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Guizhou SINO-PHOS Chemical Co., Ltd. is a leading manufacturer and exporter of phosphoric acid and phosphate salts in China. Our main products are phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. Our factory is located in Guizhou, China, covering an area of 30,000 square meters and with a net capital of US$3 million. We have experienced staff, advanced production lines and complete testing instruments. The annual output of phosphoric acid and phosphate exceeds 38,000 tons. Our products are very popular in Bolivia,Wallis and Futuna,Tokelau,Pitcairn Islands, the United States and Japan. Won high praise from customers.
Type | Disodium Phosphate |
Place of Origin | Guizhou,china |
Classification | Phosphate |
Other Names | Sodium Phosphate, Dibasic |
MF | Na2HPO4 |
EINECS No. | 231-448-7 |
Grade Standard | Industrial Grade, Reagent Grade |
Appearance | White Powder |
Application | emulgator,etc |
Brand Name | SINO-PHOS |
Model Number | / |
Product name | Sodium Phosphate, Dibasic |
Appearance | White powder |
Content Na2HPO4,( On dry basis),w/% | ≥96 |
Arsenic(As),mg/kg | ≤2 |
Heavy metal(as Pb),mg/kg | ≤8 |
Lead(Pb),mg/kg | ≤3 |
Fluorides(as F),mg/kg | ≤57 |
Insoluble substances,w/% | ≤0.2 |
Loss on drying,w/% | ≤4 |
Packaging Details | 5g/10g/50g/141g/500g/1kg/Bottle |
Supply Ability | 527 Kilogram/Kilograms per Month |
Quantity (grams) | > 274 |
Lead time (days) | 17 |
peak phosphate bearings FAQs Guide
peak 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, peak 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 peak 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 peak phosphate products and how they can benefit your business.
2.How are the functions and structure of peak phosphate related?
3.What factors affect the price of peak phosphate?
4.Can peak phosphate be used as fertilizer?
5.What is the relationship between peak phosphate and calcium?
6.What are the production processes for peak phosphate?
7.How to use peak phosphate safely?
8.Which countries have the largest international peak phosphate production?
9.What is the chemical structure of peak phosphate?
10.Can peak phosphate be used to make plastic?
11.What is anionic peak phosphate?
12.What are the common forms of peak phosphate?
13.What are polypeak phosphate?
14.What foods contain peak phosphate?
15.How to test the peak phosphate content in food?
16.peak phosphate What technology is used in making polypeak phosphate?
1.What is the role of catalysts in the peak phosphate industry?
We have established a good reputation and reliable partnerships within the peak phosphate industry.
Catalysts are an essential component in the phosphate industry, playing a key role in the production of vital fertilizers and other phosphates for industrial use. They serve as a facilitator, accelerating the chemical reactions involved in phosphate production, thereby increasing efficiency and reducing costs. These catalysts also help improve the quality and purity of the final product, ensuring that it meets regulatory standards. In addition, they enable the use of more sustainable and environmentally friendly processes, making the phosphate industry more efficient and sustainable. Without catalysts, the production of phosphates would be significantly slower and more expensive, making them a crucial element in the industry.
2.How are the functions and structure of peak 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.
3.What factors affect the price of peak phosphate?
We have a wide range of peak phosphate customer groups and establishes long -term cooperative relationships with partners. The countries we provide services include .
The price of phosphate, a key mineral resource used in fertilizer production, is influenced by a variety of factors. These include supply and demand, political and economic stability in phosphate-producing countries, innovation and technological advancements in mining and processing techniques, and environmental regulations. Fluctuations in global market conditions, such as changes in agricultural practices and shifts in consumer demand for organic produce, can also impact the price of phosphate. Additionally, government subsidies and efforts to increase domestic production can play a role in determining the overall cost. As a critical component in the agricultural industry, the price of phosphate is constantly fluctuating and affected by a complex combination of factors.

