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Reviews

Status of biofuel in India with production and performance characteristics: a review

ORCID Icon, , , & ORCID Icon
Pages 61-77 | Received 27 Nov 2018, Accepted 15 May 2019, Published online: 20 Jun 2019

References

  • Abdalla, I. E. 2018. “Experimental Studies for the Thermo-Physiochemical Properties of Biodiesel and its Blends and the Performance of Such Fuels in a Compression Ignition Engine.” Fuel 212: 638–655.
  • Akhtar, M. K., H. Dandapani, K. Thiel, and P. R. Jones. 2015. “Microbial Production of 1-Octanol: a Naturally Excreted Biofuel with Diesel-Like Properties.” Metabolic Engineering Communications 2: 1–5.
  • Algayyim, S. J. M., A. P. Wandel, T. Yusaf, and S. Al-Lwayzy. 2018. “Butanol–Acetone Mixture Blended with Cottonseed Biodiesel: Spray Characteristics Evolution, Combustion Characteristics, Engine Performance and Emission.” Proceedings of the Combustion Institute, doi:https://doi.org/10.1016/j.proci.2018.08.035.
  • Algayyim, S. J. M., A. P. Wandel, T. Yusaf, S. Al-Lwayzy, and I. Hamawand. 2018. “Impact of Butanol-Acetone Mixture as a Fuel Additive on Diesel Engine Performance and Emissions.” Fuel 227: 118–126. doi:https://doi.org/10.1016/j.fuel.2018.04.091.
  • Ansari, N. A., A. Sharma, and Y. Singh. 2018. “Performance and Emission Analysis of a Diesel Engine Implementing Polanga Biodiesel and Optimization Using Taguchi Method.” Process Safety and Environmental Protection 120: 146–154. doi:https://doi.org/10.1016/j.psep.2018.09.009.
  • Antolini, E. 2018. “Photo-assisted Methanol Oxidation on Pt-TiO2 Catalysts for Direct Methanol Fuel Cells: A Short Review.” Applied Catalysis B: Environmental 237: 491–503. doi:https://doi.org/10.1016/j.apcatb.2018.06.029.
  • Antunes, F. A. F., A. K. Chandel, L. P. Brumano, R. Terán Hilares, G. F. D. Peres, L. E. S. Ayabe, and S. S. Da Silva. 2018. “A Novel Process Intensification Strategy for Second-Generation Ethanol Production From Sugarcane Bagasse in Fluidized bed Reactor.” Renewable Energy 124: 189–196. doi:https://doi.org/10.1016/j.renene.2017.06.004.
  • Armas, O., R. García-Contreras, and Á Ramos. 2012. “Pollutant Emissions From Engine Starting with Ethanol and Butanol Diesel Blends.” Fuel Processing Technology 100: 63–72.
  • Ashok, B., K. Nanthagopal, V. Anand, K. M. Aravind, A. K. Jeevanantham, and S. Balusamy. 2019. “Effects of n-Octanol as a Fuel Blend with Biodiesel on Diesel Engine Characteristics.” Fuel 235: 363–373. doi:https://doi.org/10.1016/j.fuel.2018.07.126.
  • Atmanli, A. 2016. “Effects of a Cetane Improver on Fuel Properties and Engine Characteristics of a Diesel Engine Fueled with the Blends of Diesel, Hazelnut oil and Higher Carbon Alcohol.” Fuel 172: 209–217.
  • Atmanli, A., E. Ileri, and N. Yilmaz. 2016. “Optimization of Diesel–Butanol–Vegetable Oil Blend Ratios Based on Engine Operating Parameters.” Energy 96: 569–580. doi:https://doi.org/10.1016/j.energy.2015.12.091.
  • Atmanli, A., and N. Yilmaz. 2018. “A Comparative Analysis of n-Butanol/Diesel and 1-Pentanol/Diesel Blends in a Compression Ignition Engine.” Fuel 234: 161–169. doi:https://doi.org/10.1016/j.fuel.2018.07.015.
  • Balat, M., and H. Balat. 2008. “A Critical Review of Bio-Diesel as a Vehicular Fuel.” Energy Conversion and Management 49 (10): 2727–2741.
  • Bharti, A., and T. Banerjee. 2016. “Reactive Force Field Simulation Studies on the Combustion Behavior of n-Octanol.” Fuel Processing Technology 152: 132–139.
