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Preparation of multipurpose bio-oil from rice husk by pyrolysis and fractional condensation

机译:稻壳热解精馏制备多功能生物油。

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A set of fixed-bed biomass pyrolysis reactor incorporated with three-stage condensation columns was constructed in this study, and the effects of pyrolysis temperature, carrier gas flow rate and condensation temperature on biomass pyrolysis products were discussed systematically. Results show that as the pyrolysis temperature increased, the yield of liquid products initially increased with a maximum yield at 550 degrees C and then decreased. When the temperatures of the three-stage condensers were 110 degrees C, 0 degrees C, and -196 degrees C, the highest yields of bio-oil in each condenser were accordingly obtained at 550 degrees C, 450 degrees C, and 500 degrees C, respectively. Carrier gas flow rate and fractional condensation temperature indicated minimal influence on the total yield of liquid products. However, fractional condensation temperature had an obvious effect on the yields of the fractions. Gas chromatography/mass spectrometry revealed that the first fraction contained abundant phenolic compounds, the second fraction contained medium-boiling compounds with relatively high concentrations of water, acids, and ketones and the last fraction contained a minimal amount of hydrocarbons and water. Furthermore, higher pyrolysis temperature resulted in a higher yield of phenol products, whereas higher condensation temperature led to a higher concentration of phenols and dehydrated carbohydrates.
机译:研究建立了一套配有三级冷凝塔的固定床生物质热解反应器,系统地讨论了热解温度,载气流速和冷凝温度对生物质热解产物的影响。结果表明,随着热解温度的升高,液体产物的产率最初以550℃的最大产率增加,然后降低。当三级冷凝器的温度分别为110摄氏度,0摄氏度和-196摄氏度时,相应地在550摄氏度,450摄氏度和500摄氏度下获得每个冷凝器中最高的生物油产率。 , 分别。载气流速和冷凝分数分数表明,对液体产物的总收率影响最小。但是,分馏温度对分馏产率有明显影响。气相色谱/质谱分析表明,第一馏分包含大量的酚类化合物,第二馏分包含具有相对较高浓度的水,酸和酮的中沸点化合物,最后一个馏分包含最小量的烃和水。此外,较高的热解温度导致较高的酚产物收率,而较高的缩合温度导致较高的酚和脱水碳水化合物浓度。

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