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SINO-PHOS is mainly engaged in the wholesale and retail of chemical products. Its main products include phosphoric acid, sodium tripolyphosphate, sodium hexametaphosphate, sodium tripophosphate, sodium pyrophosphate, etc. At present, the company's products are widely sold to Oman,Poland,Antarctica,Georgia,Saint Helena and other countries and regions, and we are also actively exploring other overseas markets. Since its establishment, the company has always adhered to the concept of "integrity, cooperation, win-win, and mission". We are customer-oriented, continue to innovate around customer needs, strictly control product quality, and focus on providing customers with high-quality products and all-round services. In line with the tenet of "pursuit, growth, technology, spirit, and interests", the company now has a group of capable management talents and a high-quality professional team.
Storage Type | Avoid sunlight and violent strike |
Specification | 93% |
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 | phosphoric acid history |
Appearance | Solid or Viscous Liquid |
Shelf Life | 3 Years |
Usage | Acidity Regulators |
Package | 245kg/drum |
Function | Food Additives |
Product Type | Food Additives |
CAS | 7664-38-2 |
Key word | Phosphoric Acid, PA |
Color | ≤9(APHA) |
Packaging Details | Packing of Factory supply Phosphoric Acid 85% 75% Phosphoric Acid Net weight 35KG, 273KG/360KG, 1650KG/1670KG per drum, Plastic drum, IBC drum, or based on the customers' requirement |
Supply Ability | 10715 Metric Ton/Metric Tons per Month |
Quantity (kilograms) | > 187 |
Lead time (days) | 13 |
phosphoric acid history bearings FAQs Guide phosphoric acid history 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, phosphoric acid history is a vital ingredient in many products and processes.
2.Which metals can phosphoric acid history be used to prevent corrosion?
3.What are the functions of phosphoric acid history in food processing?
4.What effect does phosphoric acid history have on plants?
5.What compounds are produced when phosphoric acid history reacts with a base?
6.How is phosphoric acid history produced?
7.Does phosphoric acid history have any environmental implications?
8.Does phosphoric acid history have any effect on air quality?
9.3. What are the chemical properties of phosphoric acid history?
10.What compounds are produced when phosphoric acid history reacts with metals?
11.Under what circumstances is contact with phosphoric acid history necessary?
12.Can phosphoric acid history be used in the treatment of osteoporosis?
13.What are the symptoms of exposure to phosphoric acid history?
14.Are there any alternatives to using phosphoric acid history in food and beverage production?
1.What is the difference between phosphoric acid history and other acids?
We have a professional team that is committed to the innovation and development of phosphoric acid history.
Phosphoric acid is a weak acid, meaning it does not completely dissociate in water. This makes it less corrosive and less reactive compared to strong acids like hydrochloric acid or sulfuric acid. It also has a lower acidity level, with a pH of around 2.2, making it less acidic than other common acids.
Additionally, phosphoric acid is a polyprotic acid, meaning it can donate more than one proton in a reaction. This allows it to act as a buffer, helping to maintain a stable pH in solutions.
In terms of uses, phosphoric acid is commonly used in the food and beverage industry as a flavoring agent and preservative, while other acids like hydrochloric acid and sulfuric acid are used in industrial processes such as metal cleaning and production.
2.Which metals can phosphoric acid history be used to prevent corrosion?
We have established a good reputation and reliable partnerships within the phosphoric acid history 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.
3.What are the functions of phosphoric acid history in food processing?
We have rich industry experience and professional knowledge, and have strong competitiveness in the market.
Phosphoric acid, also known as orthophosphoric acid, is an important acid that is widely used in food processing due to its various functions. Firstly, it is commonly used as a pH regulator or acidulant to adjust and maintain the acidity of food products. This is crucial for achieving the desired taste, texture, and appearance of food. Additionally, phosphoric acid serves as a chelating agent, which means it can bind with metal ions and prevent them from reacting with other ingredients in food, therefore improving shelf life and stability. It is also used as a leavening agent in baking, helping to create a light and airy texture in breads and cakes. Moreover, phosphoric acid is a key component in the production of soft drinks, as it provides a tangy and refreshing taste. Lastly, it acts as a preservative, inhibiting the growth of bacteria and molds in food products.
4.What effect does phosphoric acid history have on plants?
We adhere to the principle of integrity and transparency, and establish long -term relationships with partners, and we attach great importance to this detail.
Phosphoric acid is a source of phosphorus, an essential nutrient for plant growth. It helps plants with root development, photosynthesis, and overall growth. However, excessive amounts of phosphoric acid can be harmful to plants, causing nutrient imbalances and potentially damaging the plant's roots. It is important to use phosphoric acid in moderation and follow recommended application rates to avoid negative effects on plants.