  • Bonfim-Rocha, L., M. L. Gimenes, S. H. Bernardo de Faria, R. O. Silva, and L. J. Esteller. 2018. “Multi-objective Design of a New Sustainable Scenario for bio-Methanol Production in Brazil.” Journal of Cleaner Production 187: 1043–1056. doi:https://doi.org/10.1016/j.jclepro.2018.03.267.
  • Campos-Fernández, J., J. M. Arnal, J. Gómez, and M. P. Dorado. 2012. “A Comparison of Performance of Higher Alcohols/Diesel Fuel Blends in a Diesel Engine.” Applied Energy 95: 267–275.
  • Can, Ö, I. Celikten, and N. Usta. 2004. “Effects of Ethanol Addition on Performance and Emissions of a Turbocharged Indirect Injection Diesel Engine Running at Different Injection Pressures.” Energy Conversion and Management 45 (15-16): 2429–2440.
  • Chauhan, B. S., R. K. Singh, H. Cho, and H. Lim. 2016. “Practice of Diesel Fuel Blends Using Alternative Fuels: a Review.” Renewable and Sustainable Energy Reviews 59: 1358–1368.
  • Chen, H., X. Su, J. He, and B. Xie. 2019. “Investigation on Combustion and Emission Characteristics of a Common Rail Diesel Engine Fueled with Diesel/n-Pentanol/Methanol Blends.” Energy 167: 297–311. doi:https://doi.org/10.1016/j.energy.2018.10.199.
  • Chen, Z., Z. Wu, J. Liu, and C. Lee. 2014. “Combustion and Emissions Characteristics of High n-Butanol/Diesel Ratio Blend in a Heavy-Duty Diesel Engine and EGR Impact.” Energy Conversion and Management 78: 787–795.
  • Damodharan, D., A. P. Sathiyagnanam, D. Rana, S. Saravanan, B. Rajesh Kumar, and B. Sethuramasamyraja. 2018. “Effective Utilization of Waste Plastic oil in a Direct Injection Diesel Engine Using High Carbon Alcohols as Oxygenated Additives for Cleaner Emissions.” Energy Conversion and Management 166: 81–97. doi:https://doi.org/10.1016/j.enconman.2018.04.006.
  • Dash, D. P., N. Sethi, and D. P. Bal. 2018. “Is the Demand for Crude Oil Inelastic for India? Evidence from Structural VAR Analysis.” Energy Policy 118: 552–558. doi:https://doi.org/10.1016/j.enpol.2018.04.001.
  • da Silva, J. P. V., T. M. Serra, M. Gossmann, C. R. Wolf, M. R. Meneghetti, and S. M. P. Meneghetti. 2010. “Moringa Oleifera Oil: Studies of Characterization and Biodiesel Production.” Biomass and Bioenergy 34 (10): 1527–1530. doi:https://doi.org/10.1016/j.biombioe.2010.04.002.
  • Datta, A., and B. K. Mandal. 2014. “Use of Jatropha Biodiesel as a Future Sustainable Fuel.” Energy Technology & Policy 1 (1): 8–14.
  • Datta Bharadwaz, Y., B. Govinda Rao, V. Dharma Rao, and C. Anusha. 2016. “Improvement of Biodiesel Methanol Blends Performance in a Variable Compression Ratio Engine Using Response Surface Methodology.” Alexandria Engineering Journal 55 (2): 1201–1209. doi:https://doi.org/10.1016/j.aej.2016.04.006.
  • Davis, G. W., and E. T. Heil. 2000. “ The Development and Performance of a High Blend Ethanol Fueled Vehicle” : SAE Technical Paper.
  • Deep, A., N. Kumar, A. Karnwal, D. Gupta, V. Vibhanshu, A. Sharma, and J. S. Patel. 2014. “ Assessment of the Performance and Emission Characteristics of 1-Octanol/Diesel Fuel Blends in a Water Cooled Compression Ignition Engine” : SAE Technical Paper.
  • Demirbas, A. 2007. “Biodiesel from Sunflower Oil in Supercritical Methanol with Calcium Oxide.” Energy Conversion and Management 48 (3): 937–941.
  • Dhanasekaran, R., S. Ganesan, B. Rajesh Kumar, and S. Saravanan. 2019. “Utilization of Waste Cooking oil in a Light-Duty DI Diesel Engine for Cleaner Emissions Using bio-Derived Propanol.” Fuel 235: 832–837. doi:https://doi.org/10.1016/j.fuel.2018.08.093.
