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Effects of volatile-char interactions on the reactivity of chars from NaCI-loaded Loy Yang brown coal

机译:挥发炭相互作用对载有NaCl的Loy Yang褐煤中焦炭反应性的影响

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In a fluidised-bed gasifier, char particles are in constant contact with the volatiles and the products from the gasification and thermal cracking of volatiles. The highly reactive nature of volatiles as well as the vulnerable structure of char from brown coal means that there are strong interactions between volatiles and char. The put pose of this study is to investigate the effects of volatile-char interactions on the reactivities of chars from a Victorian brown coal. NaCl-loaded and acidwashed Loy Yang brown coal samples were pyrolysed in a novel fluidised-bed/fixed-bed reactor at 900 deg C that has been specially designed to investigate the volatile-char interactions. Char reactivity in air was measured in a thermogravimetric analyser (TGA) under conditions minimising mass transfer limitations. The oxidation of char with air in the TGA showed apparent kinetic compensation effects between the apparent activation energies and pre-exponential factors. The presence of the apparent kinetic compensation effect is a reflection of the heterogeneous structure of char having sites of a wide range of energy levels. Our results have clearly shown that volatile-char interactions can lead to drastic decreases in char reactivity due to the volatilisation of Na and the changes in char structure. The reactivities of chars from the pyrolysis of the catalyst-free H-form Loy Yang brown coal provided unequivocal evidence for the changes in char structure after volatile-char interactions. For chars from the NaCl-loaded Loy Yang brown coal, it appears that the condensation of ring structures in char as a result of volatile-char interactions could have also led to changes in the dispersion of Na catalyst.
机译:在流化床气化炉中,焦炭颗粒与挥发物以及挥发物的气化和热裂解产生的产物不断接触。挥发物的高反应性以及褐煤中焦炭的脆弱结构意味着挥发物和炭之间存在强烈的相互作用。这项研究的目的是研究挥发炭相互作用对维多利亚褐煤中焦炭反应性的影响。将装有NaCl并酸洗的Loy Yang褐煤样品在新型流化床/固定床反应器中于900℃下热解,该反应器经专门设计用于研究挥发性炭的相互作用。在热重分析仪(TGA)中,在使传质限制最小的条件下测量了空气中的焦炭反应性。 TGA中空气对焦炭的氧化表现出表观活化能和预指数因子之间的表观动力学补偿作用。明显的动力学补偿作用的存在反映了具有多种能级位点的炭的异质结构。我们的结果清楚地表明,由于Na的挥发和炭结构的变化,挥发炭相互作用会导致炭反应性急剧下降。不含催化剂的H型Loy Yang褐煤的热解过程中炭的反应性为挥发炭相互作用后炭结构的变化提供了明确的证据。对于来自装载NaCl的Loy Yang褐煤的炭,看来由于挥发性炭相互作用,炭中环结构的缩合也可能导致Na催化剂分散性的变化。

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