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Performance and emission characteristics of a diesel engine fueled with functionalized multi-wall carbon nanotubes (MWCNTs-OH) and diesel–biodiesel–bioethanol blends

机译:用官能化多壁碳纳米管(MWCNTS-OH)和柴油机 - 生物甲醇共混物(MWCNTS-OH)燃料的柴油发动机的性能和排放特性

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Biodiesel is one of the renewable fuels which is similar to diesel fuel. Biodiesel fuel has more oxygen than diesel fuel and this leads to better combustion and thereby, decreases PM, CO, and UHC emissions. On the other hand, biodiesel has a higher viscosity and density than diesel fuel which increases the BSFC, NO x and smoke emissions. One of the ways to solve this problem is using catalysts in the fuel which decreases the viscosity and density of the blend and as a result reduces the smoke and NO x emissions compared to the diesel fuels. Carbon nanotubes are one of the nanoparticles which due to their unique properties such as aspect ratio (length-to-diameter? ratio), mechanical strength and high thermal and electrical conductivity are considered as a topic of interest by researchers. Due to their hydrophobic surface, carbon nanotubes tend to accumulate. For better dispersion in solution, their surface is amended with different functional groups. In this study, the diesel–biodiesel fuel was prepared with 5% biodiesel and 95% diesel. The MWCNTs-OH with concentrations of 30, 60, and 90 ppm were mixed with bio-ethanol-based solution at concentrations of E4 and E8. The performance and emissions were recorded at the engine speeds of 1800, 2100, and 2400 rpm and full load. The results showed that, addition of the additive to diesel+biodiesel+ethanol blends (B5+E4 and B5+E8) improved the torque and power and decreased the BSFC. The emissions of UHC and CO also decreased but NO x emission increased.
机译:生物柴油是可再生燃料之一,类似于柴油燃料。生物柴油燃料具有比柴油燃料更多的氧气,这导致更好的燃烧,从而降低PM,CO和UHC排放。另一方面,生物柴油具有比柴油燃料更高的粘度和密度,该柴油燃料增加了BSFC,NO X和烟雾排放。解决这个问题的方法之一是在燃料中使用催化剂,这降低了混合物的粘度和密度,并且结果减少了与柴油燃料相比的烟雾和无x排放。碳纳米管是纳米颗粒之一,由于它们独特的性质,例如纵横比(长度至直径λ比),机械强度和高热和电导率被认为是研究人员的兴趣的主题。由于它们的疏水表面,碳纳米管倾向于积聚。为了更好地在溶液中进行分散,将它们的表面用不同的官能团进行。在该研究中,用5%生物柴油和95%柴油制备柴油机 - 生物柴油燃料。浓度为30,60和90ppm的MWCNTS-OH以E4和E8的浓度与基于生物乙醇的溶液混合。在1800,2100和2400rpm的发动机速度下记录了性能和排放和满载。结果表明,向柴油+生物柴油+乙醇共混物(B5 + E4和B5 + E8)加入添加剂,提高了扭矩和功率并降低了BSFC。 UHC和CO的排放也减少但没有X排放增加。

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