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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 Guinea-Bissau,Benin,Bahrain,Botswana and other countries.
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 | 35kg/bag 43bag/pellet |
Supply Ability | 90227 Metric Ton/Metric Tons per Week |
Quantity (metric tons) | > 103309 |
Lead time (days) | 15 |
iron iii hydroxide plus phosphoric acid bearings FAQs Guide
iron iii hydroxide plus 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, iron iii hydroxide plus phosphoric acid is a vital ingredient in many products and processes.
2.What is the relationship between iron iii hydroxide plus phosphoric acid and living organisms?
3.What are the uses of iron iii hydroxide plus phosphoric acid?
4.How is iron iii hydroxide plus phosphoric acid produced?
5.What are the symptoms of exposure to iron iii hydroxide plus phosphoric acid?
6.Are there any alternatives to using iron iii hydroxide plus phosphoric acid in food and beverage production?
7.What are the functions of iron iii hydroxide plus phosphoric acid in food processing?
8.What is the role of iron iii hydroxide plus phosphoric acid in soaps and detergents?
9.In what substances can iron iii hydroxide plus phosphoric acid be found?
10.What compounds are produced when iron iii hydroxide plus phosphoric acid reacts with metals?
11.What is the acidity of iron iii hydroxide plus phosphoric acid?
12.What is the role of iron iii hydroxide plus phosphoric acid in fertilizers?
13.What does the reaction of iron iii hydroxide plus phosphoric acid with water produce?
1.What compounds are produced when iron iii hydroxide plus phosphoric acid reacts with oxides?
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When phosphoric acid reacts with oxides, it produces a group of chemicals called phosphates. This reaction results in the formation of different types of phosphates, such as monophosphates, diphosphates, and triphosphates. These compounds are important in various industrial and agricultural applications, such as fertilizers, detergents, and food additives. Phosphates also play a crucial role in biological processes, such as metabolism and cellular signaling. They are essential for the growth and development of plants and animals, making phosphoric acid an essential component in many industries and scientific fields.
2.What is the relationship between iron iii hydroxide plus phosphoric acid and living organisms?
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Phosphoric acid is an important component in living organisms as it is a key element in the formation of DNA, RNA, and ATP (adenosine triphosphate), which are essential for cellular processes and energy production. It is also involved in the regulation of pH levels in cells and plays a role in the metabolism of carbohydrates, proteins, and fats. In addition, phosphoric acid is found in many food sources and is used as a preservative and flavoring agent, making it a common part of the human diet. However, excessive exposure to phosphoric acid can be harmful to living organisms, causing damage to tissues and organs.
3.What are the uses of iron iii hydroxide plus phosphoric acid?
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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.

4.How is iron iii hydroxide plus 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.
5.What are the symptoms of exposure to iron iii hydroxide plus phosphoric acid?
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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.
6.Are there any alternatives to using iron iii hydroxide plus 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.

7.What are the functions of iron iii hydroxide plus phosphoric acid in food processing?
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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.
8.What is the role of iron iii hydroxide plus phosphoric acid in soaps and detergents?
Phosphoric acid is not typically used in soaps and detergents. It is more commonly used in cleaning products such as toilet bowl cleaners and rust removers. In these products, phosphoric acid acts as a strong acid that helps to dissolve and remove mineral deposits and rust stains. It also has some disinfectant properties and can help to kill bacteria and other microorganisms. However, in soaps and detergents, other ingredients such as surfactants and enzymes are typically used to remove dirt and stains from surfaces.
9.In what substances can iron iii hydroxide plus phosphoric acid be found?
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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.

10.What compounds are produced when iron iii hydroxide plus 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.
11.What is the acidity of iron iii hydroxide plus phosphoric acid?
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The acidity of phosphoric acid is moderate, with a pH of around 2.2.
12.What is the role of iron iii hydroxide plus 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.

13.What does the reaction of iron iii hydroxide plus 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.