Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan

Polyvinyl alcohol- (PVA-) based aerogels have attracted widespread attention owing to their low cost, eco-friendliness, and low density. However, the applications of PVA-based aerogels are limited by their flammability. In this study, a flame retardant, ammonium polyphosphate (APP), and a biopolymer...

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Main Authors: MinYi Luo, Jiayou Xu, Shu Lv, XueFeng Yuan, Xiaolan Liang
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:International Journal of Polymer Science
Online Access:http://dx.doi.org/10.1155/2021/5555916
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spelling doaj-4f6631e5375c4e35a90f71544259aea52021-06-07T02:13:29ZengHindawi LimitedInternational Journal of Polymer Science1687-94302021-01-01202110.1155/2021/5555916Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and ChitosanMinYi Luo0Jiayou Xu1Shu Lv2XueFeng Yuan3Xiaolan Liang4School of Chemistry & Chemical EngineeringSchool of Chemistry & Chemical EngineeringSchool of Chemistry & Chemical EngineeringInstitute for Systems RheologySchool of Chemistry & Chemical EngineeringPolyvinyl alcohol- (PVA-) based aerogels have attracted widespread attention owing to their low cost, eco-friendliness, and low density. However, the applications of PVA-based aerogels are limited by their flammability. In this study, a flame retardant, ammonium polyphosphate (APP), and a biopolymer, chitosan (CS), were added to polyvinyl alcohol (PVA), and the polymer was further crosslinked using boric acid (H3BO3). In the PVA aerogels, the negatively charged APP and positively charged CS formed a polyelectrolyte complex (PEC) through ionic interaction. Cone calorimetry and vertical burning tests (UL-94) indicated that the PVA composite aerogels have excellent flame retardancy; they could decrease the heat release rate, total heat release rate, and carbon dioxide (CO2) generation. Both PVA/H3BO3 and APP-CS in the composite aerogel could be burned to carbon, and the foamed char layer could act together to impart the PVA composite aerogels with good flame retardancy. Further, the decrease in the temperature at the backside of the aerogels with increasing APP-CS content, as determined by the flame-spraying experiment, indicated that the PVA-based aerogels with APP-CS can also serve as thermal insulation materials. This work provides an effective and promising method for the preparation of PVA-based aerogels with good flame retardancy and thermal insulation property for construction materials.http://dx.doi.org/10.1155/2021/5555916
collection DOAJ
language English
format Article
sources DOAJ
author MinYi Luo
Jiayou Xu
Shu Lv
XueFeng Yuan
Xiaolan Liang
spellingShingle MinYi Luo
Jiayou Xu
Shu Lv
XueFeng Yuan
Xiaolan Liang
Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
International Journal of Polymer Science
author_facet MinYi Luo
Jiayou Xu
Shu Lv
XueFeng Yuan
Xiaolan Liang
author_sort MinYi Luo
title Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
title_short Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
title_full Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
title_fullStr Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
title_full_unstemmed Enhanced Thermal Insulation and Flame-Retardant Properties of Polyvinyl Alcohol-Based Aerogels Composited with Ammonium Polyphosphate and Chitosan
title_sort enhanced thermal insulation and flame-retardant properties of polyvinyl alcohol-based aerogels composited with ammonium polyphosphate and chitosan
publisher Hindawi Limited
series International Journal of Polymer Science
issn 1687-9430
publishDate 2021-01-01
description Polyvinyl alcohol- (PVA-) based aerogels have attracted widespread attention owing to their low cost, eco-friendliness, and low density. However, the applications of PVA-based aerogels are limited by their flammability. In this study, a flame retardant, ammonium polyphosphate (APP), and a biopolymer, chitosan (CS), were added to polyvinyl alcohol (PVA), and the polymer was further crosslinked using boric acid (H3BO3). In the PVA aerogels, the negatively charged APP and positively charged CS formed a polyelectrolyte complex (PEC) through ionic interaction. Cone calorimetry and vertical burning tests (UL-94) indicated that the PVA composite aerogels have excellent flame retardancy; they could decrease the heat release rate, total heat release rate, and carbon dioxide (CO2) generation. Both PVA/H3BO3 and APP-CS in the composite aerogel could be burned to carbon, and the foamed char layer could act together to impart the PVA composite aerogels with good flame retardancy. Further, the decrease in the temperature at the backside of the aerogels with increasing APP-CS content, as determined by the flame-spraying experiment, indicated that the PVA-based aerogels with APP-CS can also serve as thermal insulation materials. This work provides an effective and promising method for the preparation of PVA-based aerogels with good flame retardancy and thermal insulation property for construction materials.
url http://dx.doi.org/10.1155/2021/5555916
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AT jiayouxu enhancedthermalinsulationandflameretardantpropertiesofpolyvinylalcoholbasedaerogelscompositedwithammoniumpolyphosphateandchitosan
AT shulv enhancedthermalinsulationandflameretardantpropertiesofpolyvinylalcoholbasedaerogelscompositedwithammoniumpolyphosphateandchitosan
AT xuefengyuan enhancedthermalinsulationandflameretardantpropertiesofpolyvinylalcoholbasedaerogelscompositedwithammoniumpolyphosphateandchitosan
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