Sodium Benzene Sulfonate
Aromatic sulfonic acid and its salts Sulfamic Acid Guanidine

Sodium Benzene Sulfonate

Lingxian Chemical

Specifications

HS Code

278755

Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance white crystalline powder
Solubility In Water highly soluble
Ph In Aqueous Solution around 7 - 9 (slightly alkaline)
Odor odorless
Density 1.44 g/cm³
Melting Point 300 °C
Hygroscopicity hygroscopic
Surface Active Property acts as a surfactant
Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance White to yellowish powder
Solubility In Water Highly soluble
Odor Odorless
Ph In Aqueous Solution Around 7 - 9
Melting Point 450 - 500 °C (decomposes)
Density Approx. 1.07 g/cm³
Surface Active Property Good surfactant
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance white crystalline powder
Odor odorless
Solubility In Water highly soluble
Ph Of Aqueous Solution around 7 - 8 (neutral to slightly basic)
Melting Point 300 °C (decomposes)
Density 1.44 g/cm³
Hygroscopicity hygroscopic
Surface Activity acts as a surfactant
Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph In Aqueous Solution Around 7 - 8 (neutral to slightly alkaline)
Density 1.44 g/cm³
Melting Point 450 - 500 °C (decomposes)
Surface Active Property Good surfactant
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution Neutral to slightly alkaline
Melting Point >300 °C
Boiling Point Decomposes
Density 1.44 g/cm³
Surface Active Property Good surfactant
Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution Neutral to slightly alkaline
Density 1.44 g/cm³
Melting Point 300 °C
Stability Stable under normal conditions
Hygroscopicity Hygroscopic
Chemical Formula C6H5SO3Na
Appearance White powder or crystals
Odor Odorless
Solubility In Water Highly soluble
Ph In Aqueous Solution Around 7 - 9
Melting Point 300 °C (decomposes)
Density 1.48 g/cm³
Hygroscopicity Hygroscopic
Surface Active Property Good surfactant property
Stability Stable under normal conditions
Irritancy May cause mild skin and eye irritation
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution Neutral to slightly alkaline
Density Approx. 1.44 g/cm³
Melting Point 300 °C (decomposes)
Surface Active Property Good surfactant
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance White solid
Solubility In Water Highly soluble
Odor Odorless
Ph Of Aqueous Solution Around 7 - 8 (neutral to slightly alkaline)
Melting Point 450 - 455 °C
Density 1.48 g/cm³
Hygroscopicity Hygroscopic
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance White crystalline powder
Solubility In Water Highly soluble
Ph Of Aqueous Solution Neutral to slightly alkaline
Odor Odorless
Melting Point 450 - 500 °C (decomposes)
Density 1.44 g/cm³
Stability Stable under normal conditions
Hygroscopicity Hygroscopic
Chemical Formula C6H5SO3Na
Molecular Weight 188.18 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution 7 - 9
Melting Point 300 °C (decomposes)
Density 1.48 g/cm³
Hygroscopicity Hygroscopic
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 180.17 g/mol
Appearance White solid
Solubility In Water Highly soluble
Odor Odorless
Ph In Aqueous Solution Around 7 - 9
Melting Point 300 °C (decomposes)
Surface Active Property Good surfactant
Stability Stable under normal conditions
Hygroscopicity Hygroscopic
Chemical Formula C6H5SO3Na
Appearance White powder or granular solid
Odor Odorless
Solubility In Water Highly soluble
Ph In Aqueous Solution Around 7 - 9 (neutral to slightly alkaline)
Melting Point 450 - 500 °C (decomposes)
Density Approx. 1.44 g/cm³
Surface Active Property Good surfactant
Stability Stable under normal conditions
Biodegradability Generally biodegradable
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance white crystalline powder
Odor odorless
Solubility In Water highly soluble
Ph In Aqueous Solution 7 - 9 (neutral to slightly alkaline)
Melting Point 300 °C (decomposes)
Density 1.44 g/cm³
Surface Active Property good surfactant
Stability stable under normal conditions
Hygroscopicity hygroscopic
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution 7 - 9 (approximate)
Density 1.48 g/cm³
Melting Point 300 °C (decomposes)
Surface Activity Good surfactant properties
Ionic Nature Anionic
Chemical Formula C6H5SO3Na
Molar Mass 188.17 g/mol
Appearance White to off - white powder
Solubility In Water Highly soluble
Odor Odorless
Ph Of Aqueous Solution Around 7 - 9 (neutral to slightly alkaline)
Melting Point >300 °C (decomposes)
Density 1.44 g/cm³
Surface Active Property Good surfactant
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molar Mass 188.18 g/mol
Appearance White powder or crystals
Odor Odorless
Solubility In Water Highly soluble
Ph Of Aqueous Solution Neutral to slightly alkaline
Melting Point 450 - 455 °C
Density 1.44 g/cm³
Surface Activity Good surfactant properties
Stability Stable under normal conditions
Chemical Formula C6H5SO3Na
