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Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol

The paper describes the preparation and characterization of rigid polyurethane-polyisocyanurate (PUR-PIR) foams obtained with biopolyol synthesized in the process of liquefaction of biomass from the Baltic Sea. The obtained foams differed in the content of biopolyol in polyol mixture (0–30 wt%) and...

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Autores principales: Kosmela, Paulina, Hejna, Aleksander, Suchorzewski, Jan, Piszczyk, Łukasz, Haponiuk, Józef Tadeusz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7085101/
https://www.ncbi.nlm.nih.gov/pubmed/32164320
http://dx.doi.org/10.3390/ma13051257
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author Kosmela, Paulina
Hejna, Aleksander
Suchorzewski, Jan
Piszczyk, Łukasz
Haponiuk, Józef Tadeusz
author_facet Kosmela, Paulina
Hejna, Aleksander
Suchorzewski, Jan
Piszczyk, Łukasz
Haponiuk, Józef Tadeusz
author_sort Kosmela, Paulina
collection PubMed
description The paper describes the preparation and characterization of rigid polyurethane-polyisocyanurate (PUR-PIR) foams obtained with biopolyol synthesized in the process of liquefaction of biomass from the Baltic Sea. The obtained foams differed in the content of biopolyol in polyol mixture (0–30 wt%) and the isocyanate index (I(ISO) = 200, 250, and 300). The prepared foams were characterized in terms of processing parameters (processing times, synthesis temperature), physical (sol fraction content, apparent density) and chemical structure (Fourier transform infrared spectroscopy), microstructure (computer microtomography), as well as mechanical (compressive strength, dynamic mechanical analysis), and thermal properties (thermogravimetric analysis, thermal conductivity coefficient). The influence of biopolyol and I(ISO) content on the above properties was determined. The addition of up to 30 wt% of biopolyol increased the reactivity of the polyol mixture, and the obtained foams showed enhanced mechanical, thermal, and insulating properties compared to foams prepared solely with petrochemical polyol. The addition of up to 30 wt% of biopolyol did not significantly affect the chemical structure and average cell size. With the increase in I(ISO), a slight decrease in processing times and mechanical properties was observed. As expected, foams with higher I(ISO) exhibited a higher relative concentration of polyisocyanurate groups in their chemical structure, which was confirmed using principal component analysis (PCA).
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spelling pubmed-70851012020-03-23 Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol Kosmela, Paulina Hejna, Aleksander Suchorzewski, Jan Piszczyk, Łukasz Haponiuk, Józef Tadeusz Materials (Basel) Article The paper describes the preparation and characterization of rigid polyurethane-polyisocyanurate (PUR-PIR) foams obtained with biopolyol synthesized in the process of liquefaction of biomass from the Baltic Sea. The obtained foams differed in the content of biopolyol in polyol mixture (0–30 wt%) and the isocyanate index (I(ISO) = 200, 250, and 300). The prepared foams were characterized in terms of processing parameters (processing times, synthesis temperature), physical (sol fraction content, apparent density) and chemical structure (Fourier transform infrared spectroscopy), microstructure (computer microtomography), as well as mechanical (compressive strength, dynamic mechanical analysis), and thermal properties (thermogravimetric analysis, thermal conductivity coefficient). The influence of biopolyol and I(ISO) content on the above properties was determined. The addition of up to 30 wt% of biopolyol increased the reactivity of the polyol mixture, and the obtained foams showed enhanced mechanical, thermal, and insulating properties compared to foams prepared solely with petrochemical polyol. The addition of up to 30 wt% of biopolyol did not significantly affect the chemical structure and average cell size. With the increase in I(ISO), a slight decrease in processing times and mechanical properties was observed. As expected, foams with higher I(ISO) exhibited a higher relative concentration of polyisocyanurate groups in their chemical structure, which was confirmed using principal component analysis (PCA). MDPI 2020-03-10 /pmc/articles/PMC7085101/ /pubmed/32164320 http://dx.doi.org/10.3390/ma13051257 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kosmela, Paulina
Hejna, Aleksander
Suchorzewski, Jan
Piszczyk, Łukasz
Haponiuk, Józef Tadeusz
Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title_full Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title_fullStr Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title_full_unstemmed Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title_short Study on the Structure-Property Dependences of Rigid PUR-PIR Foams Obtained from Marine Biomass-Based Biopolyol
title_sort study on the structure-property dependences of rigid pur-pir foams obtained from marine biomass-based biopolyol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7085101/
https://www.ncbi.nlm.nih.gov/pubmed/32164320
http://dx.doi.org/10.3390/ma13051257
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