  • Dhanasekaran, R., V. Krishnamoorthy, D. Rana, S. Saravanan, A. Nagendran, and B. Rajesh Kumar. 2017. “A Sustainable and Eco-Friendly Fueling Approach for Direct-Injection Diesel Engines Using Restaurant Yellow Grease and n-Pentanol in Blends with Diesel Fuel.” Fuel 193: 419–431. doi:https://doi.org/10.1016/j.fuel.2016.12.030.
  • Dharma, S., H. C. Ong, H. Masjuki, A. Sebayang, and A. Silitonga. 2016. “An Overview of Engine Durability and Compatibility Using Biodiesel–Bioethanol–Diesel Blends in Compression-Ignition Engines.” Energy Conversion and Management 128: 66–81.
  • Doğan, O. 2011. “The Influence of n-Butanol/Diesel Fuel Blends Utilization on a Small Diesel Engine Performance and Emissions.” Fuel 90 (7): 2467–2472.
  • Doshi, A., S. Pascoe, L. Coglan, and T. J. Rainey. 2016. “Economic and Policy Issues in the Production of Algae-Based Biofuels: A Review.” Renewable and Sustainable Energy Reviews 64: 329–337. doi:https://doi.org/10.1016/j.rser.2016.06.027.
  • Efe, Ş, M. A. Ceviz, and H. Temur. 2018. “Comparative Engine Characteristics of Biodiesels from Hazelnut, Corn, Soybean, Canola and Sunflower Oils on DI Diesel Engine.” Renewable Energy 119: 142–151.
  • Elzahaby, A. M., M. Elkelawy, H. A.-E. Bastawissi, S. M. El_Malla, and A. M. M. Naceb. 2018. “Kinetic Modeling and Experimental Study on the Combustion, Performance and Emission Characteristics of a PCCI Engine Fueled with Ethanol-Diesel Blends.” Egyptian Journal of Petroleum 27 (4): 927–937.
  • Encinar, J., A. Pardal, and G. Martinez. 2012. “Transesterification of Rapeseed Oil in Subcritical Methanol Conditions.” Fuel Processing Technology 94 (1): 40–46.
  • Frassoldati, A., R. Grana, T. Faravelli, E. Ranzi, P. Oßwald, and K. Kohse-Höinghaus. 2012. “Detailed Kinetic Modeling of the Combustion of the Four Butanol Isomers in Premixed low-Pressure Flames.” Combustion and Flame 159 (7): 2295–2311.
  • Gautam, R., and N. Kumar. 2015. “Comparative Study of Performance and Emission Characteristics of Jatropha Alkyl Ester/Butanol/Diesel Blends in a Small Capacity CI Engine.” Biofuels 6 (3-4): 179–190. doi:https://doi.org/10.1080/17597269.2015.1068081.
  • Ghadikolaei, M. A., C. S. Cheung, and K.-F. Yung. 2018. “Study of Combustion, Performance and Emissions of Diesel Engine Fueled with Diesel/Biodiesel/Alcohol Blends Having the Same Oxygen Concentration.” Energy 157: 258–269. doi:https://doi.org/10.1016/j.energy.2018.05.164.
  • Hagos, F. Y., O. M. Ali, R. Mamat, and A. A. Abdullah. 2017. “Effect of Emulsification and Blending on the Oxygenation and Substitution of Diesel Fuel for Compression Ignition Engine.” Renewable and Sustainable Energy Reviews 75: 1281–1294. doi:https://doi.org/10.1016/j.rser.2016.11.113.
  • Hajjari, M., M. Tabatabaei, M. Aghbashlo, and H. Ghanavati. 2017. “A Review on the Prospects of Sustainable Biodiesel Production: A Global Scenario with an Emphasis on Waste-oil Biodiesel Utilization.” Renewable and Sustainable Energy Reviews 72: 445–464. doi:https://doi.org/10.1016/j.rser.2017.01.034.
  • Hammond, G., S. Kallu, and M. McManus. 2008. “Development of Biofuels for the UK Automotive Market.” Applied Energy 85 (6): 506–515.
  • Hoppe, W., S. Bringezu, and N. Wachter. 2018. “Economic Assessment of CO2-Based Methane, Methanol and Polyoxymethylene Production.” Journal of CO2 Utilization 27: 170–178. doi:https://doi.org/10.1016/j.jcou.2018.06.019.
