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Cardanol – an eco-friendly isocyanate blocking agent / Yun mi Kim in COATINGS WORLD, Vol. 24, N° 2 (02/2019)
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Titre : Cardanol – an eco-friendly isocyanate blocking agent : Deblocking performances and methods to optimize deblocking temperature Type de document : texte imprimé Auteurs : Yun mi Kim, Auteur ; Anbu Natesh, Auteur ; Pietro Campaner, Auteur Année de publication : 2019 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Cardanol
Catalyseurs
Isocyanates
Polymères -- Détérioration
Polypropylène glycol
Polyuréthanes
PrépolymèresUn pré-polymère ou prépolymère est un oligomère ou un polymère présentant des groupes réactifs qui lui permettent de participer à une polymérisation ultérieure et d’incorporer ainsi plusieurs unités monomères dans au moins une chaîne de la macromolécule finale.
Les pré-polymères peuvent être di-fonctionnels (c'est le cas des pré-polymères téléchéliques) ou plurifonctionnels. Dans ce dernier cas, ils sont utilisés pour la fabrication de polymères thermodurcissables par réticulation.
Structure chimiqueIndex. décimale : 667.9 Revêtements et enduits Résumé : Cardanol, a well-known non-edible natural oil derived from the cashew nut shell liquid, is a USDA certified bio-based product.
Once used as a very high purity grade (NX-2026,TM 3-pentadeca-dienyl-phenol) in PU prepolymers, this substance has demonstrated various benefits including favorable deblocking conditions, lower viscosity, and excellent storage stability compared to commonly used phenolic compounds.
One of the most known deblocking methods involves exposure to elevated temperatures, i.e., 150 °C – 200 °C. However, not all substrates (e.g., plastics) and applications can accommodate such high temperatures for deblocking, thus, the possibility to optimize deblocking conditions can be a valuable tool to further expand the applicability of 3-pentadeca-dienyl-phenol as a label-friendly polyurethane prepolymers’ blocking agent.
In this study, we present different approaches to control NX-2026 deblocking conditions. First, 3-pentadeca-dienyl-phenol blocked prepolymers were prepared starting from different diols (e.g., PPG, polyester, CNSL-based) as well as aromatic (MDI, TDI) and aliphatic (HDI, IPDI) isocyanates. These were subsequently characterized for their deblocking temperatures and used as model substrates for the study. Key factors for controlling deblocking conditions such as catalysts, deblocking agents (amines, polyols), and solvents were investigated.Note de contenu : - Fig. 1 : Anacardium Occidentale fruit (left) and schematic process for cardanol recovery
- Fig. 2 : Examples of cardanol’s potential functionalization
- Fig. 3 : NX-2026 (3-pentadeca-dienyl-phenol) chemical structure
- Fig. 4 : Possible reactions of blocked isocyanates
- Fig. 5 : Proposed mechanism for PU depolymerization catalyzed by dibutyltin dilaurate
- Fig. 6 : Effect of chain extender (amine) on deblocking temperatures of NX-2026TM-blocked prepolymers
- Table 1 : Appearance and deblocking temperatures of blocked isocyanates
- Table 2 : Deblocking temperature and time for blocked PPG prepolymers
- Table 3 : Typical average deblocking temperatures for different PU substrates
- Table 4 : Effect of catalysts on deblocking temperatures of NX-2026-isocyanate adducts
- Table 5 : Effect of catalysts on deblocking temperatures of NX-2026-blocked prepolymers
- Table 6 : Effect of chain extender (polyol) and catalysts on deblocking temperatures of NX-2026-blocked prepolymers
- Table 7 : Use of catalysts to tune deblocking temperatures on other types of NX-2026-blocked prepolymers
- Table 8 : MW variation (%, determined by GPC) of NX-2026-blocked PPG prepolymers in presence of very effective deblocking catalysts Tegoamin 33 and DABCO K15 after storage at 50 °C for 10 days
- Table 9 : MW variation (determined by GPC) of NX-2026-blocked PPG prepolymers in presence of a chain extender (propoxylated sorbitol polyol) and of very effective deblocking catalysts Tegoamin 33 and DABCO K15 after storage at 50 °C for 10 days
- Table 10 : Effect of chain extender (polyol) and alternative catalysts on deblocking temperatures of NX-2026-blocked prepolymers
- Table 11 : MW variation (determined by GPC) of NX-2026-blocked PPG prepolymers in presence of a chain extender (propoxylated sorbitol polyol) and of alternative catalysts after storage at 50 °C for 10 days
