화학공학소재연구정보센터
Bioresource Technology, Vol.218, 615-622, 2016
Thermogravimetric investigation of the co-combustion between the pyrolysis oil distillation residue and lignite
Co-combustion of lignite with distillation residue derived from rice straw pyrolysis oil was investigated by non-isothermal thermogravimetric analysis (TGA). The addition of distillation residue improved the reactivity and combustion efficiency of lignite, such as increasing the weight loss rate at peak temperature and decreasing the burnout temperature and the total burnout. With increasing distillation residue content in the blended fuels, the synergistic interactions between distillation residue and lignite firstly increased and then decreased during co-combustion stage. Results of XRF, FTIR, C-13 NMR and SEM analysis indicated that chemical structure, mineral components and morphology of samples have great influence on the synergistic interactions. The combustion mechanisms and kinetic parameters were calculated by the Coats Redfern model, suggesting that the lowest apparent activation energy (120.19 kJ/mol) for the blended fuels was obtained by blending 60 wt.% distillation residue during main co-combustion stage. (C) 2016 Elsevier Ltd. All rights reserved.