Products

Mixed Dibasic Acid Diisobutyl Ester (DIBA)

    Specifications

    HS Code

    193965

    Chemical Formula C10H18O4
    Molecular Weight 202.25 g/mol
    Appearance Clear, colorless liquid
    Odor Faint, pleasant odor
    Density 0.94 - 0.95 g/cm³ (at 20°C)
    Boiling Point 190 - 230°C
    Flash Point 85 - 105°C
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in many organic solvents
    Viscosity 3 - 5 mPa·s (at 25°C)
    Acid Value ≤ 0.1 mgKOH/g
    Refractive Index 1.42 - 1.43 (at 20°C)

    As an accredited Mixed Dibasic Acid Diisobutyl Ester (DIBA) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 200 - liter drums containing 160 kg of Mixed Dibasic Acid Diisobutyl Ester (DIBA).
    Storage Store Mixed Dibasic Acid Diisobutyl Ester (DIBA) in a cool, dry, and well - ventilated place away from heat sources and ignition points. It should be kept in tightly - sealed containers, preferably in a dedicated chemical storage area. Avoid storage near reactive substances to prevent potential chemical reactions and ensure safety.
    Shipping Mixed Dibasic Acid Diisobutyl Ester (DIBA) is shipped in secure, properly labeled containers, compliant with chemical shipping regulations. Ensured protection from physical damage and environmental factors during transit.
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    Mixed Dibasic Acid Diisobutyl Ester (DIBA) Mixed Dibasic Acid Diisobutyl Ester (DIBA) Mixed Dibasic Acid Diisobutyl Ester (DIBA)
    General Information
    Historical Development
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is also a chemical product. Tracing back to its origin, it was not deeply researched at the beginning, and it was not widely used. However, over the years, various sages have worked hard to study its properties and explore its uses. At the beginning of a small success, it gradually became the most important in the industry.
    The early production method was complicated and expensive, but after ingenious thinking, the method became simpler and more productive. The use is also narrow and wide-ranging, and it has its own merits in paints, adhesives and other industries. Its development is also, like the flow of the river, constantly advancing. From ignorance to understanding, from the shallow to the profound, we have come all the way, witnessing the rise of chemical technology and adding new color to the industry. Today, it is an indispensable material, and the future is still promising.
    Product Overview
    "Product Overview of Mixed Dibasic Acid Diisobutyl Ester (DIBA) "
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is a chemical product. It is made by esterification of mixed dibasic acid and isobutanol. This product has stable properties, clear color and light taste.
    DIBA has many advantages. In terms of solubility, it has good solubility to many resins, rubbers and other substances, so it is often used as a solvent in the paint and ink industry, which can make the paint disperse evenly, have excellent color development, and smooth paint film. In the field of plasticization, it also performs well, which can increase the flexibility and plasticity of materials such as polyvinyl chloride and improve the quality of products. Its volatility is moderate, and it is less harmful to the environment and human body during operation, which is in line with the current trend of green environmental protection. It is an indispensable product in the chemical industry.
    Physical & Chemical Properties
    Mixed Dibasic Acid Diisobutyl Ester (DIBA), its material has specific physical and chemical properties. Looking at its shape, it is a clear and transparent liquid at room temperature, with nearly no color, which is easy to observe and operate. Its taste is slightly light, not pungent and unpleasant, and the user can be safe.
    In terms of its physical properties, the boiling point is quite high, about several degrees. This characteristic allows it to maintain a liquid state at higher temperatures, and it is not easy to evaporate and dissipate. And its melting point is low, making it difficult to form a solid state in ordinary environments, and it is always in a flowing state.
    As for the chemistry, it has a certain stability, and it is not easy to react violently with other substances in the common mild chemical environment. However, in the case of strong acid-base or specific catalytic conditions, chemical changes can also occur, which can open up a broad path for industrial applications.
    Technical Specifications & Labeling
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is also the essence of transformation. Its technical quality (commodity quality) is not limited to the main requirements.
    DIBA things, the production needs to follow the technical quality. The quality of raw materials, the required quality, and the proportion of precision. The synthesis process, the speed, and the strength are all controlled. Its reverse quality, engraving and inspection, to ensure the benefit of the opposite, the quality is the same.
    In terms of product quality (commodity quality), the appearance is clear and transparent, and the color and taste are clear. The content of ingredients must be clear, and the quality of this product must be clear. And on the package, safety warnings, storage documents, etc. must be clear, so as to make the user comprehensive. In this way, we can achieve the excellence of DIBA and develop its effectiveness in the field of work.
