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Effect of char on co-pyrolysis of biomass and coal in a free fall reactor

机译:焦炭对自由落体反应器中生物质和煤共热解的影响

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Fast pyrolysis and co-pyrolysis of pine sawdust (SD) and sub-bituminous coal (SB) were carried out in a free fall reactor. There is a gas-solid separator at the bottom of the reactor, where a controlled re-contact of the primary volatiles with the nascent char could be achieved. The experiments of the individual fuels with the volatiles-char re-contact resulted in increased tar yield and decreased the light hydrocarbon gas concentrations compared with that without the volatiles-char re-contact. During the co-pyrolysis of SD and SB, synergies were observed to have produced more tar at different biomass blending ratios (BR): Particularly, the re-contact of the volatiles-char effectively enhanced tar generation and suppressed water formation. The volatiles-char interactions promoted the tar generation mainly at the char bed temperature range from 600 degrees C to 700 degrees C. At the optimum condition with the BR of 0.50 and char bed temperature of 700 degrees C, the tar yield increased up to 28.7%. The co-pyrolysis and volatiles-char interactions favored the acidic components generation in the liquid products. Especially, the volatiles-char re-contact during co-pyrolysis improved the quality of tar by decreasing its asphaltene content. (C) 2014 Elsevier B.V. All rights reserved.
机译:在自由落体反应器中进行了松木屑(SD)和次烟煤(SB)的快速热解和共热解。在反应器的底部有一个气固分离器,在那里可以实现主要挥发物与新生炭的受控再接触。与没有挥发炭重新接触的情况相比,使用挥发炭重新接触的单个燃料的实验提高了焦油收率,降低了轻烃气体的浓度。在SD和SB的共热解过程中,观察到协同作用在不同的生物量混合比(BR)下产生了更多的焦油:特别是,挥发物炭的重新接触有效地提高了焦油的生成并抑制了水的形成。挥发物-炭的相互作用主要在焦炭温度为600℃至700℃的条件下促进焦油的生成。在BR为0.50和焦炭温度为700℃的最佳条件下,焦油收率提高至28.7 %。共热解和挥发物-炭相互作用促进了液体产物中酸性组分的产生。特别是,共热解过程中的挥发炭重新接触通过降低沥青中的沥青质含量提高了焦油的质量。 (C)2014 Elsevier B.V.保留所有权利。

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