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Guizhou SINO-PHOS Chemical Co., Ltd. can supply phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. with the best quality and the most favorable price, 20,000-50,000 tons per month. For 18 years, it has focused on the research, development and production of phosphoric acid and phosphates. The company has a complete phosphating and phosphating production line, which can provide customers with a full-process production and quality assurance chain. Our products are widely used in DAP, SSP, TSP, MAP, NPK fertilizers and DCP, MDCP, TCP feed additives and other fertilizer industries in Jordan,Mozambique,Mexico,Burundi,Albania,Iceland and other countries.
Storage Type | Avoid sunlight and violent strike |
Specification | 95% |
Shelf Life | 1 year |
Manufacturer | made in China |
Ingredients | phosphate raw matrial products |
Content | phosphate raw matrial products |
Address | China |
Instruction for use | phosphate raw matrial products |
Place of Origin | guizhou, China |
CAS No. | 7664-38-2 |
Other Names | phosphoric acid solutions |
MF | H3O4P |
EINECS No. | 231-633-2 |
FEMA No. | 2900 | PHOSPHORIC ACID |
Brand Name | SINO-PHOS |
Model Number | CAS 7664-38-2 |
Product name | structure phosphoric acid |
Appearance | Solid or Viscous Liquid |
Shelf Life | 3 Years |
Usage | Acidity Regulators |
Package | 238kg/drum |
Function | Food Additives |
Product Type | Food Additives |
CAS | 7664-38-2 |
Key word | Phosphoric Acid, PA |
Color | ≤5(APHA) |
Packaging Details | Packing of Factory supply Phosphoric Acid 85% 75% Phosphoric Acid Net weight 35KG, 256KG/383KG, 1650KG/1670KG per drum, Plastic drum, IBC drum, or based on the customers' requirement |
Supply Ability | 10729 Metric Ton/Metric Tons per Month |
Quantity (kilograms) | > 294 |
Lead time (days) | 12 |
structure phosphoric acid bearings FAQs Guide
structure phosphoric acid is a colorless, odorless inorganic acid with the chemical formula H3PO4. It has a wide range of uses in various industries, including food and beverage, fertilizer production, and industrial cleaning. As a food additive, it is commonly used as a flavor enhancer and preservative. In fertilizer production, it serves as a source of phosphorous, an essential nutrient for plant growth. In industrial cleaning, it is used as an effective descaler for metal surfaces. Highly versatile and effective, structure phosphoric acid is a vital ingredient in many products and processes.
2.Is structure phosphoric acid a strong acid or a weak acid?
3.Which metals can structure phosphoric acid be used to prevent corrosion?
4.Under what circumstances is contact with structure phosphoric acid necessary?
5.What are the common preparation methods of structure phosphoric acid?
6.Is structure phosphoric acid harmful to the environment?
7.Can structure phosphoric acid be used as a cleaning agent?
8.Does structure phosphoric acid have any environmental implications?
9.Are there any alternatives to using structure phosphoric acid in food and beverage production?
10.What is the role of structure phosphoric acid in fertilizers?
11.What fertilizers can structure phosphoric acid be used to make?
12.What safety issues does structure phosphoric acid cause?
13.Is structure phosphoric acid present in soft drinks?
14.In what substances can structure phosphoric acid be found?
15.What is the hazard of structure phosphoric acid in fire?
1.What are the uses of structure phosphoric acid?
We pay attention to the transformation of intellectual property protection and innovation achievements. Your OEM or ODM order design we have a complete confidentiality system.
Phosphoric acid, also known as orthophosphoric acid, is a colorless, odorless, and syrupy liquid compound. It has a wide range of uses in various industries and is one of the most important industrial acids. One of its primary uses is as a food additive, often referred to as E338, which is used as a flavoring and acidifying agent in carbonated beverages and various processed foods. Phosphoric acid is also used in the production of fertilizers, detergents, and various other chemical compounds. In addition, it is commonly used as a rust inhibitor in metal treatments, as a pH adjuster in household cleaners, and as a catalyst in the production of high-performance plastics. It also has medical applications, such as in dental care as a component of toothpaste and in medications for kidney stones. With its many uses and applications, phosphoric acid plays a significant role in various aspects of our daily lives.
2.Is structure phosphoric acid a strong acid or a weak acid?
We have the leading technology and innovation capabilities, and attach importance to employee training and development, and provide promotion opportunities.
Phosphoric acid is a weak acid.
3.Which metals can structure phosphoric acid be used to prevent corrosion?
We have established a good reputation and reliable partnerships within the structure phosphoric acid industry.
Phosphoric acid can be used to prevent corrosion on metals such as iron, steel, aluminum, and zinc. It can also be used on alloys containing these metals, such as stainless steel and galvanized steel.