  • Hoppe, F., B. Heuser, M. Thewes, F. Kremer, S. Pischinger, M. Dahmen, and W. Marquardt. 2016. “Tailor-made Fuels for Future Engine Concepts.” International Journal of Engine Research 17 (1): 16–27.
  • Huang, H., Z. Li, W. Teng, R. Huang, Q. Liu, and Y. Wang. 2019. “Effects of EGR Rates on Combustion and Emission Characteristics in a Diesel Engine with n-Butanol/PODE3-4/Diesel Blends.” Applied Thermal Engineering 146: 212–222. doi:https://doi.org/10.1016/j.applthermaleng.2018.09.126.
  • Ibrahim, M. F., S. W. Kim, and S. Abd-Aziz. 2018. “Advanced Bioprocessing Strategies for Biobutanol Production from Biomass.” Renewable and Sustainable Energy Reviews 91: 1192–1204. doi:https://doi.org/10.1016/j.rser.2018.04.060.
  • Jayed, M., H. H. Masjuki, R. Saidur, M. Kalam, and M. I. Jahirul. 2009. “Environmental Aspects and Challenges of Oilseed Produced Biodiesel in Southeast Asia.” Renewable and Sustainable Energy Reviews 13 (9): 2452–2462.
  • Jin, C., M. Yao, H. Liu, F. L. Chia-fon, and J. Ji. 2011. “Progress in the Production and Application of n-Butanol as a Biofuel.” Renewable and Sustainable Energy Reviews 15 (8): 4080–4106.
  • Khalife, E., M. Tabatabaei, A. Demirbas, and M. Aghbashlo. 2017. “Impacts of Additives on Performance and Emission Characteristics of Diesel Engines During Steady State Operation.” Progress in Energy and Combustion Science 59: 32–78. doi:https://doi.org/10.1016/j.pecs.2016.10.001.
  • Komers, K., R. Stloukal, J. Machek, and F. Skopal. 2001. “Biodiesel from Rapeseed Oil, Methanol and KOH. 3. Analysis of Composition of Actual Reaction Mixture.” European Journal of Lipid Science and Technology 103 (6): 363–371.
  • Kremer, F., L. M. Blank, P. R. Jones, and M. K. Akhtar. 2015. “A Comparison of the Microbial Production and Combustion Characteristics of Three Alcohol Biofuels: Ethanol, 1-Butanol, and 1-Octanol.” Frontiers in Bioengineering and Biotechnology 3: 112.
  • Kumar, S., B. Bhattacharyya, and V. K. Gupta. 2014. “Present and Future Energy Scenario in India.” Journal of The Institution of Engineers (India): Series B 95 (3): 247–254. doi:https://doi.org/10.1007/s40031-014-0099-7.
  • Kumar, S., and P. Dinesha. 2018. “Optimization of Engine Parameters in a Bio Diesel Engine Run with Honge Methyl Ester Using Response Surface Methodology.” Measurement 125: 224–231. doi:https://doi.org/10.1016/j.measurement.2018.04.091.
  • Kumari, D., and R. Singh. 2018. “Pretreatment of Lignocellulosic Wastes for Biofuel Production: A Critical Review.” Renewable and Sustainable Energy Reviews 90: 877–891. doi:https://doi.org/10.1016/j.rser.2018.03.111.
  • Labeckas, G., and S. Slavinskas. 2006. “Performance of Direct-Injection Off-Road Diesel Engine on Rapeseed oil.” Renewable Energy 31 (6): 849–863. doi:https://doi.org/10.1016/j.renene.2005.05.009.
  • Labeckas, G., and S. Slavinskas. 2009. “Study of Exhaust Emissions of Direct Injection Diesel Engine Operating on Ethanol, Petrol and Rapeseed Oil Blends.” Energy Conversion and Management 50 (3): 802–812.
  • Lei, J., L. Shen, Y. Bi, and H. Chen. 2012. “A Novel Emulsifier for Ethanol–Diesel Blends and Its Effect on Performance and Emissions of Diesel Engine.” Fuel 93: 305–311.
