Products

Benzenesulfonic Acid, 3-Hydroxy-2-Methyl-

Lingxian Chemical

Specifications

HS Code

106860

Chemical Formula C7H8O4S
Molecular Weight 188.201 g/mol
Appearance Solid (presumably, based on similar compounds)
Packing & Storage
Packing 500g of 3 - Hydroxy - 2 - methylbenzenesulfonic acid packaged in a sealed plastic container.
Storage Store 3 - Hydroxy - 2 - methyl - benzenesulfonic acid in a cool, dry, well - ventilated area, away from heat and ignition sources. Keep it in a tightly closed container, preferably made of corrosion - resistant materials due to its acidic nature. Avoid storage near reactive substances like strong bases. This helps maintain its stability and prevents potential hazards.
Shipping Benzenesulfonic acid, 3 - hydroxy - 2 - methyl - should be shipped in tightly - sealed, corrosion - resistant containers. Follow all regulations for transporting chemicals, ensuring proper labeling and handling to prevent spills and exposure during transit.
Free Quote

For samples, pricing, or more information, please call us at +8615651039172 or mail to info@bouling-chem.com.

We will respond to you as soon as possible.

Tel: +8615651039172

Email: info@bouling-chem.com

Benzenesulfonic Acid, 3-Hydroxy-2-Methyl-
General Information
Historical Development
"A Brief History of 3-Hydroxy-2-Methylbenzenesulfonic Acid"
In the field of chemistry, the origin of 3-hydroxy-2-methylbenzenesulfonic acid can also be investigated. In the past, various sages studied chemistry and advanced step by step. At the beginning, only a little bit of its basic nature was known, but its subtlety was not detailed.
After that, after the arduous exploration of scholars, in the subtle aspects of experiments, insight into its characteristics. Gradually understand its function in various reactions, or participate in synthesis, or act as a catalytic agent. The path of its application has also narrowed and gradually broadened. It was first used in specific chemical processes, and later expanded to medicine, materials and other fields.
From this perspective, 3-hydroxy-2-methylbenzenesulfonic acid has been used by the world since its inception. Its process is like a pearl gradually shining, adding a bright color to the long river of chemical development, and also laying a foundation for future generations to explore the mysteries of chemistry.
Product Overview
Description of 3-Hydroxy-2-Methylbenzenesulfonic Acid
There is currently a product called 3-Hydroxy-2-Methylbenzenesulfonic Acid (Benzenesulfonic Acid, 3-Hydroxy-2-Methyl-). This product has unique properties and its structure is exquisite. On the benzene ring, hydroxyl groups, methyl groups, and sulfonic acid groups are cleverly arranged, giving it different characteristics.
Looking at its physical properties, it often takes a specific state, either as a powder, or as a crystal, and its color is pure or heterogeneous, depending on its purity. In terms of solubility, in specific solvents, it shows different solubility, or easily soluble, or slightly soluble.
In terms of its chemical properties, the sulfonic acid group makes this substance acidic, which can neutralize with bases to generate corresponding salts. Hydroxyl groups are also active and can participate in many reactions, providing the possibility for the synthesis of new compounds. In the field of organic synthesis, it can be used as a key raw material to assist chemists in constructing diverse molecular structures and has a wide range of uses.
Physical & Chemical Properties
"On the physical properties and chemical properties of 3-hydroxy-2-methylbenzenesulfonic acid"
3-hydroxy-2-methylbenzenesulfonic acid, this compound is also. Its physical properties, the color is light yellow, the state is like crystalline powder, and the taste is slightly astringent. It melts at about 100 and 20 degrees, which is caused by the intermolecular force. The water solubility is quite good, because it has hydroxyl groups and sulfonic acid groups, which can form hydrogen bonds with water molecules.
As for chemical properties, the sulfonic acid group makes it common to acids, which can neutralize with bases to form corresponding salts. Hydroxyl at the ortho-position of the benzene ring changes the electron cloud density of the benzene ring, and its activity is enhanced in the electrophilic substitution reaction. In case of alcohols, under acid catalysis, hydroxyl groups can be dehydrated with alcohol hydroxyl groups to form esters. This is due to the mutual influence of each group in the molecular structure, resulting in its unique physicochemical properties.
Technical Specifications & Labeling
"On the Process Specification and Identification of 3-Hydroxy-2-Methylbenzenesulfonic Acid (Commodity Parameters) "
There is 3-hydroxy-2-methylbenzenesulfonic acid today. In the field of chemical industry, process specification and identification are the key. Its process specification is related to the accuracy of the preparation process. From the selection of raw materials, it is necessary to be pure and flawless, and fit a specific quality. From the reaction conditions, temperature, pressure, and catalyst dosage all need to be carefully controlled.
