Page 436 - Advances in Eco-Fuels for a Sustainable Environment
P. 436
Engine modification for alternative fuels usage in diesel engine 389
[18] Rakopoulos DC. Combustion and emissions of cottonseed oil and its bio-diesel in blends
with either n-butanol or diethyl ether in HSDI diesel engine. Fuel 2013;05:603–13.
[19] Bhale PV, Deshpande NV, Thombre SB. Improving the low temperature flow properties
of biodiesel fuel. Renew Energy 2009;34:794–800.
[20] Jeong GT, Park JH, Park SH, Park DH. Estimating and improving cold filter plugging
points by blending biodiesels with different fatty acid contents. Biotechnol Bioprocess
Eng 2008;13:505–10.
[21] Gomasta S, Mahla SK. An experimental investigation of ethanol blended diesel fuel on
engine performance and emission of a diesel engine. Int J Emerg Technol 2012;3:74–9.
[22] Imtenan S, AshrafurRahman SM, Masjuki HH, Varman M, Kalam MA. Effect of dynamic
injection pressure on performance, emission and combustion characteristics of a compres-
sion ignition engine. Renew Sust Energ Rev 2015;52:1205–11.
[23] Rajesh Kumar B, Saravanan S, Rana D, Anish V, Nagendran A. Effect of a sustainable
biofuel-n-octanol-on the combustion, performance and emissions of a DI diesel engine
under naturally aspirated and exhaust gas recirculation (EGR) modes. Energy Convers
Manag 2016;118:275–86.
[24] Moreau A, Martı ´n MC, Chamorro CR, Segovia JJ. Thermodynamic characterization of
second generation biofuels: vapour liquid equilibria and excess enthalpies of the binary
mixtures 1-pentanol and cyclohexane or toluene. Fluid Phase Equilib 2012;317:127–31.
[25] Sivalakshmi S, Balusamy T. Effects of oxygenated organic compounds-neem oil blends
on the performance and exhaust emissions of a DI diesel engine. SAE Tech Pap 2011;
2011-05-1334.
[26] Hansen AC, Kyritsis DC, Lee CF. Characteristics of biofuels and renewable fuel stan-
dards. In: Biomass to biofuels: strategies for global industries. Blackwell Publishing
Ltd; 2010. p. 1–26.
[27] Atmanli A, Yuksel B, Ileri E, Karaoglan AD. Response surface methodology based optimi-
zation of diesel-n-butanol-cotton oil ternary blends ratios to improve engine performance
and exhaust emission characteristics. Energy Convers Manag 2015;90:383–94.
[28] Ileri E. Experimental study of 2-ethylhexyl nitrate effects on engine performance and
exhaust emissions of a diesel engine fuelled with n-butanol or 1-pentanol diesel–sunflower
oil blends. Energy Convers Manag 2016;118:320–30.
[29] Agarwal AK, Srivastava DK, Dhar A, Maurya RK, Shukla PC, Singh AP. Effect of fuel
injection timing and pressure on combustion, emissions and performance characteristics of
a single cylinder diesel engine. Fuel 2013;111:374–83.
[30] Gumus M, Sayin C, Canakci M. The impact of fuel injection pressure on the exhaust emis-
sions of a direct injection diesel engine fuelled with biodiesel-diesel fuel blends. Fuel
2012;95:486–94.
[31] Agarwal AK, Dhar A, Srivastava DK, Maurya RK, Akhilendra Singh AP. Effect of fuel
injection pressure on diesel particulate size and number distribution in a CRDI single cyl-
inder research engine. Fuel 2013;107:84–9.
[32] Hwang J, Qi D, Jung Y, Bae C. Effect of injection pressures on the combustion and emis-
sion characteristics in a common rail direct injection diesel engine fuelled with waste
cooking oil biodiesel. Renew Energy 2014;63:9–17.
[33] Sayin C, Gumus M, Canakci M. Effect of fuel injection pressure on the injection, combus-
tion and performance characteristics of a DI diesel engine fuelled with canola oil methyl
esters-diesel fuel blends. Biomass Bioenergy 2012;46:435–46.
[34] Ryu K. Effects of pilot injection pressure on the combustion and emissions characteristics
in a diesel engine using biodiesel–CNG dual fuel. Energy Convers Manag 2013;
76:506–16.