  • Li, Y., J. Gong, Y. Deng, W. Yuan, J. Fu, and B. Zhang. 2017. “Experimental Comparative Study on Combustion, Performance and Emissions Characteristics of Methanol, Ethanol and Butanol in a Spark Ignition Engine.” Applied Thermal Engineering 115: 53–63.
  • Li, J., X. Ma, H. Liu, and X. Zhang. 2018. “Life Cycle Assessment and Economic Analysis of Methanol Production from Coke Oven Gas Compared with Coal and Natural Gas Routes.” Journal of Cleaner Production 185: 299–308. doi:https://doi.org/10.1016/j.jclepro.2018.02.100.
  • Lin, B.-J., W.-H. Chen, W. M. Budzianowski, C.-T. Hsieh, and P.-H. Lin. 2016. “Emulsification Analysis of Bio-oil and Diesel Under Various Combinations of Emulsifiers.” Applied Energy 178: 746–757.
  • Liu, B., C. R. Shumway, and J. K. Yoder. 2017. “Lifecycle Economic Analysis of Biofuels: Accounting for Economic Substitution in Policy Assessment.” Energy Economics 67: 146–158. doi:https://doi.org/10.1016/j.eneco.2017.06.002.
  • Liu, F., Z. Wu, D. Dang, G. Wang, X. Tian, and X. Yang. 2019. “Three Dimensional Titanium Molybdenum Nitride Nanowire Assemblies as Highly Efficient and Durable Platinum Support for Methanol Oxidation Reaction.” Electrochimica Acta 295: 50–57. doi:https://doi.org/10.1016/j.electacta.2018.10.114.
  • Luo, W., Z. Zhao, H. Pan, L. Zhao, C. Xu, and X. Yu. 2018. “Feasibility of Butanol Production from Wheat Starch Wastewater by Clostridium Acetobutylicum.” Energy 154: 240–248. doi:https://doi.org/10.1016/j.energy.2018.04.125.
  • Madiwale, S., A. Karthikeyan, and V. Bhojwani. 2018. “Properties Investigation and Performance Analysis of a Diesel Engine Fuelled with Jatropha, Soybean, Palm and Cottonseed Biodiesel Using Ethanol as an Additive.” Materials Today: Proceedings 5 (1): 657–664.
  • Magalhães, B. L., M. C. B. Grassi, G. A. G. Pereira, and M. Brocchi. 2018. “Improved n-Butanol Production from Lignocellulosic Hydrolysate by Clostridium Strain Screening and Culture-Medium Optimization.” Biomass and Bioenergy 108: 157–166. doi:https://doi.org/10.1016/j.biombioe.2017.10.044.
  • Masum, B., H. Masjuki, M. Kalam, I. R. Fattah, S. Palash, and M. Abedin. 2013. “Effect of Ethanol–Gasoline Blend on NOx Emission in SI Engine.” Renewable and Sustainable Energy Reviews 24: 209–222.
  • Meeprasertsagool, P., A. Watthanaphanit, T. Ueno, N. Saito, and P. Reubroycharoen. 2017. “New Insights Into Vegetable oil Pyrolysis by Cold Plasma Technique.” Energy Procedia 138: 1153–1158.
  • Mitkidis, G., A. Magoutas, and F. Kitsios. 2018. “Market and Economic Feasibility Analysis for the Implementation of 2nd Generation Biofuels in Greece.” Energy Strategy Reviews 19: 85–98. doi:https://doi.org/10.1016/j.esr.2017.12.006.
  • Mohammadi, A., T. Ishiyama, T. Kakuta, and S.-S. Kee. 2005. “ Fuel Injection Strategy For Clean Diesel Engine Using Ethanol Blended Diesel Fuel” : Sae Technical Paper.
  • Moss, J. T., A. M. Berkowitz, M. A. Oehlschlaeger, J. Biet, V. Warth, P.-A. Glaude, and F. Battin-Leclerc. 2008. “An Experimental and Kinetic Modeling Study of the Oxidation of the Four Isomers of Butanol.” The Journal of Physical Chemistry A 112 (43): 10843–10855.
  • Nalgundwar, A., B. Paul, and S. K. Sharma. 2016. “Comparison of Performance and Emissions Characteristics of DI CI Engine Fueled with Dual Biodiesel Blends of Palm and Jatropha.” Fuel 173: 172–179.
  • Neuling, U., and M. Kaltschmitt. 2018. “Techno-economic and Environmental Analysis of Aviation Biofuels.” Fuel Processing Technology 171: 54–69. doi:https://doi.org/10.1016/j.fuproc.2017.09.022.
