4.8 Article

Co-pyrolysis kinetics of sewage sludge and bagasse using multiple normal distributed activation energy model (M-DAEM)

Journal

BIORESOURCE TECHNOLOGY
Volume 259, Issue -, Pages 173-180

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2018.03.036

Keywords

Multiple normal distributed activation energy; model (M-DAEM); Thermogravimetric analysis (TGA); Co-pyrolysis; Bagasse; Sewage sludge

Funding

  1. National Natural Science Foundation of China [51676074]
  2. Guangdong Natural Science Foundation [2015A030311037]
  3. Guangdong Province Key Laboratory of Efficient and Clean Energy Utilization [2013A061401005]
  4. Guangzhou Science Research Program Key Project
  5. General Administration of Quality Supervision, Inspection and Quarantine of the PRC Projects [2017QK152]

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In this study, the kinetic models of bagasse, sewage sludge and their mixture were established by the multiple normal distributed activation energy model. Blending with sewage sludge, the initial temperature declined from 437 K to 418 K. The pyrolytic species could be divided into five categories, including analogous hemicelluloses I, hemicelluloses II, cellulose, lignin and bio-char. In these species, the average activation energies and the deviations situated at reasonable ranges of 166.4673-323.7261 kJ/mol and 0.1063-35.2973 kJ/mol, respectively, which were conformed to the references. The kinetic models were well matched to experimental data, and the R-2 were greater than 99.999%y. In the local sensitivity analysis, the distributed average activation energy had stronger effect on the robustness than other kinetic parameters. And the content of pyrolytic species determined which series of kinetic parameters were more important.

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