate are different forms of lead that serve various industrial purposes. Here's an overview of each: Lead Powder: Form: Lead powder refers to finely ground particles of lead metal, typically in powder or granular form. Uses: Battery Manufacturing: Lead powder is often used in the production of lead-acid batteries. Radiation Shielding: Lead is known for its ability to absorb and shield against radiation, and lead powder can be used in various applications where radiation protection is required. Ammunition: Lead powder is a component in the production of ammunition and bullets. Metal Coatings: It may be used in the manufacturing of certain types of paints and coatings. Lead Concentrate: Form: Lead concentrate is a raw material derived from the mining and processing of lead ores. It is not a pure form of lead but rather a mixture containing lead and other minerals. Composition: Lead concentrate typically contains lead sulfide (galena) as the primary mineral, along with other sulfide minerals. Processing: The lead concentrate is further processed through smelting to extract pure lead metal. Uses: Lead concentrate is a crucial intermediate product in the production of refined lead. It is an essential raw material for lead smelters, where the lead is separated from impurities and processed into the desired forms. Lead concentrate may also contain valuable by-products such as silver and zinc.
End use of Bottle grade chips mainly depends on the Intrinsic Viscosity (IV). PET Chips with IV 0.80 is mainly used for drinking water bottles and mineral water bottles. PET Chips with IV 0.82 is mainly used in making bottles for carbonated beverages, small bottle for edible oil, alcohol, medicines and pet sheets as they need better quality and high finished product rate. PET Chips with IV of 0.85 are mainly used for making huge packing bottles for carbonated beverages and 3-5 gallons water bottles as these bottles should to have great strength and resistance against high pressure. Bottle Grade PET Chips Features of bottle grade PET Chips are low processing temperature, wide scope in packaging, excellent transparency and high in finished product rate.