Chemical Formula | NaHF2 |
Molecular Weight | 61.99 g/mol |
Appearance | white crystalline powder |
Odor | odorless |
Solubility In Water | soluble |
Density | 2.08 g/cm³ |
Melting Point | 160.5 °C |
Boiling Point | decomposes |
Ph Of Aqueous Solution | acidic |
Hazard Class | corrosive |
Application | used in electroplating, etching, etc. |
Chemical Formula | NaHF2 |
Appearance | White crystalline powder |
Molar Mass | 61.99 g/mol |
Solubility In Water | Soluble |
Density | 2.08 g/cm³ |
Melting Point | 169.6 °C |
Boiling Point | Decomposes |
Acidity | Acidic salt |
Corrosivity | Corrosive to metals and tissues |
Hazard Class | 6.1 (Toxic) |
Chemical Formula | NaHF2 |
Appearance | Typically white crystalline powder |
Molar Mass | 61.99 g/mol |
Density | 2.08 g/cm³ |
Solubility In Water | Soluble |
Melting Point | 169.6 °C |
Boiling Point | Decomposes before boiling |
Ph In Solution | Acidic |
Hazard Class | Corrosive |
Main Use | In aluminum refining, as a flux in soldering |
Chemical Formula | NaHF2 |
Molecular Weight | 61.99 g/mol |
Appearance | White crystalline powder |
Solubility In Water | Soluble |
Density | 2.08 g/cm³ |
Melting Point | 160.5 °C |
Boiling Point | Decomposes |
Ph In Aqueous Solution | Acidic |
Hazard Class | Corrosive |
Storage Conditions | Store in a cool, dry place, away from moisture and incompatible materials |
Main Uses | Used in the manufacture of fluorine-containing chemicals, as a flux in soldering, and in metal surface treatment |
Chemical Formula | NaHF2 |
Molar Mass | 61.99 g/mol |
Appearance | white crystalline powder |
Solubility In Water | soluble |
Density | 2.08 g/cm³ |
Melting Point | 160.5 °C |
Boiling Point | decomposes |
Ph In Aqueous Solution | acidic |
Hazard Class | corrosive |
Storage Conditions | store in a cool, dry place, away from moisture and incompatible materials |
Sodium Hydrogen Difluoride Centri- Fugedried, Technical Application
Sodium, hydrogen and hydrogen difluoride are centrifugal-dried industrial products with a wide range of uses. In the field of metallurgy, it can be used as a flux. Due to its unique chemical properties, it can reduce the melting point of ore, make metal and impurities easier to separate, and improve metal purity. For example, in the smelting of aluminum, this substance can effectively improve the smelting efficiency and the quality of aluminum.
In chemical synthesis, it is an important raw material. Participates in the preparation of many fluorine-containing compounds, such as the synthesis of some high-performance plastics and pharmaceutical intermediates. With its fluorine-containing properties, it endows the product with special chemical stability and functionality.
In the electronics industry, it also has important functions. It is used for the preparation of etching agents, precise etching of semiconductor materials, and the manufacture of integrated circuits. It can selectively corrode materials such as silicon wafers to build fine electronic circuits.
In terms of material surface treatment, this industrial product can change the surface characteristics of materials. After its treatment, the corrosion resistance and wear resistance of the material surface are enhanced, and it is widely used in metal materials, glass and other surface protection to prolong the service life of materials and broaden the application scenarios.
Sodium Hydrogen Difluoride Centri- Fugedried, Technical Quality Standards
After sodium hydrodifluoride is centrifuged and dried, its industrial-grade Quality Standards usually cover the following points:
First and foremost, it concerns the purity of the ingredients. This is the top priority. The content of the main components of sodium hydrodifluoride must reach a considerable height, and the content of impurities must be strictly limited. Due to the amount of impurities, it will have a significant impact on its subsequent application efficiency. Too many impurities may cause chemical reactions to be inaccurate, or cause negative effects in specific processes, so the content of the main components often needs to reach a certain precise proportion to meet the stringent requirements of industrial applications.
Secondly, particle size is also a key indicator. The particle size distribution of the product should be uniform and suitable, and the material particle size requirements vary according to different industrial scenarios. If the particle size is too coarse, or it affects its solubility and dispersion; if the particle size is too fine, or it may cause agglomeration during storage and transportation. Therefore, the appropriate particle size range is essential to ensure the good performance and processing characteristics of the product.
Furthermore, the moisture content cannot be ignored. Excessive moisture may cause deliquescence of the product, affect its chemical stability and reactivity, and even lead to product deterioration. Therefore, after centrifugation drying, the moisture content must be controlled at a very low level to maintain the stability of product quality.