4.Can peak phosphate be used as fertilizer?
Our peak phosphate products undergo strict quality control to ensure customer satisfaction.
Yes, phosphate is commonly used as a fertilizer in agriculture. It is a major component of most commercial fertilizers and is essential for plant growth and development. Phosphate helps plants to develop strong roots, promotes flower and fruit production, and aids in the transfer of energy within the plant. It is also an important nutrient for crop yield and quality. However, excessive use of phosphate fertilizers can lead to environmental pollution and eutrophication of water bodies. Therefore, it is important to use phosphate fertilizers in a responsible and sustainable manner.
5.What is the relationship between peak phosphate and calcium?
As one of the top peak phosphate 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.What are the production processes for peak phosphate?
We focus on teamwork and communication to achieve common goals, We attach great importance to this detail.
Phosphate, also known as phosphate rock, is a mineral that is typically found in sedimentary rocks. It is an essential nutrient for plant growth and is commonly used in fertilizer production. The production processes for phosphate involve mining and extraction of the mineral from ore deposits, followed by washing, crushing, and grinding to create a powdered form. The powdered form is then treated with sulfuric acid to produce phosphoric acid, which is used as a key ingredient in most fertilizers. Additional steps may be taken to refine the phosphoric acid into a more concentrated form, or to produce various types of phosphate fertilizers. The production of phosphate is an important industry worldwide, providing essential nutrients for plants and helping to increase crop yields.

7.How to use peak phosphate safely?
Phosphate is a commonly used chemical compound that has various industrial, agricultural, and household applications. However, it can also be hazardous if not handled and used properly. Here are some tips on how to use phosphate safely:
1. Read and follow the safety instructions provided on the product label or packaging.
2. Wear appropriate protective gear, such as goggles, gloves, and a mask, when handling phosphate.
3. Avoid inhaling or ingesting the product. If contact with skin or eyes occurs, immediately rinse with plenty of water.
4. Store phosphate in a cool, dry, and well-ventilated area, away from sources of heat and ignition.
5. Keep phosphate out of reach of children and pets.
6. When using phosphate in large quantities or for extended periods of time, it is recommended to use it in a well-ventilated area.
7. Dispose of unused or leftover product according to local regulations and guidelines.
By following these safety precautions, you can ensure the safe and responsible use of phosphate.
8.Which countries have the largest international peak phosphate production?
1. China
2. Morocco
3. United States
4. Russia
5. Jordan
6. Saudi Arabia
7. Egypt
8. Brazil
9. Tunisia
10. Israel
9.What is the chemical structure of peak phosphate?
We have a professional team that is committed to the innovation and development of peak phosphate.
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.

10.Can peak phosphate 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.
11.What is anionic peak phosphate?
We actively participate in the peak phosphate industry associations and organization activities. The corporate social responsibility performed well, and the focus of brand building and promotion
Anionic phosphate refers to a negatively charged ion that contains one phosphorus atom and four oxygen atoms, with a chemical formula of PO4^3-. It is commonly found in various compounds, such as phosphates in fertilizers and phospholipids in cell membranes. Anionic phosphate plays important roles in biological processes, such as energy storage and transfer, DNA and RNA synthesis, and bone formation.
12.What are the common forms of peak phosphate?
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.

13.What are polypeak phosphate?
We focus on innovation and continuous improvement to maintain a competitive advantage.
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.
14.What foods contain peak phosphate?
We should perform well in market competition, and the prices of peak phosphate products have a great competitive advantage.
1. Dairy products: Milk, cheese, and yogurt are all high in phosphate.
2. Meat and poultry: Beef, chicken, and pork are good sources of phosphate.
3. Seafood: Fish, shrimp, and other seafood are also high in phosphate.
4. Nuts and seeds: Almonds, cashews, and sunflower seeds are all good sources of phosphate.
5. Whole grains: Whole wheat, oats, and brown rice are all high in phosphate.
6. Legumes: Beans, lentils, and peas are all good sources of phosphate.
7. Eggs: Both the yolk and white of an egg contain phosphate.
8. Chocolate: Dark chocolate is a good source of phosphate.
9. Carbonated beverages: Many soft drinks and energy drinks contain phosphate.
10. Processed foods: Many processed foods, such as canned soups and frozen meals, contain added phosphate as a preservative or flavor enhancer.
15.How to test the peak phosphate content in food?
We have a first -class management team, and we pay attention to teamwork to achieve common goals.
There are several methods for testing the phosphate content in food. One common method is to use a colorimetric test that relies on the reaction between phosphate ions and a reagent solution. This test produces a color change that can be compared to a color chart to determine the level of phosphate present in the food sample. Another method is to use ion chromatography, which involves separating and quantifying the different ions present in the food sample. This method provides a more precise measurement of phosphate levels. Additionally, some food manufacturers may use in-house laboratory testing or send samples to external laboratories for more comprehensive analysis. No matter the method used, it is important to follow proper protocols and use reliable equipment to ensure accurate results. Regular testing of phosphate levels in food is crucial for maintaining food safety and ensuring compliance with regulatory standards.

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