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首页> 外文期刊>Fuel >The role of rhodium sulfate on the bond angles of triglyceride molecules and their effect on the combustion characteristics of crude jatropha oil droplets
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The role of rhodium sulfate on the bond angles of triglyceride molecules and their effect on the combustion characteristics of crude jatropha oil droplets

机译:硫酸铑对甘油三酯分子键角的作用及其对粗麻醉油液滴燃烧特性的影响

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摘要

The alternative fuels were developed from a blended fuel with crude jatropha oil (CJO) and rhodium sulfate as a homogeneous combustion catalyst. In this study, the performances of blended fuel droplets were investigated experimentally under normal gravity conditions. Combustion characteristics were observed by igniting droplets at the thermocouple junction, and the droplet combustion was observed using a high-speed camera. To this end, understanding how the molecular structure (bonding and angular properties of triglyceride carbon chains) of the fuel affects the combustion characteristics is crucial. The results showed that CJO had 53 rotatable and 111 nonrotatable bonds. This makes CJO more rigid and nonpolar. The interaction of the catalyst with triglycerides changes the molecular chain bond angle so that the atoms get extra space to move, thereby increasing the electron mobility. This makes the fuel molecule more reactive so that the viscosity and flash point are reduced and the fuel is easily ignited. Moreover, the results also showed that the catalyst improved combustion performance, where droplet ignition times were shorter at higher temperatures, and fuel droplets had higher burning rates and combustion temperatures.
机译:替代燃料是从具有粗麻醉油(CJO)的混纺燃料和硫酸铑作为均匀燃烧催化剂。在该研究中,在正常重力条件下实验研究了混合燃料液滴的性能。通过在热电偶结的液滴中点燃液滴观察燃烧特性,使用高速相机观察液滴燃烧。为此,了解燃料的分子结构(甘油三酯碳链的粘合和角度)如何影响燃烧特性至关重要。结果表明,CJO具有53个可旋转和111个不可变的键。这使得CJO更加严格和非极性。催化剂与甘油三酯的相互作用改变了分子链键角,使得原子得到额外的空间来移动,从而增加电子迁移率。这使得燃料分子更加活跃,使得粘度和闪点减小并且燃料容易被点燃。此外,结果还表明,催化剂改善燃烧性能,其中液滴点火时间在较高温度下较短,燃料液滴具有更高的燃烧率和燃烧温度。

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