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Guizhou SINO-PHOS Chemical Co., Ltd. is a company specializing in the R&D and production of phosphoric acid and phosphates that integrates R&D, design, production and sales. The company has professional technical personnel who are committed to the development, innovation and application of new products, and has international standard phosphoric acid and phosphate raw material production lines. The company produces and supplies phosphate series, condiment series, compound food additive series and other series, with more than 100 kinds of products. The main specifications include industrial grade, food grade, reagent grade, and pharmaceutical grade. It is widely used in food and beverage, dairy, pharmaceutical, water treatment and metal treatment, flame retardant materials, detergents, etc.
Our company currently has an annual production capacity of 30,000 tons of phosphate and 60,000 tons of phosphate. The pass rate reaches 100%, and the annual sales are approximately 20 billion yuan. The products sell well all over the country and are exported to more than 180 countries and regions, including Armenia,Vietnam,Norfolk Island,Burkina Faso,Isle of Man,Sudan, providing one-stop services to nearly a thousand food and industrial customers around the world. The company's image and product quality enjoy a good reputation in domestic and foreign markets and are favored by 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 | 18KG/40KG/957KG |
Supply Ability | 3960343 Kilogram/Kilograms per Year |
Quantity (metric tons) | > 259 |
Lead time (days) | 24 |
5 phosphate bearings FAQs Guide
5 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, 5 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 5 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 5 phosphate products and how they can benefit your business.
2.What is the chemical structure of 5 phosphate?
3.What are the characteristics of dual-nutrient fertilizers of 5 phosphate and diammonium 5 phosphate?
4.What are the similarities between 5 phosphate and sulfates?
5.Does 5 phosphate promote certain diseases?
6.What is the difference between 5 phosphate and organophosphorus?
7.What impact do 5 phosphate have on the environment?
8.What by-products are produced during the production of 5 phosphate?
9.What products can 5 phosphate be used to make?
10.What 5 phosphate are produced during denitrification?
11.What is the difference between 5 phosphate and organic compounds?
12.Can 5 phosphate be used as fertilizer?
13.What is the difference between ammonium 5 phosphate and diammonium 5 phosphate?
14.What are the uses of 5 phosphate in the pharmaceutical industry?
1.How to control the concentration of 5 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.
2.What is the chemical structure of 5 phosphate?
We have a professional team that is committed to the innovation and development of 5 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.
3.What are the characteristics of dual-nutrient fertilizers of 5 phosphate and diammonium 5 phosphate?
Dual-nutrient fertilizers that contain both phosphate and diammonium phosphate have several key characteristics that make them beneficial for plant growth. First, these fertilizers provide a balanced blend of phosphorous and nitrogen, two essential nutrients for plant development. Phosphorous helps promote root growth, while nitrogen aids in the formation of chlorophyll and overall plant metabolism. Secondly, the dual-nutrient combination allows for efficient and even distribution of nutrients throughout the soil, resulting in uniform plant growth. Additionally, these fertilizers have a low salt index, meaning they will not cause fertilizer burn or damage to plant roots. The slow-release properties of phosphate and diammonium phosphate also contribute to long-lasting effects, reducing the need for frequent reapplication.

4.What are the similarities between 5 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.
5.Does 5 phosphate promote certain diseases?
We focus on providing high 5 phosphate 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.
6.What is the difference between 5 phosphate and organophosphorus?
Our 5 phosphate products have competitive and differentiated advantages, and actively promote digital transformation and innovation.
Phosphate refers to a chemical compound containing phosphorus and oxygen atoms, such as phosphates found in fertilizers and detergents. It is also an essential nutrient for plants and animals.
Organophosphorus, on the other hand, refers to a class of chemical compounds that contain phosphorus and carbon atoms bonded together. These compounds are often used as pesticides, herbicides, and nerve agents. They can be highly toxic to humans and other organisms.
In summary, phosphate is a specific type of chemical compound, while organophosphorus is a broader term that refers to a class of compounds.

7.What impact do 5 phosphate 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.
8.What by-products are produced during the production of 5 phosphate?
Our company has many years of 5 phosphate experience and expertise.
During the production process of phosphate, various by-products are produced. These include sulfuric acid, which is used in the initial step of phosphate production, as well as gypsum, which is a by-product of the neutralization process. Other by-products include fluoride gases, which are created during the acidulation process, and phosphogypsum, a solid waste produced during the production of phosphoric acid. Additionally, various heavy metals, such as cadmium, nickel, and lead, can also be produced depending on the type of phosphate ore being processed. These by-products require proper handling and disposal to minimize their impact on the environment.
9.What products can 5 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.

10.What 5 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.
11.What is the difference between 5 phosphate 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.
12.Can 5 phosphate be used as fertilizer?
Our 5 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.What is the difference between ammonium 5 phosphate and diammonium 5 phosphate?
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.
14.What are the uses of 5 phosphate in the pharmaceutical industry?
Phosphate is a crucial mineral in the pharmaceutical industry, playing a vital role in numerous processes and products. It is commonly used in the production of medication, as well as in the formulation of various vaccines and antibiotics. Additionally, phosphate is an essential ingredient in the manufacturing of vitamins, which are essential for maintaining good health. It is also used as a buffering agent to control the pH levels in medications, making them safe for consumption. Moreover, phosphate is used as an excipient, ensuring the stability and effectiveness of drugs. In summary, phosphate has a multitude of uses in the pharmaceutical industry, making it an indispensable component in the creation of medicines and other health-related products.