4.6 Article

Evaluation of Dimethyl Carbonate as Alternative Biofuel. Performance and Smoke Emissions of a Diesel Engine Fueled with Diesel/Dimethyl Carbonate/Straight Vegetable Oil Triple Blends

期刊

SUSTAINABILITY
卷 13, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/su13041749

关键词

dimethyl carbonate; straight vegetable oils; castor oil; sunflower oil; biofuel; oxygenated fuel; diesel engine; soot emissions; smoke opacity; power output

资金

  1. AEI/FEDER, EU [MINECO-ENE2016-81013-R]
  2. MICIIN [PID2019-104953RB-100]
  3. Consejeria de Transformacion Economica, Industria, Conocimiento y Universidades de la Junta de Andalucia (UCO-FEDER) [1264113-R, P18-RT-4822]
  4. FEDER Funds

向作者/读者索取更多资源

The research evaluates the use of dimethyl carbonate as a solvent for vegetable oils to produce biofuels that can replace fossil diesel. Experimental results show that these biofuels can replace up to 40% of fossil diesel, achieving optimal performance and emissions.
Dimethyl carbonate (DMC) is an interesting blending component for diesel fuel (D) owing to the high oxygen content (53 wt.%) and the absence of C-C bonds in its structure. Moreover, DMC can be produced from CO2 and methanol, which provides a renewable way to reduce anthropogenic CO2. This research has been addressed to assess the use of DMC as a solvent of sunflower oil (SO) and castor oil (CO), with the purpose of obtaining biofuels that can replace fossil diesel as much as possible. The blending of DMC with straight vegetable oils (SVOs) reduces their high viscosity, allowing their usage as drop-in biofuels without chemical treatments. Based on viscosity requirements of European Standard EN 590, the optimal DMC/SVO double blends have been tested as direct biofuels by themselves or mixed with fossil diesel in D/DMC/SVO triple blends. Relevant physico-chemical properties of fuels have been analyzed. Engine parameters such as power output, brake-specific fuel consumption (BSFC) and soot emissions have been studied to determine the effect of new biofuels on efficiency of a diesel engine. An outstanding engine efficiency is shown by the studied D/DMC/SVO triple blends, either with SO or CO as an SVO. The low calorific value of DMC is the main reason for reduction in power and BSFC, as the amount of diesel in the triple blends is reduced. Experimental results demonstrate that the use of these biofuels allows the replacement of up to 40% of fossil diesel, without compromising the power and BSFC of the engine, and accomplishing optimal cold flow properties and a marked drop in exhaust emissions.

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