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首页> 外文期刊>Waste Management >Gasification of poultry litter in a lab-scale bubbling fluidised bed reactor: Impact of process parameters on gasifier performance and special focus on tar evolution
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Gasification of poultry litter in a lab-scale bubbling fluidised bed reactor: Impact of process parameters on gasifier performance and special focus on tar evolution

机译:在实验室规模的鼓泡流化床反应器中对家禽垃圾进行气化:工艺参数对气化炉性能的影响以及对焦油生成的特别关注

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摘要

Poultry litter (PL) gasification was experimentally investigated using a lab-scale bubbling fluidised bed reactor. Characterisation of the gasification process was performed in terms of yields and compositions of both gas and tar, lower calorific value (LCV) of the product gas, cold gas efficiency (CGE) and carbon conversion efficiency (CCE). Experiments were carried out at different temperatures (700-750 degrees C) and equivalence ratios (ERs). The effect of gasifier temperature at a constant ER of 0.21 shows that an increase in temperature improved the gasification process performance whilst the total tar content decreased, implying that higher temperature enhances the conversion of biomass to product gas. The total gas yield increased from 0.93 to 1.24 N2-free m(3)/kg(feedstock-daf). LCV increased from 3.38 MJ/m(3) to 4.2 MJ/m(3), while the tar content was reduced by 24% (5.6-4.25 g(tar)/kg(feedstock-daf)). The detailed analyses of tar compositions reveal that styrene and xylenes were the most abundant compounds in the secondary tar group. Moreover, naphthalene and 1, 2-methyl naphthalene were the dominant compounds found in tertiary polycyclic aromatic hydrocarbons (PAH) and alkyl tertiary groups, respectively. Furthermore, at the highest tested temperature of 750 degrees C and ER of 0.25, bed agglomeration took place causing the shutdown of the gasifier. The defluidisation of the bed occurred due to the high ash content of PL comprising of low melting temperature alkali compounds. The results obtained from this study showed the performance and potential challenges associated with gasifying PL in a fluidised bed reactor for the combined heat and power production at farm level. Crown Copyright (C) 2019 Published by Elsevier Ltd.
机译:使用实验室规模的鼓泡流化床反应器对家禽垃圾(PL)的气化进行了实验研究。根据气体和焦油的收率和组成,产品气体的较低热值(LCV),冷气效率(CGE)和碳转化效率(CCE)进行气化过程的表征。实验是在不同的温度(700-750摄氏度)和当量比(ERs)下进行的。 ER恒定为0.21时气化炉温度的影响表明,温度的升高改善了气化过程的性能,而总焦油含量降低,这意味着较高的温度会增强生物质向产物气的转化。总气体产量从0.93增加到1.24无氮m(3)/ kg(给料-daf)。 LCV从3.38 MJ / m(3)增加到4.2 MJ / m(3),而焦油含量降低了24%(5.6-4.25 g(tar)/ kg(给料-daf))。对焦油成分的详细分析表明,苯乙烯和二甲苯是仲焦油组中含量最高的化合物。此外,萘和1,2-甲基萘是分别在叔多环芳烃(PAH)和烷基叔基团中发现的主要化合物。此外,在最高测试温度750摄氏度和ER为0.25时,发生了床层结块,导致气化炉关闭。床层的流化是由于PL的高灰分含量所组成的,PL包含低熔点的碱金属化合物。从这项研究中获得的结果表明,在流化床反应器中气化PL的性能和潜在的挑战涉及农场一级的热电联产。 Crown版权(C)2019由Elsevier Ltd发布。

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