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The kinetics of gasification of char derived from sewage sludge

Journal of Thermal Analysis and CalorimetryPublished 16 September 2010Open access
Ł. Nowicki, Anna Antecka, Tomasz Bedyk, P. Stolarek, S. Ledakowicz
Citations61
SJR quartileQ2
SJR score0.55
SNIP0.94
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Abstract

Gasification of char derived from sewage sludge was studied under different oxidizing atmospheres containing CO 2 , O 2 or H 2 O. The gasification tests were carried out in thermobalance at different temperatures and oxidizing reagent concentrations. The most efficient were the gaseous mixtures containing oxygen. The reaction took place at temperature 400–500 °C, whilst in the case of CO 2 and steam much higher temperatures (700–900 °C) were necessary to complete the conversion. Two rate models for gas–solid reaction were applied to describe the effect of char conversion on reaction rate. The shrinking core model for reaction-controlled regime was found to be the best for predicting the rate of char gasification in CO 2 and O 2 atmosphere. The experimental data for steam gasification of the char were fitted best by the first-order kinetics. The kinetic parameters estimated from the experimental data are in accordance with the literature for lignocellulosic char gasification and are the first published for sewage sludge char gasification.

Keywords

Engineering