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SINO-PHOS is mainly engaged in the wholesale and retail of chemical products. Its main products include phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. At present, the company's products are widely sold to Uganda,Barbados,Malawi,Aruba,Glorioso Islands,Pitcairn Islands and other countries and regions, and we are also actively exploring other overseas markets. Since its establishment, the company has always adhered to the concept of "integrity, cooperation, win-win, and mission". We are customer-oriented, continue to innovate around customer needs, strictly control product quality, and focus on providing customers with high-quality products and all-round services. In line with the tenet of "pursuit, growth, technology, spirit, and interests", the company now has a group of capable management talents and a high-quality professional team.
Type | DIAMMONIUM PHOSPHATE |
Place of Origin | Guizhou, China |
Classification | aqueous potassium phosphate |
Other Names | DAP |
MF | NH4H2PO4 |
EINECS No. | Other |
Grade Standard | Agriculture Grade, Food Grade, Industrial Grade |
Appearance | white powder |
Application | Food Grade;Agriculture Grade;Industrial Grade |
Brand Name | ydaway |
Model Number | food grade |
Supply Ability | 9651 Ton/Tons per Month |
Quantity (kilograms) | > 14476422 |
Lead time (days) | 13 |
aqueous potassium phosphate bearings FAQs Guide aqueous potassium phosphate, a type of natural mineral often found in rocks, is widely recognized for its significant role in plant and animal growth. As a necessary element for all living organisms, aqueous potassium phosphate has become an essential component in various industries, including agriculture, food production, and manufacturing. With our advanced technology and expertise, we have developed a series of high-quality aqueous potassium phosphate products that cater to different needs in the market. Our wide range of solutions not only provides essential nutrients for crops and livestock but also supports the development of sustainable and environmentally friendly processes. Keep reading to learn more about our aqueous potassium phosphate products and how they can benefit your business.
2.What products can aqueous potassium phosphate be used to make?
3.What are polyaqueous potassium phosphate?
4.How to safely store aqueous potassium phosphate?
5.What are some common uses of aqueous potassium phosphate?
6.How to control the concentration of aqueous potassium phosphate in water?
7.What is the chemical structure of aqueous potassium phosphate?
8.How are the functions and structure of aqueous potassium phosphate related?
9.aqueous potassium phosphate What technology is used in making polyaqueous potassium phosphate?
10.What is the relationship between aqueous potassium phosphate and aqueous potassium phosphate fertilizer?
11.What is the difference between ammonium aqueous potassium phosphate and diammonium aqueous potassium phosphate?
12.What is aqueous potassium phosphate?
13.What is the difference between aqueous potassium phosphate and diammonium aqueous potassium phosphate?
14.What are the advantages of combining aqueous potassium phosphate and organic fertilizers?
15.Why is aqueous potassium phosphate used in agriculture?
1.What are the similarities between aqueous potassium phosphate and sulfates?
Phosphates and sulfates are both types of mineral compounds that contain oxygen. They are commonly found in nature and have various industrial and biological uses. One of the key similarities between these two compounds is that they both contain oxygen atoms in their molecular structure. This allows them to perform similar functions, such as being used as fertilizers in agriculture, as well as being used in detergents and water treatment products. Another similarity is that both phosphates and sulfates are essential for life, as they are important components of DNA and cell membranes. However, they also have their differences, as sulfates are more commonly found in minerals such as copper and iron, while phosphates are found in minerals such as calcite and apatite.
2.What products can aqueous potassium phosphate be used to make?
Phosphate is a versatile compound that can be used in a variety of products. It is commonly used in fertilizers to provide essential nutrients for plant growth and development. Additionally, phosphate is an important ingredient in detergents, allowing for the removal of dirt and stains. In the food industry, phosphate acts as a preservative, helping to extend the shelf life of products. It is also used in the production of animal feed, as it provides essential minerals for animal health. Phosphate is also utilized in the production of various industrial products such as toothpaste, cleaning agents, and water treatment chemicals. Its multitude of uses make it a crucial component in many everyday products and industries.
3.What are polyaqueous potassium phosphate?
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Polyphosphates are a group of compounds that contain multiple phosphate groups linked together. They can be found naturally in some foods, such as meat and dairy products, and are also used as food additives to improve texture, prevent spoilage, and enhance flavor. In addition, polyphosphates are used in industrial and household products, such as detergents and water treatment chemicals, for their ability to bind to minerals and prevent scale buildup. They are also used in some medications and as fertilizers in agriculture.
