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Guizhou SINO-PHOS Chemical Co., Ltd. is mainly dedicated to the research, development and production of phosphoric acid and phosphates. At the same time, we also provide other products and ODM services to old customers. Products such as: phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripolyphosphate, sodium pyrophosphate, etc. At present, it has formed an annual production scale of 30,000 tons of phosphate and 60,000 tons of phosphate. In 2009, the company passed ISO9001 international quality system certification.
We have been active in the market for nearly 20 years and have a professional sales and logistics team dedicated to providing customers with the best service with excellent quality and competitive prices. The service industry involves water treatment, agrochemical fertilizers, mining, washing and sanitation, food additives, etc. Due to our excellent service, now we can provide customers with more than 30 kinds of products, and our products are very popular in Libya,Isle of Man,Chile,Denmark,French Guiana, the United States and Japan. Won high praise from customers.
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 | 29KG/57KG/980KG |
Supply Ability | 2827865 Kilogram/Kilograms per Year |
Quantity (metric tons) | > 108 |
Lead time (days) | 21 |
lithium iron phosphate bearings FAQs Guide lithium iron 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, lithium iron 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 lithium iron 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 lithium iron phosphate products and how they can benefit your business.
2.How is lithium iron phosphate extracted?
3.What are polylithium iron phosphate?
4.What is the role of lithium iron phosphate in soaps and detergents?
5.What compounds can lithium iron phosphate form?
6.In which industries do lithium iron phosphate play an important role?
7.How to safely store lithium iron phosphate?
8.What is the global production of lithium iron phosphate?
9.What is the difference between lithium iron phosphate and diammonium lithium iron phosphate?
10.Are lithium iron phosphate common on Earth?
11.Can lithium iron phosphate be used to make batteries?
12.Can lithium iron phosphate be used as fertilizer?
13.How to use lithium iron phosphate safely?
14.What are the common forms of lithium iron phosphate?
15.What are the environmental benefits of lithium iron phosphate recycling?
1.What lithium iron phosphate are produced during denitrification?
No phosphate is produced during denitrification. Denitrification is a process in which nitrate (NO3-) is converted into nitrogen gas (N2) by bacteria, and does not involve the production of phosphate.
2.How is lithium iron phosphate extracted?
We continue to improve lithium iron phosphate 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.
3.What are polylithium iron 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.
4.What is the role of lithium iron phosphate in soaps and detergents?
We have rich industry experience and professional knowledge, and have strong competitiveness in the market.
Phosphate is an essential component in both soaps and detergents, playing a crucial role in their effectiveness as cleaning agents. In soaps, phosphate acts as a water softening agent, allowing the soap to lather more easily and effectively remove dirt and oils from surfaces. It also helps to break up and suspend particles in water, preventing them from re-depositing onto cleaned surfaces. In detergents, phosphate serves as a surfactant, reducing the surface tension of water and allowing it to penetrate and remove greasy or oily stains more easily. Additionally, phosphate helps to counteract the effects of hard water, making the detergent more efficient in cleaning. However, the use of phosphate in cleaning products has come under scrutiny due to its negative impact on the environment, specifically in contributing to water pollution and eutrophication. As a result, many manufacturers have started to formulate phosphate-free or low-phosphate alternatives in order to reduce their environmental impact.
5.What compounds can lithium iron phosphate form?
Phosphate has the ability to form a wide variety of compounds, including phosphate salts, phosphates used in fertilizers, phosphoric acid, and organic phosphates found in living organisms. It also forms important compounds such as DNA and ATP, which are crucial for energy storage and transfer in living organisms. Phosphate compounds are essential for various industrial and agricultural applications, as well as for the functioning of biological systems.

6.In which industries do lithium iron phosphate play an important role?
We are a new lithium iron phosphate manufacturer.
Phosphate is a crucial resource in various industries, making significant contributions to global economies. It is a key ingredient in fertilizers, providing essential nutrients for crop growth and increasing agricultural productivity. Phosphate is also used in the production of animal feed, promoting healthy growth and development in livestock. In addition, it is widely used in the manufacturing of detergents, soaps, and other cleaning products. The pharmaceutical and food industries also heavily rely on phosphate for the production of medicines, nutritional supplements, and food additives. Furthermore, phosphate is an important component in the production of steel and other industrial chemicals. Therefore, phosphate plays a crucial role in agriculture, food production, cleaning, pharmaceuticals, and industrial manufacturing, making it a valuable resource for various industries.
7.How to safely store lithium iron phosphate?
We pay attention to employee development and benefits, and provide a good working environment in order to improve the efficiency of employees and improve the quality management of lithium iron phosphate products.
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.
8.What is the global production of lithium iron phosphate?
We are committed to providing personalized solutions and established long -term strategic cooperative relationships with customers.
According to the United States Geological Survey, the global production of phosphate in 2019 was approximately 47 million metric tons. The top producers of phosphate were China, Morocco, and the United States.
9.What is the difference between lithium iron phosphate and diammonium lithium iron phosphate?
We operate our lithium iron 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.
10.Are lithium iron phosphate common on Earth?
We continuously upgrade our skills and knowledge to adapt to changing lithium iron phosphate 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.

11.Can lithium iron phosphate be used to make batteries?
lithium iron phosphate is not a product only, but also can help you comes to money-making.
Yes, phosphate can be used to make batteries. Phosphate-based batteries, also known as lithium iron phosphate (LiFePO4) batteries, are a type of rechargeable battery that uses phosphate as the cathode material. These batteries are known for their high energy density, long lifespan, and safety compared to other types of batteries. They are commonly used in electric vehicles, solar energy storage systems, and other applications that require high-performance batteries.
12.Can lithium iron phosphate be used as fertilizer?
Our lithium iron 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.
13.How to use lithium iron 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.
14.What are the common forms of lithium iron 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.
15.What are the environmental benefits of lithium iron phosphate recycling?
Phosphate is a key nutrient that is essential for the growth of plants and the health of our ecosystems. It is most commonly obtained from phosphate mining, a process that has significant environmental impacts including soil erosion, contamination of water sources, and loss of biodiversity. However, there is a more sustainable way to obtain and reuse phosphate – through recycling. Phosphate recycling involves recovering and reusing phosphorus from various sources such as wastewater, manure, and industrial byproducts. This process has many environmental benefits, including reducing the demand for new phosphate mining, decreasing pollution and eutrophication of water bodies, and conserving natural resources. By promoting phosphate recycling, we can help protect our environment and create a more sustainable future.
