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Catalytic upgrading pyrolysis of pine sawdust for bio-oil with metal oxides

机译:金属氧化物催化降解松木屑热解生物油

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The catalytic upgrading pyrolysis of pine sawdust was performed at 500 A degrees C with various metal oxides to improve the quality of the bio-oil. The aim of this study was to investigate the potential of the metal oxides instead of traditional zeolites for catalytic upgrading pyrolysis with the analysis of Gas Chromatograph/Mass Spectrometer. In this study, the used catalysts were Calcium-oxide, Magnesium oxide, Titanium dioxide, and Zeolite (Si/Al = 80). The influence of catalysts on products yields and compositions were investigated. Most metal oxides can enhance the bio-gas with the bio-oil yields decreased. The metal oxides led to a decrease of Acids, Aldehydes, Ketones and an increase of Furfural, Cresols, Catechols in Furans and Phenolics. Among the catalysts, the MgO catalysts was the most effective to convert the high molecular into lights ones (6.65% Cresols) with yield of 20.48% for Furfural. The deoxygenation reaction in bio-oil was suggested to convert oxygenated compounds into the low molecular weight of the materials (6.39% Guaiacols). Thus, the used metal oxides can improve the quality of bio-oil by decreasing undesirable compounds as well as increasing the desirable compounds with low oxygen contents via deoxygenation reaction.
机译:在500 A的温度下,使用各种金属氧化物对松木屑进行催化提质热解,以提高生物油的质量。这项研究的目的是通过气相色谱仪/质谱仪的分析来研究金属氧化物代替传统沸石催化升级热解的潜力。在这项研究中,使用的催化剂为氧化钙,氧化镁,二氧化钛和沸石(Si / Al = 80)。研究了催化剂对产物收率和组成的影响。大多数金属氧化物可以增强生物气,降低生物油的产量。金属氧化物导致呋喃和酚类中的酸,醛,酮减少,糠醛,甲酚,儿茶酚增加。在这些催化剂中,MgO催化剂最有效地将高分子转化为轻质(6.65%的甲酚),糠醛的收率为20.48%。建议在生物油中进行脱氧反应,将含氧化合物转化为低分子量材料(6.39%愈创木酚)。因此,所使用的金属氧化物可以通过减少不合需要的化合物以及通过脱氧反应增加具有低氧含量的合乎需要的化合物来改善生物油的质量。

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