  • Ng, R. T. L., and C. T. Maravelias. 2017. “Economic and Energetic Analysis of Biofuel Supply Chains.” Applied Energy 205: 1571–1582. doi:https://doi.org/10.1016/j.apenergy.2017.08.161.
  • Paul, G., A. Datta, and B. K. Mandal. 2014. “An Experimental and Numerical Investigation of the Performance, Combustion and Emission Characteristics of a Diesel Engine Fueled with Jatropha Biodiesel.” Energy Procedia 54: 455–467.
  • Paulova, L., P. Patakova, B. Branska, M. Rychtera, and K. Melzoch. 2015. “Lignocellulosic Ethanol: Technology Design and Its Impact on Process Efficiency.” Biotechnology Advances 33 (6, Part 2): 1091–1107. doi:https://doi.org/10.1016/j.biotechadv.2014.12.002.
  • Perumal, V., and M. Ilangkumaran. 2017. “Experimental Analysis of Engine Performance, Combustion and Emission Using Pongamia Biodiesel as Fuel in CI Engine.” Energy 129: 228–236. doi:https://doi.org/10.1016/j.energy.2017.04.120.
  • Quiroga, L. C. R., J. A. P. Balestieri, and I. Ávila. 2017. “Thermal Behavior and Kinetics Assessment of Ethanol/Gasoline Blends During Combustion by Thermogravimetric Analysis.” Applied Thermal Engineering 115: 99–110.
  • Rajagopal, D., and D. Zilberman. 2007. Review of Environmental, Economic and Policy Aspects of Biofuels. London: The World Bank.
  • Rajesh Kumar, B., and S. Saravanan. 2016. “Effects of Iso-Butanol/Diesel and n-Pentanol/Diesel Blends on Performance and Emissions of a DI Diesel Engine Under Premixed LTC (low Temperature Combustion) Mode.” Fuel 170: 49–59. doi:https://doi.org/10.1016/j.fuel.2015.12.029.
  • Rajesh Kumar, B., S. Saravanan, D. Rana, V. Anish, and A. Nagendran. 2016. “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 Conversion and Management 118: 275–286. doi:https://doi.org/10.1016/j.enconman.2016.04.001.
  • Rakopoulos, D., C. Rakopoulos, E. Giakoumis, A. Dimaratos, and D. Kyritsis. 2010. “Effects of Butanol–Diesel Fuel Blends on the Performance and Emissions of a High-Speed DI Diesel Engine.” Energy Conversion and Management 51 (10): 1989–1997.
  • Rakopoulos, D., C. Rakopoulos, D. Hountalas, E. Kakaras, E. Giakoumis, and R. Papagiannakis. 2010. “Investigation of the Performance and Emissions of bus Engine Operating on Butanol/Diesel Fuel Blends.” Fuel 89 (10): 2781–2790.
  • Ramadhas, A., P. K. Singh, P. Sakthivel, R. Mathai, and A. K. Sehgal. 2016. “ Effect of Ethanol-Gasoline Blends on Combustion and Emissions of a Passenger Car Engine at Part Load Operations” : SAE Technical Paper.
  • Royon, D., M. Daz, G. Ellenrieder, and S. Locatelli. 2007. “Enzymatic Production of Biodiesel from Cotton Seed oil Using t-Butanol as a Solvent.” Bioresource Technology 98 (3): 648–653.
  • Saravanan, S. 2015. “Effect of Exhaust gas Recirculation (EGR) on Performance and Emissions of a Constant Speed DI Diesel Engine Fueled with Pentanol/Diesel Blends.” Fuel 160: 217–226.
  • Saravanan, A. P., T. Mathimani, G. Deviram, K. Rajendran, and A. Pugazhendhi. 2018. “Biofuel Policy in India: A Review of Policy Barriers in Sustainable Marketing of Biofuel.” Journal of Cleaner Production 193: 734–747. doi:https://doi.org/10.1016/j.jclepro.2018.05.033.
  • Saravanan, S., B. Rajesh Kumar, A. Varadharajan, D. Rana, B. Sethuramasamyraja, and G. Lakshmi Narayana rao. 2017. “Optimization of DI Diesel Engine Parameters Fueled with iso-Butanol/Diesel Blends – Response Surface Methodology Approach.” Fuel 203: 658–670. doi:https://doi.org/10.1016/j.fuel.2017.04.083.