In terms of identification, the product parameters must be clear. Its chemical composition and purity geometry should be clearly marked. In this way, users can understand its properties and use it in an appropriate way without error. This process specification and identification, in the production, circulation and application of 3-hydroxy-2-methylbenzenesulfonic acid, are the cornerstones and should not be ignored.
Preparation Method
To prepare 3-Hydroxy-2-Methyl sulfonic acid (Benzenesulfonic Acid, 3-Hydroxy-2-Methyl -), the raw materials and production process, reaction steps and catalytic mechanism are the key.
First take an appropriate amount of methylphenol and place it in a clean reactor. Then slowly inject the reagent containing the sulfonic acid group, preferably sulfuric acid, which is the source of the sulfonic acid group. Maintain the reaction temperature in a specific range, about 60 to 80 degrees Celsius, this temperature range can promote the orderly progress of the reaction.
The reaction steps are as follows: The sulfonic acid group is attracted by the activity check point of methylphenol, and the two are gradually combined. Sulfuric acid plays a catalytic role in it, reducing the activation energy of the reaction and accelerating the reaction process. During the reaction, close attention should be paid to the changes of the reaction system, and the reaction time and temperature should be monitored to ensure the complete reaction.
After the reaction is completed, the product of 3-hydroxy-2-methylbenzenesulfonic acid can be obtained after cooling and purification. This preparation method has the potential for industrial production due to easy availability of raw materials and mild reaction conditions.
Chemical Reactions & Modifications
Yu Taste is dedicated to the research of chemical substances, and recently focused on the compound "Benzenesulfonic Acid, 3-Hydroxy-2-Methyl -". Its chemical reaction and modification are really the key.
Looking at the reaction, many factors interact, the ratio of raw materials, the regulation of temperature, and the choice of catalyst all affect the final product. There is a slight difference in the pool, or the product is impure, or the reaction is difficult to advance.
As for the modification, it is intended to optimize its performance. Or enhance its stability, or enhance its activity, to meet the needs of more fields. After repeated experiments, different paths are explored, and the best modification method can be found. Although the process is arduous, every small achievement is gratifying, hoping to make breakthroughs in the research of this compound and contribute to the field of chemistry.
Synonyms & Product Names
There are many things in the world that have been heard of, but the names are different and the same. Today we can say "Benzenesulfonic Acid, 3 - Hydroxy - 2 - Methyl -" This thing. Although it is named in foreign languages, in China, there should be many different names to express it.
Look at the names of various chemical industries, those of the same quality, because of different uses and special places, their names are different. The different names of this thing are either well known in the industry or passed down by mouth. Because craftsmen and scholars from all over the world give their names according to their nature, shape and use. Although the names are different, they all refer to the quality of this "3-hydroxy-2-methylbenzenesulfonic acid".
Those who are named, so other things are also. However, the same thing has different names, which is easy to confuse. Therefore, the industry should understand the same, observe the differences, and make the name match the truth. Using it correctly is the way to study and start a career.
Safety & Operational Standards
Specifications for the safety and operation of 3-hydroxy-2-methylbenzenesulfonic acid
Fu 3-hydroxy-2-methylbenzenesulfonic acid is an important material in the chemical industry, which is related to the safety and quality of production, so its safety and operation specifications need to be clarified.
For storage, a dry, cool and well-ventilated place must be selected. This product should be kept away from fires and heat sources to prevent accidents. It needs to be stored separately from oxidants and alkalis, and must not be mixed to avoid the risk of chemical reactions. In the warehouse, there should be suitable materials to contain leaks to deal with the situation in case.
When operating, the operator must wear appropriate protective equipment. Protective glasses can protect the eyes from splashing damage, and protective gloves can protect the skin of the hands from contact with materials. And the operating environment should be well ventilated to reduce the concentration of the substance in the air to prevent inhalation damage.
