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Guizhou SINO-PHOS Chemical Co., Ltd. was established in 2002. It is a large-scale manufacturer integrating R&D, production and sales. The main products include phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. Among them, the sales proportion of organic chemicals and liquid fertilizers ranks among the top in the domestic market.
In 2009, the company passed ISO9001 international quality system certification. In order to meet the special needs of various ethnic and religious countries around the world, the company has passed Kosher certification, Halal certification and EU Reach certification. To date, we have cooperated with more than 180 countries and regions. Some countries, including Oceania,America,Asia, have won a series of international accolades.
Type | Disodium phosphate |
Place of Origin | Guizhou, China |
Classification | Phosphate |
Other Names | Dibasic Sodium Phosphate |
MF | Na2HPO4.2H2O |
EINECS No. | 231-448-7 |
Grade Standard | Food Grade |
Appearance | white cystal |
Application | Food ingredients |
Brand Name | SINO-PHOS |
Model Number | BYPH-12 |
Product Name | Disodium Phosphate |
Grade | Food Garde |
Density | 1.52 |
Insoluble | Alcohol |
Soluble | In water |
Molecular weight | 177.99 |
PH (1% aqueous solution) | 8.8-9.2 |
Executive Standard | GB25568-2010 |
Pallet | Based on buyer's requirment |
Shelf life | 2 Years Proper Storage |
Packaging Details | 30KG/43KG/1065KG |
Supply Ability | 3126803 Kilogram/Kilograms per Year |
Quantity (metric tons) | > 219 |
Lead time (days) | 29 |
phosphate drug bearings FAQs Guide phosphate drug, 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, phosphate drug 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 phosphate drug 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 phosphate drug products and how they can benefit your business.
2.How are the functions and structure of phosphate drug related?
3.What impact do phosphate drug have on the environment?
4.Can phosphate drug be used to make plastic?
5.What is the relationship between phosphate drug and calcium?
6.How is phosphate drug extracted?
7.Are phosphate drug common on Earth?
8.How to control the concentration of phosphate drug in water?
9.Does phosphate drug promote certain diseases?
10.What are the common forms of phosphate drug?
11.What is the chemical structure of phosphate drug?
12.What are the uses of phosphate drug in medical devices?
13.phosphate drug What technology is used in making polyphosphate drug?
1.What are some common uses of phosphate drug?
We pay attention to the introduction and training of talents, scientifically regulate the management system, and focus on cultural construction and team cohesion.
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.
2.How are the functions and structure of phosphate drug 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.
3.What impact do phosphate drug have on the environment?
Phosphate plays a crucial role in fertilizers, detergents, and animal feeds, making it an important component of modern society. However, the widespread use of phosphate also has significant impacts on the environment. Excessive release of phosphate into the environment can lead to eutrophication, where an increase in nutrients causes excessive algae growth, leading to oxygen depletion and harm to aquatic organisms. Phosphate runoff from agricultural activities can also pollute water sources and harm sensitive ecosystems. In addition, phosphate mining can lead to land degradation and loss of biodiversity. To mitigate these negative impacts, sustainable practices and regulations must be implemented to properly manage and limit phosphate use.

