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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 Comoros,Trinidad and Tobago,Bosnia and Herzegovina,Guyana,Tokelau,Somalia etc.
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 | 22kg/bag 42bag/pellet |
Supply Ability | 106753 Metric Ton/Metric Tons per Week |
Quantity (metric tons) | > 93749 |
Lead time (days) | 18 |
paint over phosphoric acid bearings FAQs Guide paint over 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, paint over phosphoric acid is a vital ingredient in many products and processes.
2.What are the uses of paint over phosphoric acid in agriculture?
3.What compounds are produced when paint over phosphoric acid reacts with phosphate?
4.What effect does paint over phosphoric acid have on plants?
5.Is paint over phosphoric acid biodegradable?
6.What substances does paint over phosphoric acid react with?
7.What is the relationship between paint over phosphoric acid and beverages?
8.What is the role of paint over phosphoric acid as a buffer?
9.What safety issues does paint over phosphoric acid cause?
10.Are there any alternatives to using paint over phosphoric acid in food and beverage production?
11.What fertilizers can paint over phosphoric acid be used to make?
12.20. What chemical products can paint over phosphoric acid be used to make?
13.3. What are the chemical properties of paint over phosphoric acid?
14.What compounds are produced when paint over phosphoric acid reacts with metals?
1.What is the chemical formula for paint over phosphoric acid?
The chemical formula for phosphoric acid is H₃PO₄. This means that each molecule of phosphoric acid contains three atoms of hydrogen, one atom of phosphorus, and four atoms of oxygen.
2.What are the uses of paint over phosphoric acid in agriculture?
Our company has many years of paint over phosphoric acid experience and expertise.
Phosphoric acid, also known as orthophosphoric acid, is an important chemical compound with various uses in agriculture. It is commonly used as a fertilizer in the form of phosphate rock, which is derived from the acidification of phosphate ores. Phosphoric acid plays a crucial role in plant growth by providing essential nutrients such as phosphorus, which is essential for the development of strong roots and overall plant health. It is also used as a soil conditioner to adjust the pH level and increase the availability of other nutrients in the soil. In addition, phosphoric acid is used as a food additive to provide tartness and acidity in soft drinks, meat products, and condiments. Its role in agriculture is vital in maximizing crop yield and maintaining soil fertility, making it an indispensable ingredient in the agricultural industry.

3.What compounds are produced when paint over phosphoric acid reacts with phosphate?
We attach importance to the innovation ability and team spirit of employees, have advanced R & D facilities and laboratories, and have a good quality management system.
When phosphoric acid reacts with phosphate, the following compounds are produced:
1. Dihydrogen phosphate (H2PO4-)
2. Monohydrogen phosphate (HPO42-)
3. Phosphate (PO43-)
4. Water (H2O)
4.What effect does paint over phosphoric acid 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.Is paint over phosphoric acid biodegradable?
We have established long-term and stable partnerships with our suppliers, so we have great advantages in price and cost and quality assurance.
No, phosphoric acid is not biodegradable. It is a strong acid and does not break down easily in the environment. It can be diluted and neutralized, but it will still persist in the environment for a long time.
6.What substances does paint over phosphoric acid react with?
We should perform well in market competition, and the prices of paint over phosphoric acid products have a great competitive advantage.
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.

7.What is the relationship between paint over phosphoric acid and beverages?
I have a comprehensive after -sales service system, which can pay attention to market trends in time and adjust our strategy in a timely manner.
Phosphoric acid is commonly used as an additive in beverages, particularly in soft drinks and energy drinks. It is added to give a tangy or sour taste and to act as a preservative. Phosphoric acid also helps to balance the sweetness of the drink and can enhance the flavor of certain ingredients. However, excessive consumption of phosphoric acid has been linked to negative health effects, such as tooth decay and bone loss. Therefore, the use of phosphoric acid in beverages is a topic of debate and regulation in the food and beverage industry.
8.What is the role of paint over phosphoric acid as a buffer?
Our paint over 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.

9.What safety issues does paint over 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.
10.Are there any alternatives to using paint over 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.

11.What fertilizers can paint over phosphoric acid be used to make?
We are centered on customers and always pay attention to customers' needs for paint over 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.
12.20. What chemical products can paint over phosphoric acid be used to make?
We continuously upgrade our skills and knowledge to adapt to changing paint over phosphoric acid market needs.
Phosphoric acid can be used to make fertilizers, detergents, food additives, water treatment chemicals, and industrial chemicals such as phosphates, phosphonates, and phosphoric esters. It is also used in the production of animal feed, pharmaceuticals, and metal surface treatment.

13.3. What are the chemical properties of paint over phosphoric acid?
We actively participate in the paint over phosphoric acid 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.
14.What compounds are produced when paint over phosphoric acid reacts with metals?
Our products & services cover a wide range of areas and meet the needs of different fields.
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.