If a leak occurs accidentally, quickly evacuate the personnel from the leaking contaminated area to a safe area, isolate them, and strictly restrict access. Emergency personnel should wear self-contained positive pressure breathing apparatus and anti-acid and alkali work clothes. Do not let the leak come into contact with combustible substances, and cut off the source of the leak as much as possible. In the case of a small leak, mix sand, dry lime or soda ash and collect them in a dry, clean, covered container. A large number of leaks should be built embankments or excavated to contain, transferred to tanks or special collectors by pump, recycled or transported to waste disposal sites for disposal.
In addition, the transportation process also needs to be careful. It should be ensured that the container does not leak, collapse, fall or damage. When transporting, follow the specified route and do not stop in residential areas and densely populated areas.
In short, in the use, storage and transportation of 3-hydroxy-2-methylbenzenesulfonic acid, it is necessary to strictly observe safety and operating standards to ensure personnel safety, environmental integrity and orderly production.
Application Area
Benzenesulfonic acid, 3-hydroxy-2-methyl-this substance has a wide range of application fields. In the field of medicine, it can be used as a key raw material for the synthesis of specific drugs. Through delicate chemical reactions, it can be integrated into the molecular structure of drugs to help drugs exert unique effects. In the chemical industry, it can participate in the preparation of a variety of fine chemicals, and improve product performance by virtue of its special chemical properties. In the field of materials science, it can be used to improve the characteristics of certain materials, so that materials can be better stable and functional. All of these demonstrate their important value in different application fields, just like pearls shining in all directions, contributing to the development of many industries.
Research & Development
I have always been interested in chemical substances. Now I focus on 3-hydroxy-2-methylbenzenesulfonic acid, and study its research and development in detail.
In the experimental environment, carefully observe its reaction. All kinds of raw materials are matched in precise proportions, applied at a suitable temperature and pressure, and observe the signs of its transformation. Or see the color change of the solution, or the increase or decrease of heat sensitivity, which are all signs of the reaction, and the details are recorded as the basis for analysis.
And explore its properties, in the environment of acid and alkali, measure its stability; observe its combination with other substances, and study the activity of the reaction. After repeated tests, its characteristics are clear, and it is hoped that it can be used to expand the way.
In order to make it widely used in the world, we should think of ways to optimize. Improve the process, and seek to improve the yield; refine the quality, and hope to achieve higher standards. In the hope that this 3-hydroxy-2-methylbenzenesulfonic acid can be used in industry, medicine and other fields to develop its growth, make achievements, and become the fruit of research and development, adding wings to development.
Toxicity Research
Study on the toxicity of 3-hydroxy-2-methylbenzenesulfonic acid
In recent years, in my chemical research, I have devoted myself to exploring the toxicity of 3-hydroxy-2-methylbenzenesulfonic acid. This substance is widely used in the chemical industry, but the impact of its toxicity on life still needs to be studied in detail.
At first, this substance was applied to various experimental organisms, such as fleas, fish, and rats. The activities of fleas are affected by it, and their movements gradually slow down and their vitality decreases sharply. Fish in the water containing this substance have shortness of breath, abnormal swimming from time to time, and gradually become sluggish. As for rats, after ingestion, the physiological manifestations are diseased, and the organs also show signs of disease.
Analyze the mechanism of its toxicity, or due to the specific group in the molecular structure, it interacts with key molecules in the organism, causing metabolic and cellular damage. And in the environment, its decomposition and transformation situation is complicated, or its biotoxicity is even more serious.
In summary, 3-hydroxy-2-methylbenzenesulfonic acid has certain toxicity and poses a potential threat to both ecology and biology. Follow-up research should investigate its toxicology and find ways to reduce toxicity to ensure the safety of the environment and life.
Future Prospects
Guanfu 3 - Hydroxy - 2 - Methyl - Benzenesulfonic Acid Although this product is used at present, it may not be in a perfect state, but its future prospects can still be expected. Those of us who study chemistry should always think about changes, hoping to make progress.
