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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 Africa,Europe, 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 | 16KG/58KG/1020KG |
Supply Ability | 2867371 Kilogram/Kilograms per Year |
Quantity (metric tons) | > 267 |
Lead time (days) | 27 |
phosphate binder meds bearings FAQs Guide
phosphate binder meds, 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 binder meds 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 binder meds 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 binder meds products and how they can benefit your business.
2.How to distinguish phosphate binder meds?
3.In which industries do phosphate binder meds play an important role?
4.Are phosphate binder meds harmful to animals?
5.What are the similarities between phosphate binder meds and sulfates?
6.What phosphate binder meds are produced during denitrification?
7.What is the chemical structure of phosphate binder meds?
8.What is the difference between phosphate binder meds and organic compounds?
9.How to test the phosphate binder meds content in food?
10.Can phosphate binder meds be used to make plastic?
11.What products can phosphate binder meds be used to make?
12.What is tripolyphosphate binder meds?
13.What are the production processes for phosphate binder meds?
14.What is the difference between ammonium phosphate binder meds and diammonium phosphate binder meds?
1.Can phosphate binder meds be used as agricultural conservation agent?
We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance.
Yes, phosphate can be used as an agricultural conservation agent. Phosphate is an essential nutrient for plant growth and is commonly used as a fertilizer in agriculture. It helps to promote root growth, increase crop yield, and improve plant health. In addition, phosphate can also act as a soil conservation agent by improving soil structure, reducing erosion, and increasing water retention. However, excessive use of phosphate can lead to environmental issues such as water pollution, so it is important to use it in moderation and follow recommended application rates.
2.How to distinguish phosphate binder meds?
We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.
Phosphate, a chemical compound containing the element phosphorus, is commonly found in many materials such as fertilizers, detergents, and food. However, it is important to be able to distinguish phosphate from other compounds due to its potential environmental and health impacts. One way to do this is by testing for the presence of phosphates using specialized equipment, such as a spectrophotometer, which measures the absorption of light by the compound. Additionally, one can also use chemical tests, such as adding molybdate reagent to a sample, which will produce a yellow color if phosphates are present. Another method is by calculating the amount of phosphate based on the weight of a sample and the percentage of phosphorus in the compound. By using these techniques, one can accurately identify and quantify phosphate, allowing for proper handling and disposal to prevent harm to the environment and human health.
3.In which industries do phosphate binder meds play an important role?
We are a new phosphate binder meds 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.
4.Are phosphate binder meds harmful to animals?
We should enjoy a good reputation in the industry, and we can increase the added value of the products of cooperative customers through technological innovation.
Phosphates are essential nutrients for animals and are not harmful in small amounts. However, excessive levels of phosphates in the environment can lead to eutrophication, which can harm aquatic animals by causing algal blooms and depleting oxygen levels in the water. In addition, high levels of phosphates in animal feed can lead to health issues such as kidney damage and bone disorders. It is important to monitor and regulate phosphate levels in the environment and in animal feed to ensure the health and well-being of animals.
5.What are the similarities between phosphate binder meds 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.

6.What phosphate binder meds 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.
7.What is the chemical structure of phosphate binder meds?
We have a professional team that is committed to the innovation and development of phosphate binder meds.
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.What is the difference between phosphate binder meds and organic compounds?
Phosphate refers to a specific chemical compound containing the element phosphorus, while organic compounds refer to a broad category of compounds that contain carbon and are found in living organisms. Phosphate is a type of inorganic compound, meaning it does not contain carbon, while organic compounds are characterized by the presence of carbon-hydrogen bonds. Additionally, phosphate is often used as a source of energy in biological processes, while organic compounds can serve a variety of functions such as structural support, energy storage, and signaling.
9.How to test the phosphate binder meds 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.
10.Can phosphate binder meds 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 products can phosphate binder meds 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.
12.What is tripolyphosphate binder meds?
As one of the phosphate binder meds market leaders, we are known for innovation and reliability.
Tripolyphosphate is a chemical compound with the formula Na5P3O10. It is a water-soluble salt that is commonly used as a food additive, detergent builder, and water softener. It is also used in industrial applications such as metal cleaning and water treatment. Tripolyphosphate is a white, odorless powder that is stable under normal conditions. It is considered safe for consumption and has a low toxicity.
13.What are the production processes for phosphate binder meds?
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.
14.What is the difference between ammonium phosphate binder meds and diammonium phosphate binder meds?
Our products & services cover a wide range of areas and meet the needs of different fields.
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.