Development of a test method for distillation of diesel-biodiesel-alcohols mixtures at reduced pressure

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Abstract

Increased environmental awareness and depletion of fossil petroleum resources are driving the automotive industry to seek out and use alternative fuels. For instance, the biofuel is a major renewable energy source to supplement declining fossil fuel resources. The addition of alcohols like methanol and ethanol is practical in biodiesel blends due to its miscibility with the pure biodiesel. Alcohols also improve physico-chemical properties of biodiesel blends, which lead to improved combustion efficiency. Proper volatility of fuels is critical to the operation of internal combustion engines with respect to both performance and emissions. Volatility may be characterised by various measurements, the most common of which are vapour pressure, distillation and the vapour/liquid ratio. The presence of ethanol or other oxygenates may affect these properties and, as a result, performance and emissions, as well. However, in the case of diesel-biodiesel-alcohols mixtures, the variance of component volatility makes difficult the analysis of the overall volatility. Thus, the paper presents an experimental method of distilling diesel-biodiesel-alcohols mixtures by adjusting the boiler pressure of an i-Fischer Dist equipment.

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APA

Niculescu, R., Iosub, I., Clenci, A., Zaharia, C., & Iorga-Simǎn, V. (2017). Development of a test method for distillation of diesel-biodiesel-alcohols mixtures at reduced pressure. In IOP Conference Series: Materials Science and Engineering (Vol. 252). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/252/1/012083

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