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Guizhou SINO-PHOS Chemical Co., Ltd. was established in 2002 and is a professional manufacturer with 18 years of experience. As a comprehensive modern chemical enterprise, its main products include phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. At present, it has formed an annual production scale of 30,000 tons of phosphate and 60,000 tons of phosphate. We have obtained ISO9001:2000 quality management system certificate and self-operated import and export rights. The products are exported to Antigua and Barbuda,Saint Helena,Bermuda,Tromelin Island,South Korea and other places. The company adheres to the purpose of reliable quality, excellent service and excellent credit. We will do our part for the development of China's modern national industry and continue to work hard to become stronger in the future. We welcome friends from all walks of life at home and abroad to cooperate with us!
Classification | Phosphoric Acid |
Place of Origin | Guizhou, China |
Other Names | PA 85% |
MF | 00 |
EINECS No. | 200-662-2 |
Grade Standard | Industrial Grade |
Appearance | white powder |
Application | Chemical additives and cleaning |
Brand Name | SINO-PHOS |
Model Number | zy |
Product name | phosphoric acid |
Grade | Industrail Grade |
Packaging Details | 32kg/bag 40bag/pellet |
Supply Ability | 97993 Metric Ton/Metric Tons per Week |
Quantity (metric tons) | > 108089 |
Lead time (days) | 13 |
atomic mass of phosphoric acid bearings FAQs Guide
atomic mass of 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, atomic mass of phosphoric acid is a vital ingredient in many products and processes.
2.Is atomic mass of phosphoric acid harmful to the environment?
3.What does the reaction of atomic mass of phosphoric acid with water produce?
4.What is atomic mass of phosphoric acid?
5.What are the applications of atomic mass of phosphoric acid in the pharmaceutical field?
6.Under what circumstances is contact with atomic mass of phosphoric acid necessary?
7.Can atomic mass of phosphoric acid react with other chemicals?
8.What substances does atomic mass of phosphoric acid react with?
9.What is the role of atomic mass of phosphoric acid as a buffer?
10.What are the common preparation methods of atomic mass of phosphoric acid?
11.What safety issues does atomic mass of phosphoric acid cause?
12.In what substances can atomic mass of phosphoric acid be found?
13.Are there any alternatives to using atomic mass of phosphoric acid in food and beverage production?
14.What compounds are produced when atomic mass of phosphoric acid reacts with metals?
1.How is atomic mass of phosphoric acid produced?
Phosphoric acid is primarily produced through the wet process, which involves the reaction of phosphate rock with sulfuric acid. This process results in the production of a crude phosphoric acid, which is further purified through various methods, such as evaporation and filtration, to obtain the pure form of phosphoric acid.
2.Is atomic mass of phosphoric acid harmful to the environment?
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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.
3.What does the reaction of atomic mass of phosphoric acid with water produce?
The reaction of phosphoric acid (H3PO4) with water (H2O) produces a solution of phosphoric acid in water. This solution is acidic and contains H+ ions from the dissociation of the acid. The reaction can be represented by the following equation:
H3PO4 + H2O → H+ + H2PO4- + H2O
The H+ ions combine with water molecules to form hydronium ions (H3O+), which give the solution its acidic properties. The H2PO4- ions also contribute to the acidity of the solution. Overall, the reaction produces a solution that is highly acidic and can be used in various industrial and laboratory applications.
4.What is atomic mass of phosphoric acid?
We focus on providing high atomic mass of phosphoric acid quality products and services.
Phosphoric acid is a mineral acid with the chemical formula H3PO4. It is a colorless, odorless, and highly corrosive liquid that is commonly used in the production of fertilizers, detergents, and food and beverages. It is also used in the production of pharmaceuticals, metal treatments, and water treatment. Phosphoric acid is an important source of phosphorus, an essential nutrient for plants and animals. It is also used as an acidifying agent in soft drinks and other food products.
5.What are the applications of atomic mass of phosphoric acid in the pharmaceutical field?
Our atomic mass of phosphoric acid products have competitive and differentiated advantages, and actively promote digital transformation and innovation.
Phosphoric acid, a colorless, odorless, and highly soluble acid, has a wide range of applications in the pharmaceutical field. It is commonly used as a pH adjuster, stabilizer, and flavoring agent in various medications and drug formulations. Additionally, phosphoric acid is also utilized in the production of various antibiotics, vitamins, and other pharmaceutical ingredients. Its anti-inflammatory properties make it a valuable ingredient in over-the-counter pain relievers, while its ability to bind calcium makes it beneficial in bone health supplements. Furthermore, phosphoric acid is essential in the production of phosphate salts used in the treatment of kidney stones and renal disorders.

6.Under what circumstances is contact with atomic mass of phosphoric acid necessary?
We are a new atomic mass of 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.
7.Can atomic mass of phosphoric acid react with other chemicals?
Yes, phosphoric acid can react with a wide range of chemicals. It is a strong acid and can react with bases to form salts, and with metals to produce hydrogen gas.
8.What substances does atomic mass of phosphoric acid react with?
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Phosphoric acid can react with a variety of substances, including:
Phosphoric acid is a colorless and odorless mineral acid that is commonly used in the production of fertilizers, food additives, and beverages. It is a strong acid that can react with various substances, including metals, bases, and compounds containing hydroxyl groups. When phosphoric acid comes into contact with metals, it can produce hydrogen gas and form metal phosphate salts. When mixed with bases, such as sodium hydroxide, it forms water and corresponding salts. In addition, phosphoric acid also reacts with compounds containing hydroxyl groups, such as alcohols, to form esters. This versatile nature of phosphoric acid makes it an essential component in many industrial and commercial processes.
9.What is the role of atomic mass of phosphoric acid as a buffer?
Our atomic mass of phosphoric acid products undergo strict quality control to ensure customer satisfaction.
Phosphoric acid is a weak acid that can act as a buffer in a solution. A buffer is a substance that helps maintain the pH of a solution by resisting changes in its acidity or basicity. Phosphoric acid can act as a buffer in two ways:
1. As a weak acid: When added to a solution, phosphoric acid can donate a proton (H+) to neutralize any excess hydroxide ions (OH-) present, thereby preventing the solution from becoming too basic.
2. As a salt: Phosphoric acid can also form salts with other ions present in the solution, such as sodium or potassium ions. These salts can act as a reservoir of protons, which can be released or absorbed to maintain the pH of the solution.
10.What are the common preparation methods of atomic mass of phosphoric acid?
We have a wide range of atomic mass of 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.

11.What safety issues does atomic mass of phosphoric acid cause?
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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.
12.In what substances can atomic mass of 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.
13.Are there any alternatives to using atomic mass of 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.
14.What compounds are produced when atomic mass of phosphoric acid reacts with metals?
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The compounds produced when phosphoric acid reacts with metals depend on the specific metal being used. Generally, the reaction produces a salt and hydrogen gas. For example:
1. Phosphoric acid + iron → iron phosphate + hydrogen gas
2. Phosphoric acid + magnesium → magnesium phosphate + hydrogen gas
3. Phosphoric acid + zinc → zinc phosphate + hydrogen gas
In all cases, the hydrogen gas is released as a byproduct of the reaction. The resulting salt, such as iron phosphate or magnesium phosphate, will depend on the specific metal used.