4.How to safely store aqueous potassium phosphate?
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Storing phosphate properly is crucial for safety and environmental reasons. Firstly, ensure that the storage area is dry and well-ventilated to prevent any moisture build-up, which can cause the phosphate to become unstable and potentially combustible. Secondly, make sure to store it away from any sources of heat or open flames, as phosphate can react violently with these. Additionally, it is important to store phosphate away from other chemicals or materials that it could potentially react with. Proper labeling and segregation of storage containers is recommended to avoid any accidental mixing. It is also recommended to regularly inspect and maintain storage containers to prevent any leaks or spills. Finally, always follow the recommended storage instructions from the manufacturer to ensure safe handling and storage of phosphate.
5.What are some common uses of aqueous potassium phosphate?
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1. Fertilizers: Phosphate is a key ingredient in many fertilizers, as it provides essential nutrients for plant growth and development.
2. Food and beverage industry: Phosphate is used as a food additive in many processed foods and beverages, such as soft drinks, cheese, and baked goods. It helps to improve texture, flavor, and shelf life.
3. Water treatment: Phosphate is used in water treatment to prevent the formation of scale and corrosion in pipes and equipment.
4. Detergents: Phosphate is a common ingredient in laundry and dishwashing detergents, as it helps to soften water and improve the cleaning efficiency.
5. Animal feed: Phosphate is added to animal feed to provide essential minerals for livestock and poultry.
6. Industrial applications: Phosphate is used in various industrial processes, such as metal finishing, ceramics, and detergents.
7. Pharmaceuticals: Phosphate is used in the production of medicines and supplements, such as calcium phosphate for bone health.
8. Flame retardants: Phosphate compounds are used as flame retardants in plastics, textiles, and other materials.
9. Construction materials: Phosphate is used in the production of cement, drywall, and other construction materials.
10. Energy production: Phosphate is used in the production of batteries for energy storage and in the production of biofuels.

6.How to control the concentration of aqueous potassium phosphate in water?
Phosphate is an essential nutrient for plant growth and is commonly found in water sources. However, high concentrations of phosphate can lead to eutrophication, causing harm to aquatic ecosystems. Therefore, it is important to control the concentration of phosphate in water. One way to do this is through proper wastewater treatment methods. Municipal treatment plants use techniques such as chemical precipitation and biological nutrient removal to remove excess phosphate from wastewater. Moreover, farmers can also reduce the use of phosphate-rich fertilizers and implement sustainable irrigation practices to prevent further contamination of water sources. Regular monitoring of water quality and implementing strict regulations can also help in controlling phosphate levels. Additionally, educating the public on the harmful effects of excessive phosphate in water can promote individual responsibility in reducing phosphate pollution. By combining these efforts, we can effectively control the concentration of phosphate in water and protect our planet's water resources.
7.What is the chemical structure of aqueous potassium phosphate?
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The chemical structure of phosphate is a polyatomic ion with the chemical formula PO4^3-. It consists of one phosphorus atom bonded to four oxygen atoms in a tetrahedral arrangement. The phosphorus atom is in the center, with three single bonds to oxygen atoms and one double bond to another oxygen atom. The overall charge of the ion is negative three.
8.How are the functions and structure of aqueous potassium phosphate related?
Phosphate is an important chemical compound that is essential for various biological processes and is found in many minerals, soils, and living cells. Its functions are closely related to its unique structure, containing one central phosphorus atom bonded to four oxygen atoms. This structure allows phosphate to act as a versatile molecule, serving as a structural component in molecules like DNA and RNA, an energy source in the form of ATP, and a regulatory substance in biochemical reactions. Additionally, its structure also allows it to form strong bonds with other molecules, making it vital for cellular communication and signaling. This close relationship between the functions and structure of phosphate highlights its significance in maintaining the delicate balance and efficiency of various biological systems.
9.aqueous potassium phosphate What technology is used in making polyaqueous potassium phosphate?
We have advanced production equipment and technology to meet the needs of customers, and can provide customers with high quality, low priced aqueous potassium phosphate products.
The technology used in making polyphosphate is typically a chemical process called polymerization. This involves combining monomers (smaller molecules) to form long chains of repeating units, known as polymers. In the case of polyphosphate, the monomers are typically phosphoric acid or phosphates, which are combined to form long chains of phosphate molecules.
