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Comparison of steam reforming and partial oxidation of biomass pyrolysis tars over activated carbon derived from waste tire

机译:废轮胎活性炭对生物质热解焦油进行蒸汽重整和部分氧化的比较

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The main objective of this work was to analyze catalytic tar destruction in order to compare the performance of two thermochemical processes, partial oxidation and steam reforming. Activated carbon, derived from char obtained in fast pyrolysis of waste tires, was used as a catalyst. The efficiency of this catalyst was analyzed with respect to its ability to decompose tar-forming hydrocarbons at high temperatures, and the optimal conditions of the process were determined. Results of catalytic steam reforming and partial oxidation of real tars from biomass pyrolysis are presented in this article. Tar destruction was performed in a fixed bed reactor at temperatures from 700 °C to 900 =C, with the steam-to-carbon ratio (H2O/C) from 0 to 1, air equivalence ratio (ER) from 0 to 0.5 at a constant space velocity and the initial concentration of tars 21.1 ± 1.89 g/m~3. The thermal destruction of tars was found to be most intensive in terms of both tar destruction and hydrogen gas production when using steam reforming at 900 °C and H2O/C= 1. Under these conditions, an almost complete conversion of tars was achieved, with benzene as the only remainder at a concentration of 0.019 g/m~3.
机译:这项工作的主要目的是分析催化焦油的破坏,以比较两种热化学过程(部分氧化和蒸汽重整)的性能。废轮胎的快速热解过程中得到的焦炭衍生出活性炭,用作催化剂。就该催化剂在高温下分解焦油形成烃的能力进行了分析,并确定了该工艺的最佳条件。本文介绍了生物质热解过程中催化蒸汽重整和部分焦油氧化的结果。在固定床反应器中于700°C至900 = C的温度下进行焦油破坏,蒸汽碳比(H2O / C)为0至1,空气当量比(ER)为0至0.5。恒定的空速和焦油的初始浓度为21.1±1.89 g / m〜3。当在900°C和H2O / C = 1的条件下使用蒸汽重整时,发现焦油的热破坏在焦油破坏和氢气产生方面是最强烈的。在这些条件下,焦油几乎可以完全转化,苯是唯一的残留物,浓度为0.019 g / m〜3。

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