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Specifications
| Purity: | 98.0% min |
| Moisture: | 0.2% max |
| Furfural: | 0.6% max |
| Acidity: | 0.01 mol/L max |
| Density (20℃): | 1.129–1.135 |
| Refractive Index (n20/D): | 1.485–1.488 |
| Cloud Point: | 8℃ max |
Applications
Furfuryl alcohol is an organic compound widely used as an industrial intermediate and functional chemical. It is primarily derived from furfural, a biomass-based platform chemical, making it a sustainable material for various applications. One of its major uses is in the production of furan resins, which are employed as binders in foundry sand cores and molds due to their excellent thermal stability and mechanical strength. It also serves as a precursor for tetrahydrofurfuryl alcohol and other furan derivatives used in coatings, adhesives, and sealants. In polymer chemistry, furfuryl alcohol acts as a reactive monomer in the synthesis of thermosetting resins with superior chemical and heat resistance. Additionally, it finds application as a solvent, wetting agent, and intermediate in the manufacture of pharmaceuticals, agricultural chemicals, fragrances, and corrosion inhibitors.
Benefits
Furfuryl alcohol offers several benefits that make it valuable in industrial and research contexts. Its renewable origin from agricultural by-products, such as corncobs or sugarcane bagasse, supports sustainable chemical production and reduces reliance on petroleum feedstocks. The compound's high reactivity and ability to polymerize under acidic conditions allow the creation of durable, high-performance materials with excellent mechanical and chemical stability. Moreover, its versatility enables use across diverse industries, from metallurgy and construction to coatings and electronics. Furfuryl alcohol-based resins are particularly valued for their resistance to acids, solvents, and high temperatures, enhancing product lifespan and performance in demanding environments.
Conclusion
Furfuryl alcohol is a versatile and eco-friendly chemical intermediate that bridges sustainability with high industrial performance. Its role in producing advanced furan resins, solvents, and specialty chemicals underscores its importance in foundry, polymer, and fine chemical applications. With its renewable origin, chemical versatility, and exceptional performance characteristics, furfuryl alcohol continues to be a key material for both traditional and emerging green chemistry innovations.

