Chloro 6 Trichloromethyl Pyridine
pyridine pyrrole pyrazine piperidine piperazine

Chloro-6-trichloromethyl-pyridine

    Specifications

    HS Code

    259576

    Name Chloro-6-trichloromethyl-pyridine
    Molecular Formula C6H3Cl4N
    Molar Mass 226.91 g/mol
    Appearance Solid
    Color White to off - white
    Odor Pungent
    Solubility In Water Low solubility
    Solubility In Organic Solvents Soluble in some organic solvents
    Melting Point 64 - 66 °C
    Boiling Point 274 - 276 °C
    Density 1.57 g/cm³
    Stability Stable under normal conditions
    Hazard Class Toxic, harmful to the environment

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    General Information
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    Frequently Asked Questions

    As a leading Chloro-6-trichloromethyl-pyridine supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the main uses of Chloro-6-trichloromethyl-pyridine?
    Chloro-6-trichloromethylpyridine has a wide range of uses. In the field of agriculture, this is an important nitrogen fertilizer synergist. In the past, when farmers applied fertilizer, nitrogen fertilizer was often lost for various reasons, and the fertilizer effect was not fully exerted. With chloro-6-trichloromethylpyridine, it can inhibit the activity of urease and nitrifying bacteria in the soil. In this way, the rate of decomposition and transformation of nitrogen fertilizers in the soil can be regulated, and nitrogen volatilization and leaching are greatly reduced, thereby prolonging the nitrogen fertilizer efficiency, improving nitrogen utilization rate, enabling crops to more effectively absorb nitrogen, thriving, and helping agriculture to harvest.
    It is also a key intermediate in industrial synthesis. In the synthesis of many fine chemicals, it is necessary to use this as the starting material and undergo a series of chemical reactions to obtain various substances with special properties. These substances are widely used in medicine, pesticides, dyes and other industries, providing basic support for the development of industry.
    In the field of scientific research and exploration, chloro-6-trichloromethylpyridine is used as a special chemical reagent to help researchers deeply explore the chemical reaction mechanism, the relationship between material structure and properties, etc. With its unique chemical structure and properties, it opens up new avenues for scientific research and promotes the continuous progress of chemical disciplines. In short, chloro-6-trichloromethylpyridine has important value in agriculture, industry, research and other fields, and has far-reaching impact on human production and life.
    What are the physical and chemical properties of Chloro-6-trichloromethyl-pyridine
    Chloro-6-trichloromethylpyridine has special properties. It is a white to light yellow crystalline powder with a slightly special smell. The melting point is about 94-97 ° C. This temperature is determined, which is related to its physical state transformation, and is of great significance in chemical operations.
    It has good solubility in organic solvents, such as acetone, ethanol, chloroform, etc., but it has little solubility in water. This difference in solubility makes it possible to choose a suitable solvent for separation, purification and reaction system construction.
    In terms of stability, chloro-6-trichloromethylpyridine is relatively stable at room temperature and pressure. In case of hot topic, open flame or strong oxidant, there is also a risk, or cause combustion or even explosion.
    Furthermore, it has certain chemical activity. The chlorine atom and trichloromethyl on the pyridine ring can initiate many chemical reactions, such as nucleophilic substitution, hydrolysis, etc. It is widely used in the field of organic synthesis and is often the key raw material for the preparation of special pesticides and pharmaceutical intermediates. This chemical activity is not only the basis for its application, but also needs to be carefully controlled during operation to achieve the desired effect and ensure safety.
    What is the production process of Chloro-6-trichloromethyl-pyridine?
    Chloro-6-trichloromethylpyridine, its preparation process is very delicate. In the past, the method often started with a specific pyridine compound. In a special reactor, the pyridine raw material is first placed, with precise measurement, accompanied by a suitable solvent. This solvent needs to be in agreement with the reactants and does not disturb.
    Then, the chlorine-containing reagent is slowly introduced, which is a key step. The rate and temperature of introduction need to be strictly controlled. The chlorine reagent and the pyridine molecule come into contact, and then a substitution reaction occurs. The control of temperature is related to the direction and rate of the reaction. It cannot be slightly different. It is usually maintained in a constant range, such as tens of degrees Celsius, depending on the specific situation.
    During the reaction process, use sophisticated monitoring methods to observe the progress of the reaction. When the reaction is nearly completed, apply a separation technique. By distillation, the solvent and unreacted raw materials are separated by the difference in the boiling points of different substances. Later, by extraction, the appropriate extractant is selected to enrich the target product.
    Finally, through the recrystallization process, a high-purity solvent is dissolved into the crude product, and then cooled and crystallized to obtain pure chloro-6-trichloromethylpyridine. This process is interconnected, and it depends on the careful operation and precise grasp of craftsmen to obtain high-quality products.
    Chloro-6-trichloromethyl-pyridine what are the precautions during use
    For chloro-6-trichloromethylpyridine, many things need to be paid attention to when using it. This substance is toxic to a certain extent. When handling it, be sure to wear complete protective equipment, such as masks, gloves and goggles, to prevent it from contacting the skin, inhaling the lungs, and causing damage to the body. In addition, its storage is also exquisite. It should be placed in a cool, dry and well-ventilated place, away from fire and heat sources. It must not be mixed with oxidants, alkalis, etc., to avoid chemical reactions and lead to danger.
    During use, accurate dose control is the key. Excessive application will not only fail to achieve the desired effect, but may also cause pollution to the surrounding environment, or affect the relevant reaction process. And when using it, it is necessary to ensure that the environment is well ventilated, so that the volatile gas can be dissipated in time, and the concentration of harmful substances in the air can be reduced.
    In addition, after use, properly dispose of the remaining drugs and packaging. The remaining drugs should be disposed of harmlessly in accordance with regulations, and the packaging should not be discarded at will. It needs to be recycled or disposed of according to regulations to avoid harm to the environment.
    Furthermore, operators should be familiar with the nature of this substance, the method of use and emergency treatment measures. In the event of accidental leakage or other unexpected situations, they can respond quickly and appropriately to minimize the harm.
    What is the market outlook for Chloro-6-trichloromethyl-pyridine?
    Chloro-6-trichloromethylpyridine has a promising future in the field of agrochemistry.
    Looking at current agricultural affairs, it is the general trend to pursue efficient and environmentally friendly means of improving fertilizer efficiency. Chloro-6-trichloromethylpyridine, as a nitrogen fertilizer synergist, can effectively inhibit the activity of urease and nitrifying bacteria in the soil. In this way, the retention time of nitrogen fertilizer in the soil can be extended, reducing nitrogen loss and volatilization, and improving nitrogen fertilizer utilization. This can not only reduce the cost of fertilization, but also reduce the risk of environmental pollution caused by excessive fertilization, which is in line with the demands of today's green agriculture development.
    At the market level, with the advancement of agricultural scale and modernization, the demand for various high-efficiency agrochemical products is increasing. In order to improve yield and quality, large growers and agricultural enterprises are willing to purchase products such as chloro-6-trichloromethylpyridine that can optimize the fertilization effect. In addition, national policies support green agriculture and ecological agriculture, encourage the promotion of such environmentally friendly agrochemical additives, and open up a broad market space for them.
    However, its marketing activities also have challenges. Some farmers are limited by traditional fertilization habits, lack of awareness of new fertilizer additives, and the acceptance process may be slow. But overall, with the progress of agricultural science and technology and the enhancement of environmental awareness, chloro-6-trichloromethylpyridine is expected to occupy an important place in the future agrochemical market by virtue of its unique effect and contribute greatly to the sustainable development of agriculture.