TYUT-12 Powder Metal Organic Frameworks (MOFs) from China Suppliers - High-Performance Adsorption Factory
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| Technical Specifications | |
|---|---|
| Product Name | TYUT-12 |
| Particle size | 30-50um |
| Specific surface area | ≥355㎡/g |
| Pore size | 0.59nm |
TYUT-12 is a MOF with a pillar-layered structure of Ni(BTC)(DMF)2. This MOF exhibits exceptional adsorption selectivity towards gases such as C3H8, C3H6, C2H6, C2H2, and CO2 over C2H4, due to its precise design of pore geometry and the regulation of functional groups. Notably, the selectivity ratio for C2H6 over C2H4 reaches as high as 4.56.
TYUT-12 is prominent not only in its high adsorption selectivity for specific gases but also in its potential to separate C2H4 from complex mixtures. The results of breakthrough experiments indicated that TYUT-12 can directly extract C2H4 with a purity of over 99.95% from light hydrocarbon mixtures containing binary, ternary, quaternary, and hexene components. Its innovative design and proven performance make it a promising candidate for future applications in gas separation technologies, introducing a novel, efficient, and eco-friendly approach to olefin separation within the petrochemical sector.
Selectivity Ratio
Reaches up to 4.56 for C2H6 over C2H4.
Purity Level
Directly extracts C2H4 with over 99.95% purity.
Eco-Friendly
Provides a green approach to olefin separation.
Frequently Asked Questions
What is the structure of TYUT-12?
TYUT-12 is a metal-organic framework (MOF) featuring a pillar-layered structure constructed from Ni(BTC)(DMF)2.
Which gases does TYUT-12 selectively adsorb?
It exhibits exceptional adsorption selectivity for C3H8, C3H6, C2H6, C2H2, and CO2 over C2H4.
What is the selectivity ratio of C2H6 over C2H4?
The selectivity ratio for C2H6 over C2H4 reaches as high as 4.56.
What purity of ethylene (C2H4) can TYUT-12 achieve?
TYUT-12 can directly extract C2H4 with a high purity of over 99.95% from complex light hydrocarbon mixtures.
What are the physical specifications of TYUT-12?
TYUT-12 has a particle size of 30-50um, a specific surface area of ≥355㎡/g, and a pore size of 0.59nm.

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