- Table 12 : Effect of chain extender (amine) and catalysts on deblocking temperatures of NX-2026-blocked prepolymersEn ligne : https://www.coatingsworld.com/issues/2019-02-01/view_technical-papers/cardanol-- [...] Format de la ressource électronique : Html Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=32507
in COATINGS WORLD > Vol. 24, N° 2 (02/2019)[article]Exemplaires
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Titre : A natural choice : Cashew nutshell liquid-based epoxy curing agents and polyols offer outstanding performances and benefits for adhesives and sealants Type de document : texte imprimé Auteurs : Yun mi Kim, Auteur ; James Zhao, Auteur ; William Wei, Auteur Année de publication : 2017 Article en page(s) : p. 21-25 Note générale : Bibliogr. Langues : Américain (ame) Catégories : Anticorrosion
Cardanol
Colles:Adhésifs
Diols
Epoxydes
Joints d'étanchéité
Noix de cajou et constituants
Phénalkamides
Phénalkamines
Polyols
Résistance à l'humidité:Résistance à l'eau
Résistance chimique
Ressources renouvelables
RéticulantsIndex. décimale : 668.3 Adhésifs et produits semblables Résumé : Cashew nutshell liquid (CNSL), a bio-renewable resource found in the honeycomb structure of the cashew nutshell, is considered a byproduct of the cashew industry. Therefore, CNSL is a non-food chain product that would otherwise be disposed of. Cashew trees can grow abundantly in tropical conditions.
One of the most commercially useful chemicals from CNSL is cardanol, a pentadecadienyl phenol with an aliphatic side chain that usually consists of a mixture of one, two, and three double bonds in a linear chain. This natural phenolic compound has interesting chemical structural features that enable a variety of chemical modifications to create bio-based monomers and polymers. Phenalkamine is one of most successful chemicals used in cashew nutshell liquid, along with phenalkamide, exhibiting good reactivity for fast and low-temperature cure and strong adhesion even to damp or poorly prepared surfaces. In addition, its long aliphatic side chain delivers excellent water resistance, corrosion protection and chemical resistance.Note de contenu : - Phenalkamines
- Phenalkamides
- CNSL polyols
- CNSL diols
- TABLES : 1. Tested curing agents, phenalkamines, phenalkamides, and reference curing agent - 2. Tested polyols and diols - 3. Mechanical properties of phenalkamines and the reference - 4. Performance comparison of phenalkamides - 5. Physical properties of polyols cured with polymeric MDI (P-MDI) - 6. Compatibility oc CNSL diols compared to PolyBDEn ligne : http://www.adhesivesmag.com/articles/95456-a-natural-choice-for-adhesives-and-se [...] Format de la ressource électronique : Web Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=28640
in ADHESIVES & SEALANTS INDUSTRY (ASI) > Vol. 24, N° 5 (05/2017) . - p. 21-25[article]Réservation
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Code-barres Cote Support Localisation Section Disponibilité 18912 - Périodique Bibliothèque principale Documentaires Disponible Phenalkamide - new hybrid molecule and its unique coating properties / Yun mi Kim in POLYMERS PAINT COLOUR JOURNAL - PPCJ, Vol. 203, N° 4586 (07/2013)
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Titre : Phenalkamide - new hybrid molecule and its unique coating properties Type de document : texte imprimé Auteurs : Yun mi Kim, Auteur ; Fernanda Tavares, Auteur ; Donald Lawson, Auteur ; Mengjiu Chen, Auteur Année de publication : 2013 Article en page(s) : p. 25-27 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Anticorrosifs
Anticorrosion
Epoxydes
Formulation (Génie chimique)
Marines (peinture)
Métaux -- Revêtements protecteurs
Phénalkamides
Réticulants
Revêtements antisalissures:Peinture antisalissuresIndex. décimale : 667.9 Revêtements et enduits Résumé : Performance of phenalkamides with other commercial curing agents. Note de contenu : - Table 1. Curing agents
- Table 2. Pigmented epoxy base formulation
- Table 3. Linear dry time @ 5°C(5mil DFT, liquid epoxy resin, EEW190)
- Table 4. Persoz hardness and humidity appearance (7mil DFT, liquid epoxy resin, EEW 190)En ligne : https://drive.google.com/file/d/15Kdf0j5WTgZ7PqKRizr-Zm5NUlBPoA1j/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=19206
in POLYMERS PAINT COLOUR JOURNAL - PPCJ > Vol. 203, N° 4586 (07/2013) . - p. 25-27[article]Réservation
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