Methyl Isobutyl Ketone CAS 108-10-1


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- Appearance:Liquid
- Purity:99.8%
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Name: Methyl Isobutyl Ketone
CAS: 108-10-1
MOQ: 1KG
Directory Guidance on Methyl Isobutyl Ketone
Chemical Structure
Basic Info:
Melting point | -80 °C (lit.) |
Boiling point | 117-118 °C |
density | 0.801 g/mL at 25 °C (lit.) |
vapor density | 3.5 (vs air) |
vapor pressure | 15 mm Hg ( 20 °C) |
refractive index | n20/D 1.395(lit.) |
Product Introduction:
Methyl Isobutyl Ketone (4-Methyl-2-pentanone), chemical formula C6H12O, is a colorless, transparent organic compound with a special ketone odor, also known as methyl isobutyl ketone (MIBK). Its molecular structure contains a ketone group (C=O) and a methyl side chain is connected to the adjacent carbon atom. This structure gives it unique physical and chemical properties. From the perspective of physical parameters, Methyl Isobutyl Ketone has a boiling point of about 116-118℃, a melting point of -84℃, a density of 0.80 g/cm³ (20℃), and a flash point of 23℃.
In industry, Methyl Isobutyl Ketone is mainly prepared by aldol condensation reaction, using acetone and isopropanol as raw materials, and is generated by dehydration condensation under the action of alkaline catalyst. In addition, it can also be synthesized by catalytic reaction of isopropanol and acetone under high temperature and high pressure, and the reaction process involves the generation and transformation of multi-step intermediates.
From a toxicological point of view, Methyl Isobutyl Ketone has a certain irritation to the skin and mucous membranes, and long-term contact may cause central nervous system depression, but its toxicity is lower than that of similar solvents such as cyclohexanone. In terms of environmental behavior, the compound is easily photolyzed in the atmosphere, with a half-life of about several hours to several days, and moderate biodegradability. Attention should be paid to its cumulative risk in soil and water. The International Chemical Safety Card (ICSC) lists it as a flammable liquid, and storage and transportation must be kept away from fire sources and ventilated.
As an important chemical intermediate, the purity of Methyl Isobutyl Ketone directly affects the quality of downstream products. Industrial-grade products are usually required to have a purity of ≥99%, a moisture content of ≤0.1%, and an acid value of ≤0.05 mg KOH/g. In modern production processes, multi-stage separation technology of distillation towers is often used, combined with molecular sieve adsorption to remove trace impurities. Some high-end application areas also require crystallization or membrane separation technology to further improve purity. In recent years, the development of green synthesis routes has become a research hotspot, such as using solid acid catalysts to replace traditional liquid acids to reduce wastewater discharge.
Nature and Specifications:
Item | Specification |
Product Name | Methyl Isobutyl Ketone |
CAS No. | 108-10-1 |
Appearance | Liquid |
Shelf Life | 2 years |
Packing | As your requirements |
Fp | 56 °F |
storage temp. | Store at +5°C to +30°C. |
solubility | water: soluble20g/L, soluble in alcohol, miscible with oils. Soluble in Propylene glycol and Glycerin. |
form | Liquid |
color | APHA: ≤15 |
Specific Gravity | 0.80 |
PH | 7 (20°C) |
Product service:
- Certificate Of Analysis (COA)
- Material Safety Data Sheet (MSDS)
- Route of synthesis (ROS)
- Method of Aanlysis (MOA)
- Nuclear Magnetic Resonance (NMR)
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In the field of solvents, Methyl Isobutyl Ketone is a medium-boiling point solvent with excellent performance, high solubility and low toxicity. It is widely used in coatings, inks, adhesives and other industries. In the coating industry, it can be used as a solvent for various resins such as nitrocellulose, alkyd resins, polyester resins, etc., which can make the coating have good fluidity and film-forming properties, and improve the adhesion and chemical resistance of the coating. In the production of inks, Methyl Isobutyl Ketone can be used to adjust the viscosity and drying speed of the ink, so that the ink has good transferability and printability during the printing process, and can also enhance the wear resistance and water resistance of the ink. In the field of adhesives, it can be used as a solvent for various adhesives such as rubber type and resin type, so that the adhesive has good bonding strength and durability, and is suitable for bonding various materials such as metal, plastic, rubber, etc.
