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Fast pyrolysis of torrefied sewage sludge in a fluidized bed reactor

机译:流化床反应器中焙干的污水污泥的快速热解

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The pyrolysis of dry and of torrefied sewage sludge in a lab-scale fluidized bed reactor has been studied in order to determine whether torrefaction pre-treatment could enhance the properties of the liquid product obtained after pyrolysis. The aim of this work is to evaluate the influence of the torrefaction temperature (220-320 °C) and average solid residence time (3.6-10,2 min) on the product distribution and the properties of the pyrolysis products. Pyrolysis was conducted at 530 °C with an average solid residence time of 5.7 min and a nitrogen volumetric flow per reactor area of 0.074 m~3 (STP) m~(-2) s~(-1) (measured at 0 °C and 1.01·10~5 Pa). The experimental results show that torrefaction pre-treatment affects the pyrolysis liquid product, although it does not improve the homogeneity of the liquid. Specifically, it reduces the yields of water and the liquid aqueous phase obtained in the pyrolysis step, especially after torrefaction under the most severe conditions, but it does not have a great effect on the properties of the liquid organic phases obtained. The cumulative yields of gas and organic compounds from the two-step process are not different from the yields obtained from one-step pyrolysis.
机译:为了确定干法预处理是否可以提高热解后获得的液体产品的性能,已经研究了在实验室规模的流化床反应器中对干燥的和焙干的污泥进行热解。这项工作的目的是评估焙烧温度(220-320°C)和平均固体停留时间(3.6-10,2 min)对产物分布和热解产物性能的影响。在530°C进行热解,平均固体停留时间为5.7分钟,每反应器面积的氮气体积流量为0.074 m〜3(STP)m〜(-2)s〜(-1)(在0°C下测量)和1.01·10〜5 Pa)。实验结果表明,焙干预处理会影响热解液体产品,尽管它不能改善液体的均质性。具体地说,它降低了在热解步骤中获得的水和液态水相的产率,特别是在最苛刻的条件下进行焙烧之后,但是对获得的液态有机相的性能影响不大。两步法产生的气体和有机化合物的累积产率与一步法热解获得的产率没有区别。

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