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Guizhou SINO-PHOS Chemical Co., Ltd. is China's leading manufacturer of phosphoric acid and phosphates. It has advanced production technology and equipment, and strictly controls raw material selection and production processes to ensure product quality and safety. Our main products include phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate and other specifications, which can meet the needs of different customers.
Phosphate is an important chemical substance widely used in food, medicine, agriculture, chemical industry and other fields. As a Phosphate manufacturer, we are committed to producing high-quality, environmentally friendly, and safe products to meet global market demand. All our products comply with international quality standards and our customers come from different markets around the world. For example Nauru,Slovenia,Poland,Denmark,Jan Mayen etc.
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 | 34KG/57KG/998KG |
Supply Ability | 2272384 Kilogram/Kilograms per Year |
Quantity (metric tons) | > 280 |
Lead time (days) | 21 |
low phosphate ecg changes bearings FAQs Guide low phosphate ecg changes, 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, low phosphate ecg changes 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 low phosphate ecg changes 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 low phosphate ecg changes products and how they can benefit your business.
2.What is the difference between low phosphate ecg changes and organophosphorus?
3.Can low phosphate ecg changes be used as agricultural conservation agent?
4.What low phosphate ecg changes are produced during denitrification?
5.In which industries do low phosphate ecg changes play an important role?
6.Can low phosphate ecg changes be used as fertilizer?
7.What are the environmental benefits of low phosphate ecg changes recycling?
8.Can low phosphate ecg changes be used to make plastic?
9.What is the difference between low phosphate ecg changes and diammonium low phosphate ecg changes?
10.How is low phosphate ecg changes extracted?
11.How to control the concentration of low phosphate ecg changes in water?
12.What compounds can low phosphate ecg changes form?
13.What factors affect the price of low phosphate ecg changes?
14.What is the difference between ammonium low phosphate ecg changes and diammonium low phosphate ecg changes?
15.What is the role of catalysts in the low phosphate ecg changes industry?
16.What are the uses of low phosphate ecg changes in the pharmaceutical industry?
1.What by-products are produced during the production of low phosphate ecg changes?
Our company has many years of low phosphate ecg changes 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.
2.What is the difference between low phosphate ecg changes and organophosphorus?
Our low phosphate ecg changes 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.

3.Can low phosphate ecg changes 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.
4.What low phosphate ecg changes 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.

5.In which industries do low phosphate ecg changes play an important role?
We are a new low phosphate ecg changes 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.
6.Can low phosphate ecg changes be used as fertilizer?
Our low phosphate ecg changes 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.

7.What are the environmental benefits of low phosphate ecg changes 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.
8.Can low phosphate ecg changes 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.

9.What is the difference between low phosphate ecg changes and diammonium low phosphate ecg changes?
We operate our low phosphate ecg changes 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.How is low phosphate ecg changes extracted?
We continue to improve low phosphate ecg changes 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.

11.How to control the concentration of low phosphate ecg changes 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.
12.What compounds can low phosphate ecg changes 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.

13.What factors affect the price of low phosphate ecg changes?
We have a wide range of low phosphate ecg changes 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.
14.What is the difference between ammonium low phosphate ecg changes and diammonium low phosphate ecg changes?
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.

15.What is the role of catalysts in the low phosphate ecg changes industry?
We have established a good reputation and reliable partnerships within the low phosphate ecg changes 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.
16.What are the uses of low phosphate ecg changes 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.
