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Pyrolysis behaviors of two coal-related model compounds on a fixed-bed reactor

机译:两种与煤有关的模型化合物在固定床反应器上的热解行为

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The bibenzyl (BB) and benzyloxybenzene (BOB) were selected as coal-related model compounds, and their pyrolysis behaviors between 500 degrees C and 700 degrees C were investigated on a fixed-bed reactor. The pyrolysis products were analyzed by gas chromatography-mass spectrometer (GC-MS) and gas chromatography (GC), and the bond dissociation energy (BDE) was calculated with density functional theory (DFT) methods at B3LYP/6-31G (d) level. The results showed that the conversion in pyrolysis of BOB was higher than that of BB. The pyrolysis product distributions and BDE calculation indicate that C-aliphatic-C-aliphatic bond dissociation is the primary step for BB pyrolysis, while C-aliphatic-O bond dissociation is the primary step for BOB pyrolysis. The differences in pyrolysis behaviors between BB and BOB indicate that the existence of oxygen atom will reduce the BDE thus being preferentially dissociated under pyrolysis. The initial radicals should be stabilized by some more reactive radicals, which lead to higher liquid yield. (C) 2014 Elsevier B.V. All rights reserved.
机译:选择联苄(BB)和苄氧基苯(BOB)作为与煤有关的模型化合物,并在固定床反应器上研究了它们在500摄氏度至700摄氏度之间的热解行为。用气相色谱-质谱仪(GC-MS)和气相色谱仪(GC)分析热解产物,并使用密度泛函理论(DFT)方法在B3LYP / 6-31G(d)上计算键解离能(BDE)。水平。结果表明,BOB的热解转化率高于BB。热解产物分布和BDE计算表明,C-脂族-C-脂族键解离是BB热解的主要步骤,而C-脂族-O键解离是BOB热解的主要步骤。 BB和BOB在热解行为上的差异表明,氧原子的存在会降低BDE,因此在热解下优先解离。初始自由基应通过更多的反应性自由基加以稳定,从而导致更高的液体收率。 (C)2014 Elsevier B.V.保留所有权利。

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