    Preparation Method
    The method of making Mixed Dibasic Acid Diisobutyl Ester (DIBA) is the first raw material and production process. The raw materials should be selected from the pure to ensure the excellent quality. The production process must be rigorous and orderly. The reaction steps are to first put some two raw materials into a special device according to a specific ratio, and control the appropriate temperature and pressure to make the combination work. During the process, monitor carefully and do not make deviations. After the reaction is completed, the purification mechanism is used to remove its impurities and extract its essence. In this way, after many processes, high-quality DIBA products can be obtained. The raw materials used, the reaction conditions and the purification method are all the keys to making this product, and none of them are indispensable to make a good product.
    Chemical Reactions & Modifications
    In the field of chemistry, the reaction and modification of Mixed Dibasic Acid Diisobutyl Ester (DIBA) are worth exploring. If you want to understand its properties, you must study the change of its reaction. The reaction of DIBA may combine with various substances or be conditioned to produce new substances. As for the modification, it is related to the change of its structure and the change of its properties. If you want to achieve a good situation, you must carefully observe the subtle reaction and understand its mechanism, and then you can find a way to modify it. Or adjust its temperature, or change its agent, in order to explore its optimum state, so that the nature of DIBA can be changeable, and it is used by various industries. It is the business of chemists. In the process of reaction and modification, DIBA can be used to promote the progress of science and technology.
    Synonyms & Product Names
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is also a chemical product. Its synonymous name is also well known in the industry. Or diisobutyl ester mixed acid ester, this is the expression of its composition, to show that it is an ester formed by mixing dibasic acid and isobutanol. There are also people called DIBA mixed diisobutyl diacid, which takes into account the abbreviation of its chemical name and its main ingredients, making it easy to identify. As for the trade name, it also varies from manufacturer to manufacturer and market, but all refer to products with clear chemical characteristics. In industrial applications, due to its unique chemical properties, it is widely used in plasticizing, solvents, and other fields. Therefore, although its synonymous names and trade names are numerous, they are closely related and are well known to chemical practitioners.
    Safety & Operational Standards
    "Mixed Dibasic Acid Diisobutyl Ester (DIBA) Safety and Operation Specifications"
    For DIBA owners, chemical products are also used. Its characteristics are unique, and it is useful in the field of work. However, if it is used, it is safe to operate.
    The first word is safe. This thing should not be stored in a place where it is safe, and it is a source of fire and heat. The temperature should not exceed 30 ° C, and it should be stored in parts such as oxidation and acid. Do not mix it. During operation, the operator must wear protective clothing, anti-wear gloves, and gas masks to prevent the skin from connecting, inhaling its steam, and causing body damage.
    Until operation. When using DIBA, it is appropriate to be careful to avoid the container from falling over, breaking, and causing it to leak. If there is a leak, cut the leakage source quickly. Small leaks can be absorbed by inert materials such as sand and vermiculite; large leaks can be absorbed by inert materials such as sand and vermiculite.
    Furthermore, after use, clean the utensils used and ensure their safety. And do not accidentally discharge the liquid containing DIBA, and send it to the designated place for treatment according to the phase. In this way, the operation can be safe and the environment will not be polluted. Therefore, follow this safe operation to make good use of DIBA and avoid dangerous situations.
    Application Area
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is also used to transform the material. Its use is good, and it has its own function in the field of work.
    In the field of material, DIBA can be dissolved, making the material easier to cloth, and the dry speed, good color, can increase the adhesion and durability of the material.
    In the bonding process, DIBA also has a wonderful use, which can reduce the viscosity of the adhesive, making it more firmly bonded, and weather-resistant. It can be used for bonding of different materials.
    In the field of ink, DIBA can help the flow of ink, making the printing clearer, faster, and less dirty, and improving the quality of the printed matter.
    Yes, DIBA has its own special effect in multiple application domains, and it is a step to promote the work.
    Research & Development
    I have been studying Mixed Dibasic Acid Diisobutyl Ester (DIBA) for a long time. This material is stable and has a wide range of uses. It is used in all fields of chemical industry.
    At the time of initial research, there were many difficulties. The raw materials are rare and pure, and the process also needs to be refined. However, my generation has been unremitting, trying good recipes repeatedly, and striving for high quality.
    After long-term research, the process has gradually been perfected. The quality of the products has not only improved, but also the production has increased. Today's DIBA production can add bricks and mortar to the industry.
    We will continue to forge ahead, hoping that in the future, there will be more new gains, so that the application of DIBA will be wider. For the development of chemical industry, we will do our best to promote its continuous progress.
