Smolder of Cellulosic Fabrics. II. Water, Alkali and Inner Oxygen as Variables

Author:

Dyakonov Alexander J.1,Grider David A.1

Affiliation:

1. Lorillard Tobacco Company Research Center 420 English Street Greensboro, NC 27420-1688

Abstract

Pyrolysis and oxidative decomposition of cellulosic fabric were studied. Alkali metal compounds were found to be essential for sustaining smol dering and to promote oxidative degradation of cellulose and assist cleavage of sugars only in the presence of water. Decomposition activity of cellulose de creased with dehydration. Study of temperature programmed reactions (TPR) in He suggested the production of COx via intermediate oxygen-containing com pounds. Intramolecular redox reactions below 300°C were suggested to explain the formation of a part of CO2. Peroxide groups were found in #6 cotton duck fab ric. They may be responsible for oxidative decomposition of cellulose around 200°C. Two peaks of COx formation rate, obtained from TPR experiments, were attributed to intramolecular redox reaction, followed by decarboxylation, and ox idation of carbohydrates by residual bound oxygen. Water washing may increase the fabric/gas permeability.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference7 articles.

1. . Noller C.R. 1956. Chemistry of Organic Compounds, London: W B. Sauders Co. pp.381-437, 870-892.

2. Smolder of Cellulosic Fabrics. I. Development of a Framework

3. . Hermans P.H. 1949. Physics and Chemistry of Cellulose Fibers, New York: Elsevier; p.135.

4. Scott, W.W. 1939. Standard Methods of Chemical Analysis , 5th Edition. New York: D. Van Nostrand Co., Inc.; pp. 2180, 2547.

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