Published January 1, 2020
| Version v1
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Optimisation of biomass catalytic depolymerisation conditions by using response surface methodology
Creators
- 1. TUBITAK Marmara Res Ctr Energy Inst, PO 21,Baris Mah Dr Zeki Acar Cad 1, TR-41470 Gebze, Turkey
- 2. Iltek Energy Investment Ind & Trade Inc, Uskudar, Turkey
Description
The aim of this study is to present the optimum operating conditions for reducing energy consumption in the process of obtaining bio-oil from the mixture of sawdust, waste lubricating oil, lime, and commercial catalyst. In the study where the catalytic pressureless depolymerisation (also called Katalytische Drucklose Verolung - KDV) was applied, the operating conditions were analysed with response surface methodology. According to the analysis of variance results, a mathematical model was obtained for specific product yield (bio-oil amount/energy consumption g kW(e)(-1)). Effects of temperature (260 degrees C-290 degrees C), catalyst rate (1-2 wt.%) and reaction time (0.5-1 h) were investigated. The optimum conditions for the three independent variables (temperature, catalyst rate, reaction time) were 279 +/- 2 degrees C, 2 wt.% and 0.5 h, respectively. Maximum specific product yield was obtained as 970.17 g kW(e)(-1). While the reaction time was the most effective regarding the amount of bio-oil obtained at 1 kW(e) energy consumption, the temperature was found to be the least effective. In addition to these, bio-oil obtained under optimum conditions were characterised and compared with standard diesel specifications.
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