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Role of temperature on gasification performance and tar composition in a fountain enhanced conical spouted bed reactor

机译:温度对喷泉式锥形喷头反应器中气化性能和焦油组成的影响

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The steam gasification of sawdust was carried out in a bench scale plant fitted with a fountain confined conical spouted bed reactor and a nonporous draft tube, and using olivine as primary catalyst. The effect temperature (in the 800-900 degrees C range) had on product distribution (gas, tar and char) and composition was studied. Not only did temperature have a positive effect on the gas yield and carbon conversion, but it also played a crucial role in tar removal, as its concentration fell from 49.2 g NM-3 (on a dry basis) at 800 degrees C to 6.7 g Nm(-3) operating at 900 degrees C. Moreover, temperature also enhanced the hydrogen yield of the gas, recording a value of 7.28 wt% at 900 degrees C. Regarding tar formation and its evolution pathway, as gasification temperature was increased the tar composition (analyzed by GC/MS, FTIR and simulated distillation techniques) evolved to more stable aromatic compounds (of higher molecular weight), such as naphthalene or fluoranthene, with heterocyclic or light aromatic compounds being almost absent at 900 degrees C.
机译:锯末的蒸汽气化是在一个台式规模的装置中进行的,该装置配有喷泉密闭锥形喷头床反应器和无孔引流管,并使用橄榄石作为主要催化剂。研究温度(在800-900摄氏度范围内)对产品分布(气体,焦油和焦炭)和组成的影响。温度不仅对气体产率和碳转化率有积极影响,而且在焦油去除方面也起着关键作用,因为它的浓度从800摄氏度下的49.2克NM-3(以干基计)降至6.7克Nm(-3)在900摄氏度下运行。此外,温度还提高了气体的氢气产率,在900摄氏度下记录了7.28 wt%的值。关于焦油形成及其逸出途径,随着气化温度的升高,焦油组成(通过GC / MS,FTIR和模拟蒸馏技术进行分析)演变成更稳定的(具有更高分子量)芳族化合物,例如萘或荧蒽,而在900摄氏度下几乎不存在杂环或轻质芳族化合物。

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