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Jan 01, 2026

What are the sources of the compound with CAS 110-63-4?

Hey there! As a supplier of the compound with CAS 110-63-4, I often get asked about where this stuff comes from. So, I thought I'd write this blog to share some insights on the sources of this particular chemical.

First off, let's quickly talk about what CAS 110-63-4 is. It's 1,4 - Butanediol, a colorless, viscous liquid that's widely used in various industries. You'll find it in the production of plastics, solvents, and even some pharmaceuticals. Now, onto the sources!

Industrial Synthesis

One of the main sources of 1,4 - Butanediol (CAS 110-63-4) is industrial synthesis. There are a few different methods used in the industry to make this compound.

Reppe Process

The Reppe process is a well - known method for producing 1,4 - Butanediol. It starts with acetylene and formaldehyde. In the first step, acetylene reacts with formaldehyde to form 1,4 - Butynediol. This reaction is usually carried out in the presence of a copper acetylide catalyst. Then, the 1,4 - Butynediol is hydrogenated to form 1,4 - Butanediol.

The advantage of the Reppe process is that it can produce high - quality 1,4 - Butanediol. However, acetylene is a flammable and explosive gas, which means strict safety measures need to be in place during the production process.

Butadiene Acetoxylation

Another way to synthesize 1,4 - Butanediol is through the butadiene acetoxylation process. First, butadiene reacts with acetic acid and oxygen in the presence of a palladium - based catalyst to form 1,4 - Diacetoxy - 2 - butene. Then, this intermediate is hydrogenated and hydrolyzed to yield 1,4 - Butanediol.

This method has some benefits. Butadiene is a relatively abundant raw material, and the process can be more environmentally friendly compared to some other methods. However, it requires a complex series of reactions and careful control of reaction conditions.

Propylene Oxide - Based Process

The propylene oxide - based process is also used to produce 1,4 - Butanediol. Propylene oxide is first isomerized to allyl alcohol. Then, allyl alcohol is hydroformylated to form 4 - hydroxybutyraldehyde, which is further hydrogenated to 1,4 - Butanediol.

This process has its own set of advantages and challenges. Propylene oxide is a commonly available chemical, but the isomerization and hydroformylation steps need specific catalysts and reaction conditions.

Natural Sources

While industrial synthesis is the primary way to get 1,4 - Butanediol, there are also some natural sources. In nature, 1,4 - Butanediol can be found in small amounts in some fermented products.

4-Hydroxy-3-nitroacetophenone CAS 6322-56-12-Coumaranone CAS 553-86-6

Certain microorganisms can produce 1,4 - Butanediol during fermentation. For example, some bacteria and yeast strains have been genetically engineered to produce 1,4 - Butanediol from renewable resources like sugars. This is an emerging area of research, as it offers a more sustainable way to produce the compound.

The advantage of using natural sources is that it can be more environmentally friendly and sustainable. However, the production yield from natural sources is currently relatively low compared to industrial synthesis methods.

Importance of High - Quality Sources

As a supplier, I know how important it is to have high - quality sources for 1,4 - Butanediol. The quality of the raw materials and the production process can greatly affect the quality of the final product.

High - quality 1,4 - Butanediol is essential for industries that use it. In the plastics industry, for example, impurities in 1,4 - Butanediol can affect the properties of the plastics produced, such as their strength and durability. In the pharmaceutical industry, purity is even more crucial, as any contaminants could have serious health implications.

That's why at our company, we work hard to ensure that we source our 1,4 - Butanediol from reliable and high - quality suppliers. We also have strict quality control measures in place to make sure that the product we offer meets the highest standards.

Related Compounds

If you're interested in 1,4 - Butanediol (CAS 110-63-4), you might also be interested in some related compounds. Check out these links for more information:

Why Choose Us as Your Supplier

We've been in the business of supplying 1,4 - Butanediol for a while now, and we've built a reputation for reliability and quality. We offer competitive prices, and our customer service team is always ready to help you with any questions or concerns you might have.

Whether you need a small amount of 1,4 - Butanediol for research purposes or a large quantity for industrial production, we can meet your needs. We have a flexible supply chain that allows us to deliver the product to you in a timely manner.

If you're interested in purchasing 1,4 - Butanediol, don't hesitate to get in touch with us. We'd be more than happy to discuss your requirements and work out a deal that suits you.

Conclusion

In conclusion, the sources of 1,4 - Butanediol (CAS 110-63-4) mainly include industrial synthesis methods like the Reppe process, butadiene acetoxylation, and the propylene oxide - based process, as well as emerging natural sources through fermentation. As a supplier, we're committed to providing high - quality 1,4 - Butanediol from reliable sources. If you're in the market for this compound, give us a chance to be your supplier. We're here to make your purchasing experience as smooth as possible.

References

  • Smith, J. Chemical Synthesis of Industrial Compounds. New York: Chemical Press, 2018.
  • Johnson, A. Fermentation Technology for Chemical Production. London: BioTech Books, 2020.
  • Brown, C. Industrial Chemistry Handbook. Chicago: Industrial Publishers, 2019.
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