Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams

The rigid polyurethane foam (PU) is a versatile material, used especially for construction and household applications. The current situation demands a facile, cost-efficient, and greener approach for developing the polyurethanes from bio-derived materials. In this study, we present a novel bio-polyo...

Full description

Bibliographic Details
Main Authors: Felipe M. de Souza, Jonghyun Choi, Sanket Bhoyate, Pawan K. Kahol, Ram K. Gupta
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:C
Subjects:
Online Access:https://www.mdpi.com/2311-5629/6/2/27
id doaj-bed5ade03e0b4c578f4a78a39050e3b2
record_format Article
spelling doaj-bed5ade03e0b4c578f4a78a39050e3b22020-11-25T02:54:16ZengMDPI AGC2311-56292020-05-016272710.3390/c6020027Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane FoamsFelipe M. de Souza0Jonghyun Choi1Sanket Bhoyate2Pawan K. Kahol3Ram K. Gupta4Department of Chemistry, Pittsburg State University, Pittsburg, KS 66762, USADepartment of Chemistry, Pittsburg State University, Pittsburg, KS 66762, USADepartment of Materials Science and Engineering, University of North Texas, Denton, TX 76203, USADepartment of Physics, Pittsburg State University, Pittsburg, KS 66762, USADepartment of Chemistry, Pittsburg State University, Pittsburg, KS 66762, USAThe rigid polyurethane foam (PU) is a versatile material, used especially for construction and household applications. The current situation demands a facile, cost-efficient, and greener approach for developing the polyurethanes from bio-derived materials. In this study, we present a novel bio-polyol synthesized using carvone, an extract from caraway, spearmint, or dill seeds via facile thiol-ene reaction. Our one-step reaction uses a UV irradiation to allow the room temperature conversion of the carvone to a high purity bio-polyol, as confirmed from the standard analytical characterizations. The hydroxyl number of 365 mg KOH/g close to its theoretical limit confirms the high conversion yield of the polyol for rigid PU synthesis. To overcome the flammability issues in PU, expandable graphite (EG) powder was used as an additive flame-retardant during the synthesis step. The resulting foams with EG maintained the uniform closed cell structure (>95%) with a high compression strength of 175 kPa. The addition of EG in PU results in the formation of a protective char layer during the flammability test and reduces the weight loss from 40.70% to 3.55% and burning time from 87 to 11 s. Our results confirm that the carvone-based polyol can be a novel alternative to the petroleum polyols for an industrial-scale application.https://www.mdpi.com/2311-5629/6/2/27flammabilityflame-retardant polyurethane foamsbio-polyolexpandable graphite
collection DOAJ
language English
format Article
sources DOAJ
author Felipe M. de Souza
Jonghyun Choi
Sanket Bhoyate
Pawan K. Kahol
Ram K. Gupta
spellingShingle Felipe M. de Souza
Jonghyun Choi
Sanket Bhoyate
Pawan K. Kahol
Ram K. Gupta
Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
C
flammability
flame-retardant polyurethane foams
bio-polyol
expandable graphite
author_facet Felipe M. de Souza
Jonghyun Choi
Sanket Bhoyate
Pawan K. Kahol
Ram K. Gupta
author_sort Felipe M. de Souza
title Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
title_short Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
title_full Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
title_fullStr Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
title_full_unstemmed Expendable Graphite as an Efficient Flame-Retardant for Novel Partial Bio-Based Rigid Polyurethane Foams
title_sort expendable graphite as an efficient flame-retardant for novel partial bio-based rigid polyurethane foams
publisher MDPI AG
series C
issn 2311-5629
publishDate 2020-05-01
description The rigid polyurethane foam (PU) is a versatile material, used especially for construction and household applications. The current situation demands a facile, cost-efficient, and greener approach for developing the polyurethanes from bio-derived materials. In this study, we present a novel bio-polyol synthesized using carvone, an extract from caraway, spearmint, or dill seeds via facile thiol-ene reaction. Our one-step reaction uses a UV irradiation to allow the room temperature conversion of the carvone to a high purity bio-polyol, as confirmed from the standard analytical characterizations. The hydroxyl number of 365 mg KOH/g close to its theoretical limit confirms the high conversion yield of the polyol for rigid PU synthesis. To overcome the flammability issues in PU, expandable graphite (EG) powder was used as an additive flame-retardant during the synthesis step. The resulting foams with EG maintained the uniform closed cell structure (>95%) with a high compression strength of 175 kPa. The addition of EG in PU results in the formation of a protective char layer during the flammability test and reduces the weight loss from 40.70% to 3.55% and burning time from 87 to 11 s. Our results confirm that the carvone-based polyol can be a novel alternative to the petroleum polyols for an industrial-scale application.
topic flammability
flame-retardant polyurethane foams
bio-polyol
expandable graphite
url https://www.mdpi.com/2311-5629/6/2/27
work_keys_str_mv AT felipemdesouza expendablegraphiteasanefficientflameretardantfornovelpartialbiobasedrigidpolyurethanefoams
AT jonghyunchoi expendablegraphiteasanefficientflameretardantfornovelpartialbiobasedrigidpolyurethanefoams
AT sanketbhoyate expendablegraphiteasanefficientflameretardantfornovelpartialbiobasedrigidpolyurethanefoams
AT pawankkahol expendablegraphiteasanefficientflameretardantfornovelpartialbiobasedrigidpolyurethanefoams
AT ramkgupta expendablegraphiteasanefficientflameretardantfornovelpartialbiobasedrigidpolyurethanefoams
_version_ 1724722409618014208