4.5 Article

Sewage and textile sludge thermal degradation kinetic study using multistep approach

期刊

THERMOCHIMICA ACTA
卷 698, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.tca.2021.178871

关键词

Sewage sludge; Textile sludge; Kinetic analysis; Multi-step kinetic

资金

  1. Taiwan Ministry of Science and Technology (MOST) [MOST-108-2221-E-008-061]

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This study used TGA coupled with FTIR to evaluate the thermal decomposition of sewage and textile sludge, finding that a multi-step kinetic analysis method could provide more accurate kinetic parameters. The activation energy of textile sludge for three consecutive stages varied more widely compared to sewage sludge, indicating potential differences in the decomposition process between the two types of sludge.
This study performed TGA coupled with FTIR to evaluate the evolved gas and kinetic parameters of sewage and textile sludge thermal decomposition. Temperature-based FTIR spectrum presented common organics and also some nitrogen and sulfur-containing compounds in the produced gas. A multi-step determination of the kinetic analysis with TGA data could provide a more reasonable interpretation of kinetic triplets, including the activation energy and reaction mechanism. Hence, using the multi-step method would avoid overestimation for further calculation. The multi-step-based method yielded kinetic parameters for three pseudo reactions during the decomposition of sewage sludge (SS), textile sludge (TS), and their blends. Compared to sewage sludge, the activation energy of textile sludge for three consecutive stages varied more widely in the 90-160, 100-190, and 230 320 kJ/mol range, respectively. Aside from the activation energy, the reaction mechanism and pre-exponential factor would enrich sludge decomposition kinetic insight.

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