The effect of flame retardants on the fire technical characteristics of recycled textiles

Author:

Danihelová Anna1,Němec Miroslav1,Gergeľ Tomáš2ORCID,Gejdoš Miloš3,Lieskovský Martin3,Mitterová Iveta4,Sčensný Patrik4,Igaz Rastislav1

Affiliation:

1. Department of Physics, Electrical Engineering and Applied Mechanics, Faculty of Wood Sciences and Technology, Technical University in Zvolen, Zvolen, Slovak Republic

2. Forest Research Institute, National Forest Centre, Zvolen, Slovak Republic

3. Department of Forest Harvesting, Logistics and Amelioration, Faculty of Forestry, Technical University in Zvolen, Slovak Republic

4. Department of Fire protection, Faculty of Wood Sciences and Technology, Technical University in Zvolen, Zvolen, Slovak Republic

Abstract

The paper deals with the fire technical characteristics of insulation panels made of recycled technical textiles from the automotive industry. The introductory part focuse an of the use of recycled textiles, a description and division of technical textiles, a description of the examined material and its composition, combustion processes, and the method of handling waste textiles. The monitored characteristics were the determination of the ignitability of the material, the gross calorific value as well as the radiant heat resistance. The measurements were carried out on samples from recycled technical textiles before and after their treatment with flame retardants (Isonem Anti-fire Solution, Ecogard B45, HR Prof, woven carbon foil, non-woven carbon foil). The best results in the ignitability test after treatment with liquid flame retardants were obtained after treatment with Ecogard B45. The results show that when flame retardants are used, the released heat during the combustion of the monitored materials treated through the dipping method is significantly lower from 13.7 MJ/kg to 23.7 MJ/kg. The lowest gross calorific values were achieved when using liquid flame retardant HR Prof when applied by dipping. The proportion of material that did not burn was very low (4.61 to 5.63%). After exposure to radiant heat for 10 min, the highest mass loss was 13.6% (dipping in Ecogard B45) and the smallest 1.8% (non-woven carbon foil). Based on results, it shows that flame retardant ECOGARD® B45 for the insulation material Senizol AT XX2 TL60 made from recycled technical textiles is the most suitable fire protection.

Funder

Scientific grant agency

Cultural and education grant agency The Ministry of Education, Science, Research and Sport of the Slovak Republic

Slovak research and development agency

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Polymers and Plastics,Materials Science (miscellaneous),Chemical Engineering (miscellaneous)

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