Cargando…

Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant

The thermal stabilities, flame retardancies, and physico-mechanical properties of rice husk-reinforced polyurethane (PU–RH) foams with and without flame retardants (FRs) were evaluated. Their flammability performances were studied by UL94, LOI, and cone calorimetry tests. The obtained results combin...

Descripción completa

Detalles Bibliográficos
Autores principales: Phan, Huong T.Q., Nguyen, Binh T., Pham, Lam H., Pham, Chi T., Do, Thi Vi Vi, Hoang, Cuong N., Nguyen, Nguyen Ngan, Kim, Jinhwan, Hoang, DongQuy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835888/
https://www.ncbi.nlm.nih.gov/pubmed/31569369
http://dx.doi.org/10.3390/polym11101587
_version_ 1783466779436122112
author Phan, Huong T.Q.
Nguyen, Binh T.
Pham, Lam H.
Pham, Chi T.
Do, Thi Vi Vi
Hoang, Cuong N.
Nguyen, Nguyen Ngan
Kim, Jinhwan
Hoang, DongQuy
author_facet Phan, Huong T.Q.
Nguyen, Binh T.
Pham, Lam H.
Pham, Chi T.
Do, Thi Vi Vi
Hoang, Cuong N.
Nguyen, Nguyen Ngan
Kim, Jinhwan
Hoang, DongQuy
author_sort Phan, Huong T.Q.
collection PubMed
description The thermal stabilities, flame retardancies, and physico-mechanical properties of rice husk-reinforced polyurethane (PU–RH) foams with and without flame retardants (FRs) were evaluated. Their flammability performances were studied by UL94, LOI, and cone calorimetry tests. The obtained results combined with FTIR, TGA, SEM, and XPS characterizations were used to evaluate the fire behaviors of the PU–RH samples. The PU–RH samples with a quite low loading (7 wt%) of aluminum diethylphosphinate (OP) and 32 wt% loading of aluminum hydroxide (ATH) had high thermal stabilities, excellent flame retardancies, UL94 V-0 ratings, and LOIs of 22%–23%. PU–RH did not pass the UL94 HB standard test and completely burned to the holder clamp with a low LOI (19%). The cone calorimetry results indicated that the fireproof characteristics of the PU foam composites were considerably improved by the addition of the FRs. The proposed flame retardancy mechanism and cone calorimetry results are consistent. The comprehensive FTIR spectroscopy, TG, SEM, and XPS analyses revealed that the addition of ATH generated white solid particles, which dispersed and covered the residue surface. The pyrolysis products of OP would self-condense or react with other volatiles generated by the decomposition of PU–RH to form stable, continuous, and thick phosphorus/aluminum-rich residual chars inhibiting the transfer of heat and oxygen. The PU–RH samples with and without the FRs exhibited the normal isothermal sorption hysteresis effect at relative humidities higher than 20%. At lower values, during the desorption, this effect was not observed, probably because of the biodegradation of organic components in the RH. The findings of this study not only contribute to the improvement in combustibility of PU–RH composites and reduce the smoke or toxic fume generation, but also solve the problem of RHs, which are abundant waste resources of agriculture materials leading to the waste disposal management problems.
format Online
Article
Text
id pubmed-6835888
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68358882019-11-25 Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant Phan, Huong T.Q. Nguyen, Binh T. Pham, Lam H. Pham, Chi T. Do, Thi Vi Vi Hoang, Cuong N. Nguyen, Nguyen Ngan Kim, Jinhwan Hoang, DongQuy Polymers (Basel) Article The thermal stabilities, flame retardancies, and physico-mechanical properties of rice husk-reinforced polyurethane (PU–RH) foams with and without flame retardants (FRs) were evaluated. Their flammability performances were studied by UL94, LOI, and cone calorimetry tests. The obtained results combined with FTIR, TGA, SEM, and XPS characterizations were used to evaluate the fire behaviors of the PU–RH samples. The PU–RH samples with a quite low loading (7 wt%) of aluminum diethylphosphinate (OP) and 32 wt% loading of aluminum hydroxide (ATH) had high thermal stabilities, excellent flame retardancies, UL94 V-0 ratings, and LOIs of 22%–23%. PU–RH did not pass the UL94 HB standard test and completely burned to the holder clamp with a low LOI (19%). The cone calorimetry results indicated that the fireproof characteristics of the PU foam composites were considerably improved by the addition of the FRs. The proposed flame retardancy mechanism and cone calorimetry results are consistent. The comprehensive FTIR spectroscopy, TG, SEM, and XPS analyses revealed that the addition of ATH generated white solid particles, which dispersed and covered the residue surface. The pyrolysis products of OP would self-condense or react with other volatiles generated by the decomposition of PU–RH to form stable, continuous, and thick phosphorus/aluminum-rich residual chars inhibiting the transfer of heat and oxygen. The PU–RH samples with and without the FRs exhibited the normal isothermal sorption hysteresis effect at relative humidities higher than 20%. At lower values, during the desorption, this effect was not observed, probably because of the biodegradation of organic components in the RH. The findings of this study not only contribute to the improvement in combustibility of PU–RH composites and reduce the smoke or toxic fume generation, but also solve the problem of RHs, which are abundant waste resources of agriculture materials leading to the waste disposal management problems. MDPI 2019-09-28 /pmc/articles/PMC6835888/ /pubmed/31569369 http://dx.doi.org/10.3390/polym11101587 Text en © 2019 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
Phan, Huong T.Q.
Nguyen, Binh T.
Pham, Lam H.
Pham, Chi T.
Do, Thi Vi Vi
Hoang, Cuong N.
Nguyen, Nguyen Ngan
Kim, Jinhwan
Hoang, DongQuy
Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title_full Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title_fullStr Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title_full_unstemmed Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title_short Excellent Fireproof Characteristics and High Thermal Stability of Rice Husk-Filled Polyurethane with Halogen-Free Flame Retardant
title_sort excellent fireproof characteristics and high thermal stability of rice husk-filled polyurethane with halogen-free flame retardant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835888/
https://www.ncbi.nlm.nih.gov/pubmed/31569369
http://dx.doi.org/10.3390/polym11101587
work_keys_str_mv AT phanhuongtq excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT nguyenbinht excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT phamlamh excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT phamchit excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT dothivivi excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT hoangcuongn excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT nguyennguyenngan excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT kimjinhwan excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant
AT hoangdongquy excellentfireproofcharacteristicsandhighthermalstabilityofricehuskfilledpolyurethanewithhalogenfreeflameretardant