Molecular Weight 188.17 g/mol
Appearance White crystalline powder
Odor Odorless
Solubility In Water Highly soluble
Ph In Aqueous Solution Around 7 - 9
Melting Point 300 °C (decomposes)
Density 1.48 g/cm³
Hygroscopicity Hygroscopic
Surface Active Property Good surfactant
Packing & Storage
Packing 500 - gram bag packaging for Sodium Benzene Sulfonate chemical.
Storage Sodium benzene sulfonate should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and incompatible substances like strong oxidizers. Store in tightly - sealed containers to prevent moisture absorption, which could affect its quality. Avoid storing in areas prone to flooding or high humidity to maintain its stability.
Shipping Sodium Benzene Sulfonate is shipped in sealed, corrosion - resistant containers. It's transported in accordance with chemical safety regulations, ensuring protection from moisture and contamination during transit to maintain its quality.
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Sodium Benzene Sulfonate Sodium Benzene Sulfonate Sodium Benzene Sulfonate
General Information
Frequently Asked Questions
What are the main uses of Sodium Benzene Sulfonate?
Sodium benzene sulfonate, its main uses are as follows.
In the industrial field, it is often used as a key ingredient in detergents. Because of its excellent surface activity, the cover can effectively reduce the surface tension of water, making it easier for water to penetrate into the stain, promoting oil, dust, etc. from the surface of the object, and then achieving excellent decontamination and cleaning effect. It is widely used in various household and industrial detergents, such as washing powder, detergent, etc., which greatly facilitates people's daily life and cleaning operations in industrial production.
In the textile industry, it also has important functions. It can act as an auxiliary to help dyes adhere evenly to fabrics. In the dyeing process, sodium benzene sulfonate can improve the solubility and dispersion of the dye, prevent the accumulation or precipitation of the dye on the fabric, thus ensuring the uniform dyeing effect, bright color, and greatly improving the quality of textile products.
In the leather industry, it also plays an indispensable role. In the tanning process of leather, sodium benzene sulfonate can assist the leather to absorb the tanning agent, enhance the bonding force between the tanning agent and the leather fiber, making the leather softer, tougher and more elastic. At the same time, it can also play a certain anti-corrosion and deodorant effect on the leather, prolonging the service life of leather products.
In addition, in the paper industry, sodium benzene sulfonate can be used as an important part of the waste paper deinking agent. It can effectively separate ink and paper fibers, enabling waste paper to be recycled, saving papermaking raw materials and conforming to environmental protection concepts, contributing to the sustainable development of the papermaking industry.
In which industries is Sodium Benzene Sulfonate widely used?
Sodium benzene sulfonate is widely used in printing and dyeing, washing, pharmaceuticals and many other industries.
In the printing and dyeing industry, it is often used as an auxiliary agent. It can help the dye to disperse evenly, making the fabric color more uniform. In the dyeing process, it can optimize the affinity between dyes and fibers, improve dyeing fastness, and make the color lasting and bright. In the past, when printing and dyeing, every color was required to be uniform, with the help of sodium benzene sulfonate, this problem was solved, and the dyed fabric was bright and durable.
In the washing industry, it is a key component. With excellent emulsification and dispersion properties, it can peel oil from the surface of the object and disperse in water, so as to achieve the cleaning effect. Daily washing powder, detergent, etc., mostly contain sodium benzenesulfonate, which has strong decontamination power and makes dirt invisible. In the past, washing, oil stains are difficult to remove, but now you get this agent, which is convenient and efficient for washing.
In the pharmaceutical field, sodium benzenesulfonate is also indispensable. Or as an auxiliary material for pharmaceutical preparations, it helps the drug to form and dissolve, and enhances the stability and bioavailability of drugs. When making pharmaceuticals, ensuring the quality and efficacy of drugs is the first priority. Sodium benzenesulfonate makes a great contribution to this, helping the drug to play an accurate role.
Therefore, sodium benzenesulfonate has important value in many industries and has contributed to the development of various industries.
Is Sodium Benzene Sulfonate Harmful to Human Health?
Sodium (Sodium), benzene (Benzene) and sulfonate (Sulfonate), these three are single or combined, and the harm to the human body cannot be ignored.