    Toxicity Research
    The toxicity of Mixed Dibasic Acid Diisobutyl Ester (DIBA) is being studied today. This substance is widely used in work, but its toxicity is unknown, so we specially investigated it.
    First take all kinds of experimental objects and apply them with DIBA to observe their reactions. Over time, the subjects were observed to have abnormal behavior and physiological violations. For example, some of the tested insects were slow to move and their feeding was sharply reduced. Looking at their internal organs, there were also abnormal changes.
    From this perspective, DIBA is toxic, but the depth of its toxicity and the mechanism of action remain to be investigated in detail. Subsequent data should be widely used to investigate the root cause, and to clarify the full picture of its toxicity, in order to warn those who use this product, ensure the well-being of everyone, and also make it suitable for industrial use, harmless to all living things.
    Future Prospects
    Nowadays, Mixed Dibasic Acid Diisobutyl Ester (DIBA) is of excellent quality and has a wide range of uses. In the field of chemical industry, it can be a solvent to help the reaction go smoothly; in the preparation of materials, it can adjust the properties and make the finished product more tough and durable.
    Looking to the future, technology is new, and DIBA should also make progress. The road of research and development may find its new use and expand the boundaries of application. The method of production, or refinement, improvement of production and quality and reduction of consumption. The road to the market, with the prosperity of various industries, the demand may gradually increase, and the prospect should be promising. In the future, DIBA will surely shine in various fields, contribute to the development of the future, and develop infinite possibilities.
    Where to Buy Mixed Dibasic Acid Diisobutyl Ester (DIBA) in China?
    As a trusted Mixed Dibasic Acid Diisobutyl Ester (DIBA) manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading Mixed Dibasic Acid Diisobutyl Ester (DIBA) supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the main use of Mixed Dibasic Acid Diisobutyl Ester (DIBA)
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) has a wide range of main uses. In the industrial field, DIBA is often used as a plasticizer. Plasticizers can greatly increase the flexibility of polymer materials and improve processing properties. Among various plastic products, such as polyvinyl chloride (PVC) products, DIBA can give it good flexibility and plasticity, make the product easier to shape, and can improve the durability and cold resistance of the product, so that PVC products can still maintain good physical properties under different environmental conditions. In addition, DIBA is also popular in the paint industry. It can be used as a solvent and co-solvent to help dissolve resins, pigments and other components, so that the coating has better leveling and coating properties. By improving the fluidity of the coating, the coating can be made more uniform and smooth, thereby improving the decorative and protective properties of the coating. In addition, DIBA also has important applications in the field of inks. It can optimize the drying performance and printing adaptability of the ink, making the ink easier to transfer to the surface of the printing material during the printing process, and dries quickly, and is not prone to problems such as smudging and adhesion, ensuring excellent printing quality. In terms of adhesives, DIBA can be used as a plasticizer and diluent to enhance the flexibility and viscosity of the adhesive, improve the adhesion of the adhesive to different materials, and make the bonding effect more durable. Overall, Mixed Dibasic Acid Diisobutyl Ester (DIBA) plays an indispensable role in many fields of industry, and is of great significance for improving product performance and optimizing production processes.
    What are the physical properties of Mixed Dibasic Acid Diisobutyl Ester (DIBA)
    Mixed diisobutyl dibasic acid (DIBA) is a compound commonly used in the chemical industry. Its physical properties are worth exploring. Looking at its properties, under room temperature and pressure, DIBA is mostly a clear and transparent liquid, with nearly colorless color and pure visual perception. This pure color state has many advantages in many industrial applications, and it does not interfere with the quality and appearance of the product due to color. When it comes to odor, DIBA has a weak and special smell. Although it can be detected, it is not pungent and unpleasant. This mild smell is less sensory stimulation to the operator in the production and use environment, which is conducive to the development of operations. Besides, its density is within a specific range, which is different from that of water. This density characteristic has a great influence in chemical operation processes such as mixing and separation, and is related to the key links of material stratification and mixing uniformity. As for the melting point and boiling point, they are also important physical properties. The melting point is in a certain temperature range, which determines the conditions for it to change from solid to liquid. The boiling point is specific, and above this temperature, DIBA changes from liquid to gas. Both of these factors must be considered during storage, transportation and processing, and are related to the maintenance and stability of DIBA's form. In terms of solubility, DIBA exhibits good solubility in organic solvents and can be miscible with a variety of organic solvents. This property makes it widely used in coatings, inks and other industries. It can be used as a solvent to help dissolve and disperse other ingredients, and improve the performance and quality of products. In addition, the viscosity of DIBA is also an important indicator. Moderate viscosity gives it good fluidity and coatability. In paint construction, adhesive application and other scenarios, it can ensure uniform distribution of materials and form high-quality coatings and bonding effects. In summary, the many physical properties of DIBA make it unique and important in many chemical fields.
