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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fast pyrolysis of potassium impregnated poplar wood and characterization of its influence on the formation as well as properties of pyrolytic products
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Fast pyrolysis of potassium impregnated poplar wood and characterization of its influence on the formation as well as properties of pyrolytic products

机译:杨木浸渍钾的快速热解及其对热解产物的形成和性能的影响

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TGA results indicated that the maximum decomposition temperature of the biomass decreased from 373.9 to 359.0℃ with increasing potassium concentration. For fast pyrolysis, char yield of potassium impregnated biomass doubled regardless of pyrolysis temperature compared to demineralized one. The presence of potassium also affected bio-oil properties. Water content increased from 14.4 to 19.7 wt% and viscosity decreased from 34 to 16.2 cSt, but the pH value of the bio-oil remained stable. Gas chromatography/mass spectroscopy (GC/MS) analysis revealed that potassium promoted thermochemical reactions, thus causing a decrease of levoglucosan and an increase of small molecules and lignin- derived phenols in bio-oil. Additionally, various forms of aromatic hydrocarbons, probably derived from lignins, were detected in non-condensed pyrolytic gas fractions.
机译:热重分析结果表明,随着钾浓度的升高,生物质的最高分解温度从373.9℃降至359.0℃。为了进行快速热解,与热解温度相比,无论热解温度如何,浸渍钾的生物量的焦炭产量都增加了一倍。钾的存在也影响了生物油的特性。含水量从14.4 wt%增加到19.7 wt%,粘度从34 cSt减少到16.2 cSt,但是生物油的pH值保持稳定。气相色谱/质谱(GC / MS)分析表明,钾促进了热化学反应,从而导致生物油中左葡聚糖的含量下降,小分子和木质素衍生的酚含量增加。另外,在未冷凝的热解气体馏分中检测到各种形式的可能源自木质素的芳香烃。

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