4.Under what circumstances is contact with structure phosphoric acid necessary?
We are a new structure phosphoric acid manufacturer.
Contact with Phosphoric acid is necessary under various circumstances. It is commonly used in industries such as agriculture, food, and pharmaceuticals as a fertilizer, food additive, and for acidulation reactions in the production of various products. In addition, it is also crucial in the manufacturing of detergents and cleaners, as well as in the production of dental products and medicines. With its strong acidic properties, Phosphoric acid is an important component in many industrial processes and plays a significant role in the production of numerous everyday products.
5.What are the common preparation methods of structure phosphoric acid?
We have a wide range of structure phosphoric acid customer groups and establishes long -term cooperative relationships with partners. The countries we provide services include .
There are several common methods used to prepare phosphoric acid, a colorless, odorless mineral acid with numerous industrial and agricultural applications. These methods typically involve reacting phosphorus-containing minerals or compounds with sulfuric acid or other strong acids to produce phosphoric acid. One prevalent method is the wet process, which involves dissolving phosphate rock in sulfuric acid and then concentrating the resulting solution to obtain phosphoric acid. Another commonly used method is the thermal or furnace process, which involves heating phosphorus-containing rock or ore with sulfuric acid to produce a gaseous mixture, which is then cooled and condensed to yield phosphoric acid. Additionally, there are several other variations of these methods, such as the electrolytic process, which involves using electricity to convert phosphates into phosphoric acid.
6.Is structure phosphoric acid harmful to the environment?
We enjoy high authority and influence in the industry and continue to innovate products and service models.
Phosphoric acid can be harmful to the environment if it is released into the environment in large quantities. It is considered a hazardous substance and can cause harm to aquatic life if it enters water bodies. It can also contribute to acid rain and damage soil and vegetation if it is released into the air.
Additionally, the production of phosphoric acid can also have negative impacts on the environment, such as air and water pollution, and the depletion of natural resources. Proper handling and disposal of phosphoric acid are important to minimize its potential harm to the environment.

7.Can structure phosphoric acid be used as a cleaning agent?
Yes, phosphoric acid is commonly used as a cleaning agent due to its ability to dissolve mineral deposits and rust. It is often used to clean metal surfaces, such as sinks and bathtubs.
8.Does structure phosphoric acid have any environmental implications?
Phosphoric acid can have environmental implications if it is not disposed of properly. It is a corrosive chemical that can harm plants and animals if it enters the environment. Therefore, it is important to follow regulations for its safe disposal.
9.Are there any alternatives to using structure phosphoric acid in food and beverage production?
Yes, there are alternatives to using phosphoric acid in food and beverage production. Citric acid and lactic acid are commonly used as substitutes, providing similar tartness and preservative properties.

10.What is the role of structure phosphoric acid in fertilizers?
Phosphoric acid is a major component in the production of fertilizers, as it provides a source of phosphorus, an essential nutrient for plant growth. It helps promote root development, increases nutrient uptake, and improves the overall quality of crops.
11.What fertilizers can structure phosphoric acid be used to make?
We are centered on customers and always pay attention to customers' needs for structure phosphoric acid products.
Phosphoric acid is a highly versatile compound that can be used as a key ingredient in the production of various fertilizers. Its acidic nature makes it ideal for use as a pH adjuster, helping to create a more favorable environment for plant growth. Additionally, it supplies plants with the essential nutrient phosphorous, which is crucial for root development and overall plant health. Some of the most common fertilizers that utilize phosphoric acid include superphosphate, ammonium phosphate, and triple superphosphate. These fertilizers are widely used in agriculture and horticulture to increase crop yields and improve soil fertility.
12.What safety issues does structure phosphoric acid cause?
We have a first -class management team, and we pay attention to teamwork to achieve common goals.
Phosphoric acid is a chemical compound commonly used in the production of fertilizers, detergents, and food additives. However, it can also pose significant safety hazards if mishandled or ingested. One of the main concerns with phosphoric acid is its corrosive nature, which can cause severe burns if it comes into contact with the skin or eyes. Inhaling its vapors can also irritate the respiratory system and lead to breathing difficulties. Furthermore, if ingested in high concentrations, it can cause digestive problems and potentially lead to organ damage. Taking appropriate precautions and following safety guidelines when handling phosphoric acid is crucial to minimize potential health risks.

13.Is structure phosphoric acid present in soft drinks?
Yes, phosphoric acid is commonly used in the production of soft drinks, particularly colas. It is added to give a tangy and sharp taste to the beverage, and also acts as a preservative to prevent bacteria growth.
14.In what substances can structure phosphoric acid be found?
We maintain a stable growth through reasonable capital operations, focus on industry development trends and cutting -edge technologies, and focus on product quality and safety performance.
Phosphoric acid, also known as orthophosphoric acid, is a colorless, odorless mineral acid with the chemical formula H3PO4. It is a weak acid that is commonly found in many food and beverage products, such as soft drinks, processed meats, and dairy products. It is also widely used as a chemical reagent in the production of fertilizers, detergents, and pharmaceuticals. Phosphoric acid can also be found naturally in rocks and soils, and in the human body where it plays important roles in metabolism and bone formation. However, excessive intake of phosphoric acid can have negative effects on dental health and the kidneys.
15.What is the hazard of structure phosphoric acid in fire?
We operate our structure phosphoric acid business with integrity and honesty.
Phosphoric acid is a corrosive substance and can cause severe burns if it comes into contact with skin or eyes. In a fire, it can release toxic fumes, such as phosphorus oxides, which can irritate the respiratory system and cause difficulty breathing. It can also react with other chemicals and materials, potentially causing explosions or other hazardous reactions.
