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Catalytic pyrolysis of rice husk by mixing with zinc oxide: Characterization of bio-oil and its Theological behavior

机译:与氧化锌混合催化稻壳热解:生物油的表征及其流变行为

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The experiments on the rice husk pyrolysis were performed in a fixed-bed reactor to produce bio-oil. The effects of the different operation factors such as pyrolysis temperature sweeping gas (N2) flow rates and ZnO catalyst on the yields of three products and the characteristics of bio-oil were investigated. The maximum bio-oil yield of 49.91% was obtained at 550 °C pyrolysis temperature with a heating rate of 25 °C/min and nitrogen flow rate of 150 mL/min. The bio-oils yielded with and without a catalyst were characterized by FT-IR and GC/MS. The results showed that the main identified compounds of bio-oils were phenols, phenol derivatives and long-chain aliphatic compounds. It was observed that the use of catalyst decreased the bio-oil yields, but enhanced the small molecular compound yields and decreased the amount of oxygenated groups in bio-oils. A series of rheological tests were performed for the two kinds of bio-oil with cone and plate rhe-ometer. The results indicated that both types of bio-oil were typical non-Newtonian and strongly shear thinning liquids in the flow behavior. The viscosity of the ZnO-treated bio-oil was significantly lower than that of the bio-oil without any catalyst.
机译:在固定床反应器中进行了稻壳热解实验,以生产生物油。研究了热解温度吹扫气(N2)流量和ZnO催化剂等不同操作因素对三种产物收率和生物油特性的影响。在550°C的热解温度下,以25°C / min的加热速率和150 mL / min的氮气流速获得49.91%的最大生物油产率。用FT-IR和GC / MS表征在有催化剂和无催化剂下产生的生物油。结果表明,生物油的主要鉴定化合物为酚,酚衍生物和长链脂肪族化合物。观察到催化剂的使用降低了生物油的产率,但是提高了小分子化合物的产率并且减少了生物油中的氧化基团的量。用锥板式流变仪对两种生物油进行了一系列流变测试。结果表明,两种生物油在流动特性上都是典型的非牛顿和强剪切稀化液体。 ZnO处理过的生物油的粘度明显低于没有任何催化剂的生物油的粘度。

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