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جزئیات محصول:
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Core feedstock: Castor oil (more than 80% of bio-based PAE is synthesized from this source)
Chemical route: Castor oil → Hydrolysis → Ricinoleic acid → Sebacic acid → 1,10-Decanediamine → Bio-based PAE monomer
Advantages:
Limitations: Poor low-temperature flow (requires bio-based plasticizers such as tri-n-butyl citrate).
Representative monomers:
Performance features:
Technical route: Lignin → vanillin → bio-based aromatic amines → modified PAE.
Innovation value:
Representative research: LigniPoly™ series developed by VTT (Finland), bio-based content 40%.
Technical principle: Captured industrial CO₂ + epoxidized vegetable oils → cyclic carbonates → aminolysis to form PAE.
Environmental value: About 0.3 t CO₂ fixed per ton of resin (LCA carbon footprint can be negative).
Start from the application need: first decide whether curing above 100 °C is required. If yes, prioritize rigid lignin/FDCA systems and then assess color limits—use lignin direct-modification when color is acceptable, or switch to de-colored lignin plus FDCA when low color is required. If curing above 100 °C is not needed, ask whether fast drying (<10 min) is necessary; if so, choose a sugar-based PDI with a nanocellulose-catalyzed system, and if not, select a castor-oil-based flexible system.
International certifications:
The Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, has achieved in-situ polymerization with cellulose nanocrystals: hardness of bio-based PAE increased by ~50% with only ~10% cost increase.
Feiyang has been specializing in the production of raw materials for polyaspartic coatings for 30 years and can provide polyaspartic resins, hardeners and coating formulations.
Feel free to contact us: marketing@feiyang.com.cn
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تماس با شخص: Annie Qing
تلفن: +86 18307556691
فکس: 86-183-07556691