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Effect of Potassium on the Mechanisms of Biomass Pyrolysis Studied using Complementary Analytical Techniques

机译:钾对使用互补分析技术研究的生物质热解机制的影响

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Complementary analytical methods have been used to study the effect of potassium on the pyrolysis mechanisms of cellulose and lignocellulosic biomasses. Thermogravimetry, calorimetry, high-temperature H-1 NMR spectroscopy (in situ and real-time analysis of the fluid phase formed during pyrolysis), and water extraction of quenched char followed by size-exclusion chromatography coupled with mass spectrometry have been combined. Potassium impregnated in cellulose suppresses the formation of anhydrosugars, reduces the formation of mobile protons, and gives rise to a mainly exothermic signal. The evolution of mobile protons formed from K-impregnated cellulose has a very similar pattern to the evolution of the mass loss rate. This methodology has been also applied to analyze miscanthus, demineralized miscanthus, miscanthus re-impregnated with potassium after demineralization, raw oak, and Douglas fir. Hydrogen mobility and transfer are of high importance in the mechanisms of biomass pyrolysis.
机译:互补分析方法已经用于研究钾对纤维素和木质纤维素生物量的热解机制的影响。热重量测定,量热法,高温H-1 NMR光谱(原位和热解期间形成的流体相的实时分析),并组合了与质谱相偶联的淬火炭的水提取。浸渍在纤维素中的钾抑制了硫醇的形成,减少了移动质子的形成,并产生了主要放热信号。由k浸渍纤维素形成的移动质子的演化具有非常相似的模式与质量损失率的演变。该方法也已应用于分析Miscanthus,Deminerzed Miscanthus,Miscanthus在脱矿质,橡树和道格拉斯冷杉后重新浸渍钾。氢气迁移和转移在生物质热解机制方面具有很高的重要性。

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