Methyl Isobutyl Ketone plays an essential role as an organic synthesis intermediate. This chemical has found numerous uses across industries like medicine, pesticides and spices. In the synthesis of antibiotics, carbonyl groups can serve as active sites to introduce specific functional groups; when produced as pesticides in pyrethroid pesticide production processes, however, their carbonyl group provides key skeleton of their ring structures for assembly. With the advancement of chiral drug research and development, research into methyl isobutyl ketone derivatives as starting materials has increased considerably over time, including preparation of optically active epoxy intermediates through sharpless epoxidation reaction or high value-added fine chemicals such as g-valerolactone synthesis.
Methyl isobutyl ketone (MIBK) is widely used as a plasticizer or reactive diluent in polymer modification applications, contributing to the curing process for polyurethane and epoxy resins. Its low viscosity and high permeability help improve resin system processing performance while its fiber impregnation promoter promote fiber impregnation while its bubble reduction capability facilitates composite materials preparation. In petroleum industry refining processes methyl isobutyl ketone (DEWaxing/DEAsphalting of refining processes while its selective solubility effectively separates hydrocarbon components of different molecular weights from each other.
On a global scale, most production capacity of methyl isobutyl ketone lies within Asia and North America with China, the US and Germany as key producers. According to industry analysis reports, the global market size in 2022 will reach 250,000 tons and its average annual growth rate should remain between 3.5%-4.2% over the next five years. Demand growth is driven mainly by environmental regulations and replacement demand of highly toxic solvents that remain widely used. Due to rapid industrial development in industries such as coatings and electronics, Asia-Pacific countries account for more than 45% of worldwide solvent consumption; European markets promote innovative application of functional solvents through water-based systems due to stringent VOC emission restrictions.
The core competitiveness of Methyl Isobutyl Ketone is first reflected in its unique balance of physical and chemical properties. Compared with linear ketone solvents such as acetone and butanone, its branched structure significantly reduces surface tension (about 24 mN/m, 25°C), enhances affinity for non-polar substances, and retains the ability to dissolve polar substances. This broad-spectrum solubility makes it irreplaceable in complex formulation systems. For example, in automotive coatings containing multiple resins, it can dissolve acrylic resins and alkyd resins at the same time without phase separation. Its moderate volatilization rate (evaporation rate 0.43, with butyl acetate as 1) can not only ensure the leveling time during construction, but also shorten the coating drying cycle and improve production efficiency.
In terms of chemical stability, Methyl Isobutyl Ketone exhibits better antioxidant and thermal stability than similar products. Experimental data show that its decomposition rate after heating at 150°C for 8 hours is less than 2%, which makes it suitable for high-temperature reaction media or formulation systems that require long-term storage. At the same time, its low hygroscopicity (equilibrium water content of 0.3% at 25°C) can prevent the performance degradation of the solvent system due to moisture absorption, which is particularly important in the synthesis of precision electronic cleaning agents and pharmaceutical intermediates.
From the perspective of environmental performance, although Methyl Isobutyl Ketone belongs to the VOC category, its photochemical ozone generation potential (POCP) is only 60% of toluene, and its biodegradation half-life (about 28 days) is significantly shorter than cyclohexanone (>60 days). In recent years, through process optimization, the heavy metal residues of industrial-grade products have been reduced to ppb level, meeting the EU REACH regulations and FDA-related standards. Some manufacturers have also developed closed-loop recycling systems that can increase the solvent recovery rate in production waste liquid to more than 98%, greatly reducing the environmental load.
In terms of economic benefits, the production cost of Methyl Isobutyl Ketone is more advantageous than that of special solvents. The main raw materials acetone and isopropanol are both bulk chemicals with stable supply and small price fluctuations. Modern continuous production technology enables a single unit to produce more than 50,000 tons of products per year, and the scale effect significantly reduces unit energy consumption (about 1.2 tons of standard coal per ton of product). On the application side, its high solubility can reduce the amount of solvent added (about 30% less than toluene), and the comprehensive use cost is significantly reduced. In addition, the multi-step synthesis reaction in which it participates as an intermediate usually has a high yield (most reactions>85%), which reduces the loss of raw materials in pharmaceutical and fine chemical companies.
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