The process of polymerization can be carried out using various methods, including solution polymerization, emulsion polymerization, and suspension polymerization. These methods involve mixing the monomers with a catalyst and other additives, and then subjecting the mixture to heat, pressure, or radiation to initiate the polymerization reaction.
Once the polymerization is complete, the resulting polyphosphate can be further processed and modified to meet specific requirements for different applications. This may involve adding other chemicals, blending with other polymers, or shaping the polyphosphate into different forms, such as pellets, sheets, or fibers.
10.What is the relationship between aqueous potassium phosphate and aqueous potassium phosphate fertilizer?
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Phosphate is a naturally occurring mineral that contains the element phosphorus. Phosphate fertilizer is a type of fertilizer that is made from phosphate minerals and is used to provide plants with essential nutrients, particularly phosphorus, for growth and development.
Phosphate fertilizer is made by extracting phosphate minerals from rocks or sedimentary deposits and processing them into a form that can be easily absorbed by plants. This process involves treating the phosphate minerals with acids or other chemicals to make them more soluble and available for plant uptake.
Phosphate fertilizer is an important source of phosphorus for plants, as it helps to promote root growth, seed formation, and overall plant health. It is commonly used in agriculture to increase crop yields and improve soil fertility.
In summary, phosphate is the mineral that contains phosphorus, while phosphate fertilizer is a product made from phosphate minerals that is used to provide plants with essential nutrients, particularly phosphorus, for growth and development.

11.What is the difference between ammonium aqueous potassium phosphate and diammonium aqueous potassium phosphate?
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Ammonium phosphate and diammonium phosphate are both types of fertilizers that contain nitrogen and phosphorus. The main difference between them is the ratio of nitrogen to phosphorus and the chemical structure.
Ammonium phosphate is a general term that refers to any fertilizer containing both ammonium and phosphate. It can have different ratios of nitrogen to phosphorus, such as 10-34-0 or 16-20-0. This means that for every 100 pounds of fertilizer, there are 10 or 16 pounds of nitrogen and 34 or 20 pounds of phosphorus, respectively.
Diammonium phosphate (DAP) is a specific type of ammonium phosphate fertilizer with a ratio of 18-46-0. This means that for every 100 pounds of DAP, there are 18 pounds of nitrogen and 46 pounds of phosphorus. DAP is a highly concentrated fertilizer and is often used in the early stages of plant growth to promote root development.
12.What is aqueous potassium phosphate?
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Phosphate is a chemical compound that contains the element phosphorus and oxygen. It is commonly found in nature as a mineral, and is an essential nutrient for plants and animals. Phosphate is also used in various industrial processes, such as in fertilizers, detergents, and food additives. In its various forms, phosphate plays a crucial role in many biological and chemical processes, including energy production, DNA and RNA synthesis, and bone formation.
13.What is the difference between aqueous potassium phosphate and diammonium aqueous potassium phosphate?
We operate our aqueous potassium phosphate business with integrity and honesty.
Phosphate refers to any compound containing the phosphate ion (PO4^3-), while diammonium phosphate (DAP) specifically refers to a compound with the chemical formula (NH4)2HPO4. DAP is a type of phosphate fertilizer commonly used in agriculture, while phosphate can refer to a variety of compounds with different uses and properties.
14.What are the advantages of combining aqueous potassium phosphate and organic fertilizers?
Combining phosphate and organic fertilizers offers numerous benefits for soil health and plant growth. Firstly, phosphate fertilizers provide essential nutrients such as phosphorus, which is crucial for plant growth and development. By combining it with organic fertilizers, which are derived from natural sources, the soil is enriched with a wider range of nutrients. This diversity of nutrients helps to improve soil structure and promotes a healthier and more balanced ecosystem. Additionally, organic fertilizers also improve soil water retention, reducing the need for frequent watering and increasing drought resistance.
15.Why is aqueous potassium phosphate used in agriculture?
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Phosphate is used in agriculture as a fertilizer to provide essential nutrients for plant growth. It is a major source of phosphorus, an essential element for plant growth and development. Phosphate helps plants to develop strong roots, produce more flowers and fruits, and increase their resistance to diseases and pests.
Phosphate is also important for soil health as it helps to maintain the pH balance and improve soil structure. It can also increase the availability of other nutrients in the soil, such as nitrogen and potassium.
In addition, phosphate is used in animal feed as a source of phosphorus for livestock. Phosphorus is essential for animal growth, bone development, and milk production.
Overall, phosphate is an important component of modern agriculture as it helps to increase crop yields and improve the quality of food production.
