4.8 Article

Biomass pyrolysis and combustion integral and differential reaction heats with temperatures using thermogravimetric analysis/differential scanning calorimetry

Journal

BIORESOURCE TECHNOLOGY
Volume 185, Issue -, Pages 89-98

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biortech.2015.02.079

Keywords

Big bluestem; Corn stover; Lignocellulosic biomass; Switchgrass; Thermal properties

Funding

  1. ND Forest Service & US Forest Service [FAR0020826]
  2. Renewable Energy Program of the North Dakota Industrial Commission, Bismarck, ND [FAR0016577]
  3. USDA Agricultural Research Service, Mandan, ND

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Integral reaction heats of switchgrass, big bluestem, and corn stalks were determined using thermogravimetric analysis/differential scanning calorimetry (TGA/DSC). Iso-conversion differential reaction heats using TGA/DSC pyrolysis and combustion of biomass were not available, despite reports available on heats required and released. A concept of iso-conversion differential reaction heats was used to determine the differential reaction heats of each thermal characteristics segment of these materials. Results showed that the integral reaction heats were endothermic from 30 to 700 degrees C for pyrolysis of switchgrass and big bluestem, but they were exothermic for corn stalks prior to 587 degrees C. However, the integral reaction heats for combustion of the materials followed an endothermic to exothermic transition. The differential reaction heats of switchgrass pyrolysis were predominantly endothermic in the fraction of mass loss (0.0536-0.975), and were exothermic for corn stalks (0.0885-0.850) and big bluestem (0.736-0.919). Study results provided better insight into biomass thermal mechanism. Published by Elsevier Ltd.

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