In addition, there are corresponding standards for appearance properties. The product should show a specific color and shape without obvious foreign matter mixing. The regular appearance not only reflects the purity of the product, but also provides intuitive protection for its smooth application in industrial production lines.
And the stability of the product, the storage stability under different environmental conditions, is also considered in the scope of Quality Standards. During the specified storage period, the performance indicators of the product should be maintained stable, and it should not fluctuate greatly due to factors such as environmental temperature and humidity, in order to ensure the continuity and stability of the industrial production process.
Sodium Hydrogen Difluoride Centri- Fugedried, Technical Storage Conditions
The storage conditions of sodium, hydrogen and difluoride, industrial products made by centrifugal drying, are crucial. These materials should be stored in a cool, dry and well-ventilated place. Avoid open flames and hot topics to prevent unexpected changes.
Because of its special chemical properties, in case of wet or hot topics, it is afraid of severe chemical reactions, so moisture-proof and heat insulation are the first priority for storage. The temperature of the storage should be controlled in a moderate range, not too high, resulting in changes in the properties of the material; the air humidity should also be paid attention to to keep dry to avoid moisture and qualitative changes.
Furthermore, this industrial product may be dangerous to a certain extent. The storage place should be far away from the flammable, explosive and strong oxidizing materials. It should be classified and stored in separate warehouses to prevent interaction and cause danger. The lighting, ventilation and other facilities in the warehouse should be explosion-proof and well grounded to prevent static ignition.
When taking and handling, strict procedures must also be followed, and the packaging should be handled lightly, so as not to damage the packaging. If stored properly, the quality and properties of the materials can be guaranteed, and they can be used for industrial purposes. Do not be negligent, which will cause safety risks and damage people and property.
Sodium Hydrogen Difluoride Centri- Fugedried, Technical
Sodium hydrodifluoride products are centrifuged and dried and are of industrial grade, and the process is quite complicated.
First, the raw materials of sodium, hydrogen and difluoride need to be prepared. Sodium is often taken from electrolytic molten sodium chloride to obtain pure metallic sodium. Hydrogen is produced, or obtained by hydrolysis, or from reforming natural gas. Difluorinated products, or prepared by chemical reaction of corresponding fluorine-containing compounds.
Then, sodium, hydrogen and difluorinated products are placed in a special reactor. This reactor needs to be able to withstand temperature and pressure, and has good sealing performance. During the reaction process, strict temperature control and pressure control. If the temperature is too high, the reaction will be too fast, which is easy to cause danger; if the temperature is too low, the reaction will be slow and time-consuming. The pressure also needs to be appropriate to promote the reaction to proceed in the desired direction.
After the reaction is completed, the product needs to be centrifuged to separate the solid from the liquid. When centrifugation is completed, the speed and time are both critical. If the speed is too fast or too slow, the separation effect will be affected. If the time is too short, the solid and liquid will not be fully separated; if the time is too long, energy will be wasted.
After separation, the product still needs to be dried. The method of drying is either to evaporate the water with heating or to absorb the moisture with a desiccant. However, the heating temperature also needs to be precisely controlled to prevent the product from decomposing or deteriorating. < Br >
After these various processes, the industrial-grade product of sodium hydrofluoride and centrifugal drying is obtained. The steps in between are closely connected, and a slight difference will affect the quality and yield of the product.
Sodium Hydrogen Difluoride Centri- Fugedried, Technical Advantages Compared to Other Similar Products
Sodium + Hydrogen + Difluoride (sodium, hydrogen, difluoride) is an industrial product treated by centrifugal drying. Compared with other similar products, its advantages are quite significant.
The preparation process of this product is unique, and the centrifugal drying method has greatly improved its purity. In many products in the past, impurities often affect its performance, and this product uses this process to effectively remove impurities, and the purity is far higher than that of similar products.
Furthermore, this product performs well in stability. The combination of sodium, hydrogen and difluoride is carefully prepared to achieve a stable structure. Many similar products are prone to changes during storage and use due to improper ingredient ratio or poor preparation process, and the stability is worrying. This product is not disturbed by this and can maintain good performance for a long time.
In addition, its application range is wide. In many fields, such as chemical synthesis, material preparation, etc., it can play a key role. Other similar products may have limited performance and narrow application range. With its excellent performance, this product can meet a variety of complex needs and provide strong support for the development of related industries.
In terms of reactivity, this product also has advantages. When participating in various chemical reactions, it can show suitable reactivity, neither too active to cause the reaction to be difficult to control, nor too slow to affect the efficiency. Many congeneric products often have poor reactivity, resulting in poor reaction effect. This product effectively avoids this problem and creates good conditions for the smooth progress of chemical reactions.