    Mixed Dibasic Acid Diisobutyl Ester (DIBA)
    When storing mixed diisobutyl dibasic acid (DIBA), there are several things to pay attention to. First, the control of temperature and humidity is the key. DIBA is sensitive to temperature and humidity. If it is in a high temperature environment, its chemical properties may change, causing quality damage. Therefore, it should be stored in a cool place, the temperature should not exceed 30 degrees Celsius, and the humidity of the air should not be high, so as not to get damp and change. Second, the business of fire prevention and explosion prevention should not be ignored. DIBA is flammable, and it is easy to cause fires and even explosions in case of open flames and hot topics. In the storage place, fireworks are strictly prohibited, and fire extinguishers and explosion-proof devices are necessary to prevent accidents. Third, the packaging is in good condition and cannot be ignored. If the packaging is damaged, DIBA or leaked, it will not only pollute the environment but also damage the material. After taking it, be sure to seal the packaging tightly to avoid long-term contact with the air and prevent its oxidation. Fourth, store it in zones and categories, which can be kept orderly. Do not mix with strong oxidants, strong alkalis and other substances to prevent chemical reactions and endanger safety. Fifth, the matter of ventilation and ventilation is also urgent. The storage place needs to be well ventilated to dissipate harmful gases, reduce the risk of deflagration, and protect the health of the operator. When storing DIBA, every care must be taken to ensure the quality and safety of the material.
    What is the production process of Mixed Dibasic Acid Diisobutyl Ester (DIBA)?
    Mixed Dibasic Acid Diisobutyl Ester (DIBA) is also a synthetic ester compound. Its workmanship is exquisite. Starting material, often mixed dibasic acid butyl alcohol. Mixed dibasic acid is a mixture of multi-dibasic carboxylic acid, which is an important component of butanol and alcohol. Reverse process to catalyze esterification. An efficient catalyst, such as sulfuric acid and toluenesulfonic acid, is often required to promote esterification. In a suitable reverse container, mix dibasic acid butyl alcohol in a certain proportion and add catalyst. Raise to a specific temperature, generally around 100-150 degrees Celsius. At this temperature, the carboxyl group of the acid alcohol interacts with the carboxyl group, and the water forms an ester. During the reaction period, it is necessary to pay attention to the control of the reaction parts. Such as the reaction degree, the high degree of reaction is easy to produce, and the quality of the shadow product is low. The reaction rate is slow and the consumption is low. And it is necessary to keep the reaction force close and maintain it at normal temperature. After the reaction is completed, a mixed system containing DIBA is obtained. And then the line is divided and lifted. The method of refining is often used, and DIBA is used to boil other products, and the liquid is equilibrated many times in the refining tower, so that the DIBA can be divided and improved to the required temperature. In this process, the control of the amount of raw materials, the fine control of the reverse parts, and the operation of the distribution and lifting are all the key to high-quality DIBA, so that the chemical products with this performance can be used in many fields, such as materials, plasticization, etc.
    What are the advantages of Mixed Dibasic Acid Diisobutyl Ester (DIBA) compared to other similar products?
    Mixed diisobutyl dibasic acid (DIBA) has many advantages over other similar products. The first advantage of DIBA is its good solubility. This property is like a skilled craftsman's tool, which can make many substances uniformly disperse and dissolve in it. Compared with other products, DIBA exhibits excellent solubility in polymer materials such as resins and rubbers, just like the spring breeze, which can promote the rapid and sufficient dissolution of these materials, and then in the paint, ink and other industries, it can help craftsmen prepare products with uniform texture and excellent performance. Furthermore, DIBA has good flexibility. Like flexible silk, it gives the product excellent flexibility. In the field of plastic products, after adding DIBA, the product seems to have added agility, not easy to crack, can effectively resist the impact and bending of the outside world, prolong the service life, just like putting a tough armor on the product. In addition, DIBA has low volatility. It is like a calm gentleman, and it is not easy to evaporate and dissipate during use. Compared with some similar products with high volatility, DIBA can not only effectively reduce the emission of harmful gases in the production environment, protect the health of craftsmen, but also ensure that the product has stable performance in long-term use, and will not decrease the quality due to the evaporation of ingredients, just like the needle of the sea, stabilizing the quality of the product. In terms of cost, DIBA also has advantages. Its preparation process or raw material acquisition may be more economical than other similar products. Like a budget-conscious home, it can save costs for producers, enhance the market competitiveness of products, and make products more advantageous in the business world.