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Upgrading Bio-oil through Emulsification with Biodiesel: Mixture Production

机译:通过生物柴油的乳化升级生物油:混合物生产

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摘要

There has been increasing interest in alternative fuels made from biomass. which is abundant and renewable. Bio-oil produced by fast pyrolysis of biomass is highly viscous and acidic and has a high water content. To overcome these problems as a fuel, a method of emulsifying bio-oil with biodiesel has been investigated. In the present study, various effects on the mixture stability have been examined. The optimal conditions for obtaining a stable mixture between bio-oil and biodiesel are with an octanol surfactant dosage of 4% by volume, initial bio-oil/biodiesel ratio of 4:6 by volume, stirring intensity of 1200 rpm, mixing time of 15 min, and emulsifying temperature at 30 ℃. Furthermore, selected fuel properties, such as viscosity, density, water content, acid number, and average molecular weight, are measured for characterizing the bio-oil/biodiesel mixture. Therrnogravimetric analysis (TGA) has been used to further evaluate the thermal properties. Data from the TGA and Fourier transform infrared (FTIR) analyses confirm the presence or absence of a certain group of chemical compounds in the mixture. The kinetic parameters for the thermal decomposition of the bio-oil, bio-oil/biodiesel-rich phase, and pyrolytic lignin-rich phase were obtained from the TGA experiments.
机译:人们对由生物质制成的替代燃料的兴趣日益增加。丰富而可再生。通过快速热解生物质产生的生物油具有很高的粘性和酸性,并且具有很高的水含量。为了克服作为燃料的这些问题,已经研究了用生物柴油乳化生物油的方法。在本研究中,已经检查了对混合物稳定性的各种影响。获得生物油和生物柴油之间稳定混合物的最佳条件是辛醇表面活性剂的用量为4%(体积),初始生物油/生物柴油的比例为4:6(体积),搅拌强度为1200 rpm,混合时间为15分钟,乳化温度在30℃。此外,测量选定的燃料性质,例如粘度,密度,水含量,酸值和平均分子量,以表征生物油/生物柴油混合物。热重分析(TGA)已用于进一步评估热性能。来自TGA和傅里叶变换红外(FTIR)分析的数据证实了混合物中是否存在某些化学化合物。从TGA实验中获得了生物油,生物油/生物柴油富集相和热解木质素富集相热分解的动力学参数。

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