4.8 Article

Thermal characterization and syngas production from the pyrolysis of biophysical dried and traditional thermal dried sewage sludge

Journal

BIORESOURCE TECHNOLOGY
Volume 198, Issue -, Pages 276-282

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2015.08.071

Keywords

Biophysical-dried sludge; Thermal-dried sludge; Fast pyrolysis; Thermal decomposition property

Funding

  1. National Natural Science Foundation of China [21407012]
  2. Natural Science Basic Research Plan in Shaanxi Province of China [2015JQ5178]
  3. Fundamental Research Funds for the Central Universities [0009-2014G1291073, 0009-2014G2290017]
  4. Science and Technology Support Program for Xinjiang Uygur Autonomous Region [201491113]
  5. Open Research Fund of Key Laboratory of Subsurface Hydrology and Ecological Effect in Arid Region of Ministry of Education [2014G1502029]

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A novel method for energy recycling from sewage sludge was developed through biophysical drying coupled with fast pyrolysis. Thermal decomposition properties of biophysical-dried sludge (BDS) and thermal-dried sludge (TDS) were characterized through thermogravimetric (TG) coupled with mass spectrometry (MS) analysis. BDS exhibited typical peaks in each differential thermogravimetric (DTG) region and presented slower mass loss rates in H, C, and L regions (180-550 degrees C) but remarkable weight loss in region I (>550 degrees C) compared with TDS. The charring process centered at region I, was responsible for the prominent H-2 emission from BDS. The pseudo multicomponent model showed that the Em values of BDS and TDS were 48.84 and 37.75 kJ/mol, respectively. Furthermore, fast pyrolysis of BDS was proven to facilitate syngas and char formation more than TDS. For the yielded syngas, the thermal conversion of BDS was characterized by high H2 and CH4 content beyond 700 degrees C. (C) 2015 Published by Elsevier Ltd.

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