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Title: Fire Suppression and Thermal Behavior of Biobased Rigid Polyurethane Foam Filled with Biomass Incineration Waste Ash
Authors: Kairytė, Agnė
Kremensas, Arūnas
Vaitkus, Saulius
Czlonka, Sylwia
Strąkowska, Anna
Keywords: polyurethane foam
fire resistance
thermal stability
carbon footprint
biomass waste ash
Issue Date: 2020
Publisher: MDPI
Citation: Kairytė, A.; Kremensas, A.; Vaitkus, S.; Członka, S.; Strąkowska, A. Fire Suppression and Thermal Behavior of Biobased Rigid Polyurethane Foam Filled with Biomass Incineration Waste Ash. Polymers 2020, 12, 683.
Series/Report no.: 12;3
Abstract: Currently, there is great demand to implement circular economy principles and motivate producers of building materials to integrate into a closed loop supply chain system and improve sustainability of their end-product. Therefore, it is of great interest to replace conventional raw materials with inorganic or organic waste-based and filler-type additives to promote sustainability and the close loop chain. This article investigates the possibility of bottom waste incineration ash (WA) particles to be used as a flame retardant replacement to increase fire safety and thermal stability under higher temperatures. From 10 wt.% to 50 wt.% WA particles do not significantly deteriorate performance characteristics, such as compressive strength, thermal conductivity, and water absorption after 28 days of immersion, and at 32 °C WA particles improve the thermal stability of resultant PU foams. Furthermore, 50 wt.% WA particles reduce average heat release by 69% and CO2 and CO yields during fire by 76% and 77%, respectively. Unfortunately, WA particles do not act as a smoke suppressant and do not reduce smoke release rate.
Description: This article belongs to the Special Issue New Trends in Polymer Science: Health of the Planet, Health of the People
URI: http://dspace.vgtu.lt/handle/1/4077
ISSN: 2073-4360
Appears in Collections:Moksliniai straipsniai / Research articles

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