Sodium, although it is an essential element for the human body, is ingested in excess, and the disaster will occur. It often causes water and sodium retention, blood pressure rises, the heart and blood vessels are overwhelmed, and serious diseases such as hypertension and heart disease follow one after another. In the diet, many processed foods contain a lot of sodium, and if you don't pay attention, it will be more than the body can handle.
Benzene, a highly volatile organic compound, is often found in petrochemicals, paints, and glues. If the human body inhales or comes into contact with benzene, it is extremely harmful. Benzene easily damages the hematopoietic system, causing a sharp decrease in the number of white blood cells and platelets, and the fear of anemia, leukemia and other diseases. Long-term exposure to benzene-containing environment, the immune system is also damaged, and the resistance to disease is greatly reduced.
Sulfonates are widely used and can be seen in detergents and cosmetics. If some sulfonates are of poor quality or have too much residue, they may come into contact with the skin, or cause allergies, irritation, and cause skin itching, redness and swelling. And they are difficult to degrade in the environment, add up in small quantities, or go through the food chain, and eventually endanger human health.
In summary, sodium, benzene and sulfonates, if used improperly or exposed to excessive, are all hidden dangers to human health. In daily life, it is necessary to be cautious, consume and contact reasonably, in order to maintain good health.
What are the chemical properties of Sodium Benzene Sulfonate?
Sodium (Sodium), benzene (Benzene) and sulfonate (Sulfonate) are involved in the chemical properties of their own wonders.
Sodium is an active metal element. Its nature is extremely active, and it reacts violently when exposed to water, such as a flood dragon entering water to make waves, releasing hydrogen and producing sodium hydroxide, and this reaction is accompanied by a large amount of heat release, like a fire cooking oil, very violent. In the air, sodium is also easy to combine with oxygen quickly, and an oxide film is rapidly formed on the surface, just like a layer of protective armor for it, but this film is not enough to make it stable, so it often needs to be stored in kerosene to avoid air and water intrusion.
Benzene is an organic compound with a ring structure and unique properties. It has a certain stability, but it can also react under specific conditions. Although benzene appears to be stable, it actually contains activity. For example, in the presence of catalysts, it can substitution reactions with halogens, like ingenious replacement of atoms in it; in case of strong oxidants, some oxidation reactions can also occur, showing different chemical activities.
Sulfonates are often formed by the reaction of sulfonic acids and bases. They have good solubility in water, and some sulfonates can be used as surfactants. Because one end is hydrophilic and the other end is hydrophilic, it can reduce the surface tension of liquids, making it easier for oil and water to blend. It has important uses in many fields such as washing and emulsification. It is like an expert in reconciling contradictions and making immiscible things coexist harmoniously.
These three have their own characteristics. On the stage of chemistry, according to different conditions and rules, they deduce a variety of chemical changes, forming a wonderful landscape of the chemical world.
What is the production process of Sodium Benzene Sulfonate?
The method of making sodium benzene sulfonate is to take benzene first and put it into a special utensil. It is to add sulfonic acid and sulfonic acid, which is highly corrosive. When operating, be extra cautious and strictly follow the procedures. Mix the two, apply a moderate temperature, and keep stirring to make it fully reacted. Temperature control is the key. If it is too high, it is easy to produce side reactions, and if it is too low, the reaction is slow.
In this process, benzene and sulfonic acid chemically change, and the sulfonic acid group enters the benzene ring to gradually form sodium benzene sulfonate. After the reaction is completed, the product is still mixed with various impurities and needs to be purified. First, neutralize the method and use an appropriate base to make the pH moderate. Then perform the separation technique, or use filtration and distillation to remove its impurities to obtain pure sodium benzene sulfonate.
The whole process has strict requirements for equipment, raw materials and operation. The equipment must be corrosion-resistant, the raw materials must be pure, and the operation must be accurate. In this way, high-quality sodium benzene sulfonate can be prepared to meet the needs of all parties.