5.What compounds are produced when phosphoric acid history reacts with a base?
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When phosphoric acid, a commonly used substance in fertilizers and food additives, reacts with a base, such as sodium hydroxide, several compounds are produced. These include water, a salt (such as sodium phosphate), and potentially hydrogen gas if a strong base is used. This reaction, known as neutralization, is an important process in chemical reactions and can be used to balance pH levels in various industries. Phosphoric acid is also critical in the body for maintaining proper electrolyte balance and supporting healthy bone growth.
6.How is phosphoric acid history 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.
7.Does phosphoric acid history 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.
8.Does phosphoric acid history have any effect on air quality?
phosphoric acid history is not a product only, but also can help you comes to money-making.
Phosphoric acid does not have a direct effect on air quality. However, it can contribute to the formation of acid rain when it reacts with water vapor in the atmosphere. Acid rain can have negative impacts on air quality by damaging plants, buildings, and water bodies. Additionally, the production of phosphoric acid can release air pollutants such as sulfur dioxide and nitrogen oxides, which can contribute to air pollution.

9.3. What are the chemical properties of phosphoric acid history?
We actively participate in the phosphoric acid history industry associations and organization activities. The corporate social responsibility performed well, and the focus of brand building and promotion
Phosphoric acid is a colorless, odorless and highly corrosive liquid with the chemical formula H3PO4. It is composed of three hydrogen atoms, one phosphorus atom and four oxygen atoms. This strong mineral acid is commonly used in industrial and household products such as fertilizers, detergents, and soft drinks. Phosphoric acid is considered a weak acid, meaning it does not completely dissociate in water and has a higher pH compared to strong acids like sulfuric acid. It has a variety of chemical properties, including its ability to react with metals, carbonates, and bases to form salts. It is also a dehydrating agent, meaning it can remove water molecules from other substances. In addition, it is a key component in the production of phosphates which are widely used in the production of fertilizers and detergents. Overall, phosphoric acid has a wide range of applications due to its unique chemical properties.
10.What compounds are produced when phosphoric acid history 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.
11.Under what circumstances is contact with phosphoric acid history necessary?
We are a new phosphoric acid history 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.
12.Can phosphoric acid history be used in the treatment of osteoporosis?
Phosphoric acid has been studied as a potential treatment for osteoporosis, a condition in which bones become weak and brittle. It is believed that the acid can help in the absorption of calcium and prevent bone loss. However, further research is needed to confirm its effectiveness in treating this condition.

13.What are the symptoms of exposure to phosphoric acid history?
We pay attention to employee development and benefits, and provide a good working environment in order to improve the efficiency of employees and improve the quality management of phosphoric acid history products.
The symptoms of exposure to Phosphoric acid include irritation and burning of the skin, eyes, and respiratory tract. Ingestion can cause abdominal pain, nausea, and vomiting, and may lead to severe damage to the throat and digestive tract. Long-term exposure can also cause damage to the teeth, bones, and kidneys. It is important to seek medical attention immediately if you experience any of these symptoms after being exposed to Phosphoric acid.
14.Are there any alternatives to using phosphoric acid history 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.