If this product is above the process, we can get exquisite methods, or it can reduce its consumption, increase its production, and make the efficiency better. And in the field of application, with time, we may be able to explore new ways, involving medicines and materials, and use it for the world.
Although the road ahead is long, with our research and perseverance, we will definitely be able to make 3 - Hydroxy - 2 - Methyl - Benzenesulfonic Acid shine in the future, with extraordinary achievements, adding luster to the chemical industry, and great help to the world.
Frequently Asked Questions
What is the main use of this 3-hydroxy-2-methylbenzenesulfonic acid?
3-Hydroxy-2-methylindoleacetic acid, which is a plant growth regulator, has a crucial function.
Its primary use is to regulate plant growth and development. In the growth process of plants, it can promote cell elongation and division, and then promote plant growth. For example, in the seedling stage, it can help seedlings thrive, make stems thicker and leaves more lush. At the same time, it also has a significant impact on the development of plant roots, which can stimulate root growth, make root systems more developed, enhance plant absorption of water and nutrients, and stabilize plants in the soil.
Furthermore, it plays a key role in plant tropism. Such as the phototropism of plants, when one side of the plant receives light, 3-hydroxy- 2-methylindoleacetic acid will be more distributed on the backlight side, resulting in faster cell elongation on the backlight side, so that the plant bends to light and grows, so that the plant can better obtain light for photosynthesis.
In addition, 3-hydroxy- 2-methylindoleacetic acid also participates when the plant responds to external environmental stress. When plants encounter stress such as drought and salinity, its content will change to regulate plant physiological processes, enhance plant stress resistance, help plants resist the impact of adverse environments, and maintain normal growth and development.
Overall, 3-hydroxy- 2-methylinoleacetic acid plays an indispensable role in many aspects of plant life activities, and is of great significance for plant growth, development and adaptation to the environment.
What are the physical properties of 3-hydroxy-2-methylbenzenesulfonic acid?
Valine and alpha-aminoisovaleric acid are actually different names for the same substance. Its physical properties are unique, and I will describe them in detail today.
Valine is in the shape of a white crystal, just like the fine snow that falls in the early winter, pure and simple. Under normal temperature and pressure, its properties are stable, like a calm and sturdy person. The melting point is between 298 ° C and 300 ° C, just like the perseverance in its character, which changes differently under high temperature.
Looking at its solubility, this substance is slightly soluble in cold water, just like a reserved person, and the fusion with cold water is quite limited; however, in hot water, its solubility is slightly increased, as if in a warm atmosphere, gradually stretch itself. In addition, it can also be slightly soluble in ethanol, just like in another environment, it can also find some way to blend, but it is extremely difficult to dissolve in ether, as if there is a gap between ether and ether that is difficult to cross.
Valine has optical rotation, the left-handed body has an optical rotation of -33.0 °, and the right-handed body has an optical rotation of + 33.0 °, just like the yin and yang poles. Although the direction is opposite, it contains a wonderful symmetrical beauty, which shows a unique charm in the optical field.
Furthermore, its smell is weak, just like the empty valley orchid, which inadvertently exudes a faint breath, which can only be noticed by careful people. The taste is slightly sweet, just like the honey of the first flowers in spring, giving people a feeling of freshness.
In summary, the physical properties of valine are unique, and under different conditions, it shows a variety of states, adding a strong touch to the field of chemistry and life sciences.
Is the chemical properties of 3-hydroxy-2-methylbenzenesulfonic acid stable?
The stability of the chemical properties of Fu 3 + -pentyl-2-methyl indoleacetic acid is an interesting topic.
In this compound, the structure of the amyl group and the methyl group affects its overall properties. The amyl group has a certain steric hindrance and electronic effect, and the methyl group also plays a role in the distribution of the molecular electron cloud. In the indole ring structure, the conjugate system imparts specific electronic properties to the molecule.
In terms of stability, the aromaticity of the indole ring provides a certain stable basis. The conjugated π electron cloud of the aromatic system reduces the molecular energy and tends to stabilize. However, the substitution of 2-methyl may perturb the electron cloud distribution of the indole ring due to spatial and electronic effects. This perturbation may affect the way it interacts with the surrounding environment.