  • Satsangi, D. P., and N. Tiwari. 2018. “Experimental Investigation on Combustion, Noise, Vibrations, Performance and Emissions Characteristics of Diesel/n-Butanol Blends Driven Genset Engine.” Fuel 221: 44–60.
  • Sayed, W., A. Cabrol, R. Abdallah, S. Taha, A. Amrane, and H. Djelal. 2018. “Enhancement of Ethanol Production From Synthetic Medium Model of Hydrolysate of Macroalgae.” Renewable Energy 124: 3–10. doi:https://doi.org/10.1016/j.renene.2017.10.094.
  • Shamun, S., G. Belgiorno, G. Di Blasio, C. Beatrice, M. Tunér, and P. Tunestål. 2018. “Performance and Emissions of Diesel-Biodiesel-Ethanol Blends in a Light Duty Compression Ignition Engine.” Applied Thermal Engineering 145: 444–452. doi:https://doi.org/10.1016/j.applthermaleng.2018.09.067.
  • Sharma, Y., B. Singh, and S. Upadhyay. 2008. “Advancements in Development and Characterization of Biodiesel: A Review.” Fuel 87 (12): 2355–2373.
  • Sileghem, L., V. A. Alekseev, J. Vancoillie, E. J. K. Nilsson, S. Verhelst, and A. A. Konnov. 2014. “Laminar Burning Velocities of Primary Reference Fuels and Simple Alcohols.” Fuel 115: 32–40. doi:https://doi.org/10.1016/j.fuel.2013.07.004.
  • Sileghem, L., V. Alekseev, J. Vancoillie, K. Van Geem, E. Nilsson, S. Verhelst, and A. Konnov. 2013. “Laminar Burning Velocity of Gasoline and the Gasoline Surrogate Components iso-Octane, n-Heptane and Toluene.” Fuel 112: 355–365.
  • Singh, R., R. Chaudhary, R. Pandey, S. Maji, A. Babbar, B. Chauhan, and C. Mishra. 2012. “Performance Evaluation of an Air Cooled Diesel Engine Fuelled with Neat Neem Oil and Diesel Blends.” Journal of Biofuels 3 (1): 58–64.
  • Singh, Y., A. Farooq, A. Raza, M. A. Mahmood, and S. Jain. 2017. “Sustainability of a Non-Edible Vegetable oil Based bio-Lubricant for Automotive Applications: A Review.” Process Safety and Environmental Protection 111: 701–713. doi:https://doi.org/10.1016/j.psep.2017.08.041.
  • Singh, Y., A. Sharma, N. Singh, A. Singla, and P. M. Rastogi. 2018. “Prospects of Inedible Plant Oil-Driven bio-Lubricants for Tribological Characteristics – A Review.” International Journal of Ambient Energy, 1–14. doi:https://doi.org/10.1080/01430750.2018.1517684.
  • Singh, Y., P. Singh, A. Sharma, P. Choudhary, A. Singla, and N. K. Singh. 2018. “Optimization of Wear and Friction Characteristics of Phyllanthus Emblica Seed Oil Based Lubricant Using Response Surface Methodology.” Egyptian Journal of Petroleum, doi:https://doi.org/10.1016/j.ejpe.2018.04.001.
  • Singh, Y., A. Singla, and S. Bhurat. 2016. “Tribological Behavior of Pongamia Oil-Based Biodiesel Blended Lubricant at Different Loads.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38 (19): 2876–2882. doi:https://doi.org/10.1080/15567036.2015.1120821.
  • Singh, Y., A. Singla, and A. K. Singh. 2017. “Tribological Characteristics of Mongongo-Oil–Based Biodiesel Blended Lubricant.” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39 (3): 332–338. doi:https://doi.org/10.1080/15567036.2016.1176093.
  • Singh, Y., A. Singla, A. K. Singh, and A. K. Upadhyay. 2018. “Tribological Characterization of Pongamia Pinnata Oil Blended Bio-Lubricant.” Biofuels 9 (4): 523–530. doi:https://doi.org/10.1080/17597269.2017.1292017.
  • Song, C., Y. Qiu, Q. Liu, N. Ji, Y. Zhao, Y. Kitamura, and X. Hou. 2018. “Process Intensification of Cellulosic Ethanol Production by Waste Heat Integration.” Chemical Engineering Research and Design 132: 115–122. doi:https://doi.org/10.1016/j.cherd.2018.01.016.
