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Heat transfer of bio-oil in a direct contact heat exchanger during condensation

机译:凝结过程中生物油在直接接触式热交换器中的传热

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摘要

Rapid quenching of volatiles in fast pyrolysis is important for achieving high yield and quality of the bio-oil product, but few studies have examined the condensation of volatiles and their related heat exchangers. Accordingly, we have studied the condensation characteristics of volatiles by varying heat transfer conditions in a direct contact heat exchanger. As the mass flow rate ratio of quenching oil to pyrolysis gas increased, the heat transfer rate and yield of bio-oil increased. The heat transfer rate and yield of bio-oil reached a maximum value at an intermediate air-to-quenching oil mass flow rate ratio. Additionally, the heat transfer rate and yield of bio-oil decreased as the temperature of the quenching oil increased. Experiments were also conducted to derive an empirical relationship for the volumetric heat transfer coefficient for direct contact heat exchangers.
机译:快速裂解过程中挥发物的快速淬灭对于获得高产率和高质量的生物油产品很重要,但是很少有研究检查挥发物及其相关热交换器的冷凝。因此,我们通过改变直接接触式换热器中的传热条件来研究挥发物的冷凝特性。随着淬火油与热解气体的质量流量比增加,传热速率和生物油的产率增加。在空气与淬火油的质量流量比为中间值的情况下,生物油的传热速率和产率达到最大值。另外,随着淬火油温度的升高,传热速率和生物油的产率降低。还进行了实验以得出直接接触式热交换器的体积传热系数的经验关系。

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