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  4. Fire Properties of Paper Sheets Made of Cellulose Fibers Treated with Various Retardants
 
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Fire Properties of Paper Sheets Made of Cellulose Fibers Treated with Various Retardants

Type
Journal article
Language
English
Date issued
2024
Author
Szubert, Zuzanna
Mazela, Bartłomiej 
Tomkowiak, Karolina
Grześkowiak, Wojciech 
Faculty
Wydział Leśny i Technologii Drewna
PBN discipline
forestry
Journal
Materials
ISSN
1996-1944
DOI
10.3390/ma17133074
Web address
https://www.mdpi.com/1996-1944/17/13/3074
Volume
17
Number
13
Pages from-to
art. 3074
Abstract (EN)
This article presents the results of flame-retardancy tests conducted on cellulose sheets produced using a Rapid Köthen apparatus treated with retardants. The agents used were potassium carbonate (PC) K2CO3 (concentrations of 20; 33.3; and 50% wt/wt), monoammonium phosphate (MAP) NH4H2PO4 (concentrations of 35% wt/wt), diammonium phosphate (DAP) (NH4)2HPO4 (concentrations of 42.9% wt/wt), and bisguanidal phosphate (FOS) C2H10N6 (concentrations of 22.5% wt/wt). The agents were used to improve Kraft cellulose-based sheets’ flame-retardant properties and compare their performances. As part of the study, the flammability of the materials was determined by the following methods: an oxygen index (OI) test, a mass loss calorimeter (MLC) test, and a mini fire tube (MFT) test. All formulations showed an increase in flame retardancy compared to the control test. All protected samples were non-flammable for OI determinations, and DAP-protected samples showed the highest OI index. For the MLC test, DAP-protected and MAP-protected samples showed the best heat-release rate (HRR), total heat release (THR), and average heat-release rate (ARHE) (samples did not ignite for 600 s). In the MFT test, all treated samples had comparably reduced weight loss. The best parameter was achieved for MAP and DAP
(15% weight loss).
Keywords (EN)
  • cellulose

  • paper products

  • molded fibers

  • fire retardants

  • mass loss calorimeter

  • mini fire tube

License
cc-bycc-by CC-BY - Attribution
Open access date
June 22, 2024
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