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Volatilisation and catalytic effects of alkali and alkaline earth metallic species during the pyrolysis and gasification of Victorian brown coal. Part Ⅴ. Combined effects of Na concentration and char structure on char reactivity

机译:维多利亚褐煤热解和气化过程中碱金属和碱土金属物质的挥发和催化作用。第五部分。 Na浓度和炭结构对炭反应性的综合影响

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摘要

A set of Nad-loaded Loy Yang brown coal was pyrolysed in a thermogravimetric analyser between 600 and 900℃. The char sample after pyrolysis was cooled down directly for in situ reactivity measurement with air. The results indicated that the volatilisation of Na during pyrolysis is an important reason for the existence of catalyst loading saturation level with Na as a catalyst in char because the char prepared at high temperature had a limited holding capacity for Na. Under the experimental conditions in this study, the char reactivity showed good linear correlation with the Na concentration in the reacting char. Peak pyrolysis temperature, affecting the release of Cl and distribution of Na in char, is an important factor governing the correlation between the char reactivity and Na concentration in char. The catalytic activity of Na is a result of the interaction between Na and char and thus is greatly dependent on the char/carbon structure. At high char conversion levels where the char structure is more inert and highly condensed, the catalytic activity of Na is reduced compared with its activity at low char conversion levels. The catalytic activity of Na depends on the structure of char.
机译:在600至900℃的热重分析仪中将一套Nad负载的Loy Yang褐煤热解。将热解后的炭样品直接冷却下来,以便与空气进行原位反应性测量。结果表明,Na在热解过程中的挥发是在炭中存在以Na为催化剂的催化剂负载饱和水平的重要原因,因为在高温下制备的炭对Na的保持能力有限。在这项研究的实验条件下,炭反应性与反应炭中的Na浓度表现出良好的线性关系。峰值热解温度影响焦炭中Cl的释放和Na的分布,是控制焦炭反应性与炭中Na浓度之间相关性的重要因素。 Na的催化活性是Na和炭之间相互作用的结果,因此很大程度上取决于炭/碳结构。在高炭转化率下,炭结构更惰性且高度冷凝,与低炭转化率下的活性相比,Na的催化活性降低。 Na的催化活性取决于炭的结构。

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