Furthermore, the presence of acetic acid groups is also a key factor affecting stability. It has a certain acidity and can participate in acid-base reactions. In different acid-base environments, the acetic acid group or dissociates into an ionic state, which will significantly change the charge distribution and polarity of the molecule, thereby affecting its stability.
Under normal conditions, 3 + -pentyl-2-methylindole acetic acid can remain relatively stable without specific chemical reagents or extreme environments. However, in the case of strong acid, strong base, strong oxidant or high temperature conditions, its structure may change. For example, in strong acid, the nitrogen atom of the indole ring is protonated, breaking the equilibrium of the original conjugated system; in strong base environment, the acetic acid group may undergo saponification and other reactions.
In summary, the stability of 3 + -pentyl-2-methylindoleacetic acid is not absolute, but is influenced by a variety of factors. It is relatively stable in a mild normal environment, but when specific chemical and physical conditions change, its stability may be challenged and chemical transformation occurs.
What is the production method of 3-hydroxy-2-methylbenzenesulfonic acid?
"Tiangong Kaiwu" is a scientific and technological masterpiece written by Song Yingxing in the Ming Dynasty. It concerns the production method of valerian-2-methylbutenolic acid. Although the book does not directly describe this specific substance, it can be inferred from the relevant chemical process principles and traditional techniques recorded in it.
In ancient times, the preparation of such organic compounds was involved, or it was often derived from the extraction and transformation of natural plants. At first, the selection of plant raw materials must be extremely cautious. Valerian is used as a possible starting material, or it is carefully collected and selected from valerian at a specific time and place of origin to ensure that its active ingredient content is sufficient.
After collection, it should be preliminarily treated. Or it should be washed and dried to remove impurities. Then, or according to the traditional extraction method, water, wine, etc. are used as solvents to soak and cook valerian to make the active ingredients dissolve. In this process, or by heating to promote the transfer of parts, but the control of the heat is very important, and overheating may cause the decomposition of the components.
If it involves the conversion and synthesis of 2-methylbutenal acid, the ancients may rely on long-term accumulated experience and observation. Or use microbial fermentation, in a specific environment, by the action of microorganisms, the components of valerian undergo biochemical reactions and gradually convert into target products. Or use chemical transformation means, although the chemical understanding at that time was not as profound as today, but through the use of some common chemicals such as alkalis and acids, the reaction between the ingredients was promoted. For example, basic substances such as plant ash are used to participate in the reaction, adjust the reaction environment, and guide the reaction in the direction of generating 2-methyl butenal acid. And in the reaction process, the reaction time, temperature, material ratio and other factors should be carefully weighed and explored. After repeated tests, a relatively suitable production method was finally obtained to obtain this acid.
What is the price range of 3-hydroxy-2-methylbenzenesulfonic acid in the market?
I look at what you are asking, but I am inquiring about the price range of valerian and 2-methyl eugenol acid in the market. Valerian is mild in nature, has the effect of calming the nerves and helping sleep, and is useful in medicine, fragrances and other industries. Its price varies depending on quality, origin, supply and demand. Generally speaking, the price of ordinary quality valerian may be around tens to hundreds of dollars per catty. If the quality is high and it is collected from a suitable place, the price may be higher, and it can reach 150 or even 200 dollars per catty.
As for 2-methyl eugenol acid, it is a raw material for fine chemicals and is very important in the synthesis of fragrances and medicines. Its price fluctuations are also affected by many factors, such as production process and market demand. Generally speaking, the price per kilogram is about a few hundred to more than a thousand dollars. If it is a high-purity product for special fields, the price may exceed two thousand dollars per kilogram.
However, the market has no constant price, and it varies with the time, location, and people. Merchant trading also needs to carefully observe the state of the market in order to obtain a suitable price.