学位论文详细信息
Thermal conversion of biomass and biomass components to biofuels and bio-chemicals
Upgrading;Biomass components;Biomass;Zeolite;Pyrolysis
Ben, Haoxi ; Ragauskas, Arthur Chemistry and Biochemistry Deng, Yulin France, Stefan Liotta, Charles Singh, Preet ; Ragauskas, Arthur
University:Georgia Institute of Technology
Department:Chemistry and Biochemistry
关键词: Upgrading;    Biomass components;    Biomass;    Zeolite;    Pyrolysis;   
Others  :  https://smartech.gatech.edu/bitstream/1853/51738/1/ben_haoxi_201305_phd.pdf
美国|英语
来源: SMARTech Repository
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【 摘 要 】
This thesis examined the conversions of biomass and biomass components to petrochemicals and total aliphatic gasoline like products. There are three major projects of the thesis. Since biomass is very complicated, to understand the thermal decomposition pathways of biomass, the pyrolytic behaviors of various biomass components including lignin and cellulose under different reaction were investigated in the first phase. Due to complexity and limited volatility, the thermal decomposition products from biomass bring insurmountable obstacles to the traditional analysis methods such as GC-MS, UV and FT-IR. Therefore, precise characterization of the whole portion of thermal decomposition products has significant impacts on providing insight into the pyrolysis pathways and evaluating the upgrading processes. Various NMR methods to characterize different functional groups presented in liquid and solid pyrolysis products by 1H, 13C, 31P, 2D-HSQC and solid state 13C-NMR were introduced in the second phase. Nevertheless, the major drawback towards commercialization of pyrolysis oils are their challenging properties including poor volatility, high oxygen content, molecular weight, acidity and viscosity, corrosiveness and cold flow problems. In situ upgrading the properties of pyrolysis oils during thermal conversion process by employing zeolites has been discussed in the third phase. The further hydrogenation of pyrolysis oils to total aliphatic gasoline like products by heterogeneous catalysis in “green medium” – water has also been examined in the third project.
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