4.Can phosphate drug be used to make plastic?
Yes, phosphate can be used to make plastic. Phosphate-based plastics, also known as polyphosphates, are a type of thermoplastic polymer that can be used to make a variety of products, including packaging materials, coatings, and adhesives. These plastics are made by polymerizing phosphoric acid or its derivatives, such as phosphoric anhydride, with other monomers. They are known for their high strength, durability, and resistance to heat and chemicals. However, due to concerns about the environmental impact of phosphate mining and production, alternative materials are being developed to replace phosphate-based plastics.
5.What is the relationship between phosphate drug and calcium?
As one of the top phosphate drug manufacturers in China, we take this very seriously.
Phosphate and calcium are essential minerals in the human body and they are closely related in terms of their functions and interactions. Both of them play important roles in maintaining strong bones, teeth and overall skeletal health. Calcium is primarily responsible for providing structural support and strength in bones, while phosphate helps to regulate the calcium levels in the body. In addition, both minerals are vital for proper muscle function, nerve transmission, and hormone production. Phosphate and calcium also work together to support the formation of healthy teeth and maintain the body's acid-base balance. While the human body requires both phosphate and calcium, it is important to maintain a proper balance between the two minerals for optimal health.
6.How is phosphate drug extracted?
We continue to improve phosphate drug products and processes to improve efficiency.
Phosphate is typically extracted through open-pit mining, which involves digging a large hole in the ground and removing the layers of phosphate-rich rock. The extracted rock is then crushed and processed to separate the phosphate from other minerals. This process may also involve washing, screening, and flotation to further refine the phosphate. In some cases, underground mining may also be used to extract phosphate deposits.

7.Are phosphate drug common on Earth?
We continuously upgrade our skills and knowledge to adapt to changing phosphate drug market needs.
Yes, phosphates are common on Earth. They are found in rocks, soils, and water, and are essential for life as they are a key component of DNA, RNA, and ATP (adenosine triphosphate). Phosphates are also used in fertilizers, detergents, and other industrial products.
8.How to control the concentration of phosphate drug 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.
9.Does phosphate drug promote certain diseases?
We focus on providing high phosphate drug quality products and services.
There is no evidence to suggest that phosphate directly promotes certain diseases. However, excessive intake of phosphate through diet or supplements can lead to health issues such as kidney disease, heart disease, and osteoporosis. Additionally, high levels of phosphate in the body can disrupt the balance of other minerals, such as calcium, which can contribute to the development of certain diseases. It is important to maintain a balanced intake of phosphate and other minerals for overall health and disease prevention.

10.What are the common forms of phosphate drug?
We have flexible production capacity. Whether you are large orders or small orders, you can produce and release goods in a timely manner to meet customer needs.
1. Calcium phosphate: This is the most common form of phosphate found in nature and is the main component of bones and teeth.
2. Sodium phosphate: This form of phosphate is commonly used as a food additive and is also found in some medications.
3. Potassium phosphate: This form of phosphate is used as a fertilizer and is also found in some food products.
4. Magnesium phosphate: This form of phosphate is found in the body and is important for bone health and energy production.
5. Ammonium phosphate: This form of phosphate is used as a fertilizer and is also found in some cleaning products.
6. Dicalcium phosphate: This form of phosphate is commonly used as a dietary supplement and is also found in some toothpastes.
7. Monoammonium phosphate: This form of phosphate is used as a fertilizer and is also found in some fire extinguishers.
8. Tricalcium phosphate: This form of phosphate is used as a food additive and is also found in some toothpastes and cosmetics.
9. Disodium phosphate: This form of phosphate is used as a food additive and is also found in some cleaning products.
10. Tetrasodium pyrophosphate: This form of phosphate is used as a food additive and is also found in some toothpastes and detergents.
11.What is the chemical structure of phosphate drug?
We have a professional team that is committed to the innovation and development of phosphate drug.
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.
12.What are the uses of phosphate drug in medical devices?
We continue to invest in research and development and continue to launch innovative products.
Phosphate is a vital substance that has a wide range of uses in the field of medical devices. It is commonly found in bone tissue and is essential for bone growth and maintenance. In medical devices, phosphate is used as a component of bioactive materials, such as coatings and implants, to aid in the healing process and promote bone regeneration. Additionally, it is also used as a lubricant in medical devices, helping to reduce friction and improve overall functioning. Phosphate is also an important ingredient in various medications, including antibiotics and antacids, making it a crucial element in the treatment of various medical conditions. Its versatility and important role in both the structure and function of medical devices make phosphate an essential component in the healthcare industry.

13.phosphate drug What technology is used in making polyphosphate drug?
We have advanced production equipment and technology to meet the needs of customers, and can provide customers with high quality, low priced phosphate drug 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.