Page 396 - Advances in Eco-Fuels for a Sustainable Environment
P. 396

350                              Advances in Eco-Fuels for a Sustainable Environment

          [8] Uddin SMA, Azad AK, Alam MM, Ahamed JU. Performance of a diesel engine run with
             mustard-kerosene blends. Procedia Eng 2015;105:698–704.
          [9] Azad AK, Rasul M, Giannangelo B, Islam R. Comparative study of diesel engine perfor-
             mance and emission with soybean and waste oil biodiesel fuels. Int J Autom Mech Eng
             2015;12:2866–81.
         [10] Haseeb ASMA, Sia SY, Fazal MA, Masjuki HH. Effect of temperature on tribological
             properties of palm biodiesel. Energy 2010;35(3):1460–4.
         [11] Fazal MA, Haseeb ASMA, Masjuki HH. Investigation of friction and wear characteristics
             of palm biodiesel. Energy Convers Manag 2013;67:251–6.
         [12] Mosarof MH, Kalam MA, Masjuki HH, Alabdulkarem A, Ashraful AM, Arslan A,
             Rashedul HK, Monirul IM. Optimization of performance, emission, friction and wear
             characteristics of palm and Calophyllum inophyllum biodiesel blends. Energy Convers
             Manag 2016;118:119–34.
         [13] Fazal MA, Haseeb ASMA, Masjuki HH. Comparative corrosive characteristics of petro-
             leum diesel and palm biodiesel for automotive materials. Fuel Process Technol 2010;91
             (10):1308–15.
         [14] Azad AK, Rasul M, Khan MM, Sharma S. Macadamia biodiesel as a sustainable and alter-
             native transport fuel in Australia. Energy Procedia 2017;.
         [15] De Oliveira JJ, de Farias ACM, Alves SM. Evaluation of the biodiesel fuels lubricity using
             vibration signals and multiresolution analysis. Tribol Int 2017;109:104–13.
         [16] Azad AK, Rasul MG, Khan MMK, Sharma SC, Hazrat MA. Prospect of biofuels as an
             alternative transport fuel in Australia. Renew Sust Energ Rev 2015;43:331–51.
         [17] Azad AK, Ameer Uddin SM. Performance study of a diesel engine by first generation bio-
             fuel blends with fossil fuel: an experimental study. J Renew Sustain Energy 2013;5
             (1):01311e8.
         [18] Azad AK. Biodiesel from mandarin seed oil: a surprising source of alternative fuel.
             Energies 2017;10(11):1689.
         [19] Azad AK, Rasul MG, Khan MMK, Sharma SC, Mofijur M, Bhuiya MMK. Prospects,
             feedstocks and challenges of biodiesel production from beauty leaf oil and castor oil: a
             nonedible oil sources in Australia. Renew Sust Energ Rev 2016;61:302–18.
         [20] Mofijur M, Rasul MG, Hyde J, Azad AK, Mamat R, Bhuiya MMK. Role of biofuel and
             their binary (diesel-biodiesel) and ternary (ethanol-biodiesel-diesel) blends on internal
             combustion engines emission reduction. Renew Sust Energ Rev 2016;53:265–78.
         [21] Bhuiya MMK, Rasul MG, Khan MMK, Ashwath N, Azad AK, Hazrat MA. Prospects of
             2nd generation biodiesel as a sustainable fuel—Part 2: properties, performance and emis-
             sion characteristics. Renew Sust Energ Rev 2016;55:1129–46.
         [22] Nabi MN, Rasul MG. Influence of second generation biodiesel on engine perform-
             ance, emissions, energy and exergy parameters. Energy Convers Manag 2018;169:
             326–33.
         [23] Zulkifli NWM, Kalam MA, Masjuki HH, Shahabuddin M, Yunus R. Wear prevention
             characteristics of a palm oil-based TMP (trimethylolpropane) ester as an engine lubricant.
             Energy 2013;54:167–73.
         [24] Syahrullail S, Wira JY, Wan Nik W, Fawwaz W. Friction characteristics of RBD palm
             olein using four-ball tribotester. In: Applied mechanics and materials. Trans Tech Publi-
             cations Inc; 2013.
         [25] Havet L, Blouet J, Valloire FR, Brasseur E, Slomka D. Tribological characteristics of
             some environmentally friendly lubricants. Wear 2001;248(1):140–6.
         [26] Maleque M, Masjuki H, Haseeb A. Effect of mechanical factors on tribological properties
             of palm oil methyl ester blended lubricant. Wear 2000;239(1):117–25.
   391   392   393   394   395   396   397   398   399   400   401