A fundamental investigation into chemical effects of carbon dioxide on intermediate temperature oxidation of biodiesel surrogate with laminar flow reactor

A fundamental investigation into chemical effects of carbon dioxide on intermediate temperature oxidation of biodiesel surrogate with laminar flow reactor
复制标题

用层流反应器研究二氧化碳对生物柴油替代品中温氧化的化学效应

DOI:
10.1016/j.energy.2017.09.050
复制
发表时间:
2017
期刊:
影响因子:
9
通讯作者:
Huang Zhen
Huang Zhen
中科院分区:
工程技术1区
文献类型:
--
作者:
Li Ang;Zhu Lei;Deng Zhiwei;Gao Zhan;Huang Zhen

文献摘要

被引文献

相似文献

The chemical effects of carbon dioxide on the oxidation of biodiesel surrogate, methyl butanoate (MB) were investigated experimentally in the SJTU laminar flow reactor at equivalence ratios of 1.5, 1 and 0.5, at atmospheric pressure. Generally, there are three kinds of effects from carbon dioxide (CO2): thermal, dilution and chemical effects. In this study, argon was replaced by CO2as the dilute gas as a way to isolate the chemical effects by keeping the factors of temperature profile and dilution ratio constant. Therefore, the differences in concentrations of species at the exit from the flow reactor could be attributed to the chemical effects of CO2. Good agreement was found between the experimental and the computational results. The chemical effects were classified into two types. First, there was the radical factor, by which the reaction CO2+ H = OH + CO played a significant role in the oxidation of MB. In CO2atmosphere, radical factors led to the reduction in reactivity and suppressed the decomposition of MB. The second effect was the collision factor, which derived from the high frequency of third-body collisions of CO2. This collision factor contributed to the formation of carbon monoxide and ethane. Moreover, in the combustion of biodiesel engine with EGR, pure chemical effects of CO2addition decreased the concentration of acetylene as well as suppressed formation of larger PAHs.