  • Soni, D. K., and R. Gupta. 2016. “Numerical Investigation of Emission Reduction Techniques Applied on Methanol Blended Diesel Engine.” Alexandria Engineering Journal 55 (2): 1867–1879.
  • Soudagar, M. E. M., N.-N. Nik-Ghazali, M. Abul Kalam, I. A. Badruddin, N. R. Banapurmath, and N. Akram. 2018. “The Effect of Nano-Additives in Diesel-Biodiesel Fuel Blends: A Comprehensive Review on Stability, Engine Performance and Emission Characteristics.” Energy Conversion and Management 178: 146–177. doi:https://doi.org/10.1016/j.enconman.2018.10.019.
  • Veloo, P. S., Y. L. Wang, F. N. Egolfopoulos, and C. K. Westbrook. 2010. “A Comparative Experimental and Computational Study of Methanol, Ethanol, and n-Butanol Flames.” Combustion and Flame 157 (10): 1989–2004.
  • Venkateswaran, J., C. S. Solanki, K. Werner, and G. N. Yadama. 2018. “Addressing Energy Poverty in India: A Systems Perspective on the Role of Localization, Affordability, and Saturation in Implementing Solar Technologies.” Energy Research & Social Science 40: 205–210. doi:https://doi.org/10.1016/j.erss.2018.02.011.
  • Vinayaka, A. S., B. Mahanty, E. R. Rene, and S. K. Behera. 2018. “Biodiesel Production by Transesterification of a Mixture of Pongamia and Neem Oils.” Biofuels, 1–9. doi:https://doi.org/10.1080/17597269.2018.1464874.
  • Wallner, T., S. A. Miers, and S. McConnell. 2008. “ A Comparison of Ethanol and Butanol As Oxygenates Using a Direct-Injection, Spark-Ignition (Disi) Engine.” Paper presented at the ASME 2008 Internal Combustion Engine Division Spring Technical Conference.
  • Watanabe, Y., Y. Shimada, A. Sugihara, and Y. Tominaga. 2002. “Conversion of Degummed Soybean Oil to Biodiesel Fuel with Immobilized Candida Antarctica Lipase.” Journal of Molecular Catalysis B: Enzymatic 17 (3-5): 151–155.
  • Weber, B. W., W. J. Pitz, M. Mehl, E. J. Silke, A. C. Davis, and C.-J. Sung. 2014. “Experiments and Modeling of the Autoignition of Methylcyclohexane at High Pressure.” Combustion and Flame 161 (8): 1972–1983.
  • Wu, C., and C. K. Law. 1985. “ On the Determination of Laminar Flame Speeds from Stretched Flames.” Paper presented at the Symposium (International) on Combustion.
  • Wu, Q., X. Xie, Y. Wang, and T. Roskilly. 2018. “Effect of Carbon Coated Aluminum Nanoparticles as Additive to Biodiesel-Diesel Blends on Performance and Emission Characteristics of Diesel Engine.” Applied Energy 221: 597–604. doi:https://doi.org/10.1016/j.apenergy.2018.03.157.
  • Yates, A. D., A. Swarts, and C. L. Viljoen. 2005. “ Correlating Auto-Ignition Delays and Knock-Limited Spark-Advance Data for Different Types of Fuel”: SAE Technical Paper.
  • Yesilyurt, M. K., T. Eryilmaz, and M. Arslan. 2018. “A Comparative Analysis of the Engine Performance, Exhaust Emissions and Combustion Behaviors of a Compression Ignition Engine Fuelled with Biodiesel/Diesel/1-Butanol (C4 Alcohol) and Biodiesel/Diesel/n-Pentanol (C5 Alcohol) Fuel Blends.” Energy 165: 1332–1351. doi:https://doi.org/10.1016/j.energy.2018.10.100.
  • Yilmaz, N., and A. Atmanli. 2017. “Experimental Evaluation of a Diesel Engine Running on the Blends of Diesel and Pentanol as a Next Generation Higher Alcohol.” Fuel 210: 75–82.
  • Yilmaz, N., A. Atmanli, and M. Trujillo. 2017. “Influence of 1-Pentanol Additive on the Performance of a Diesel Engine Fueled with Waste Oil Methyl Ester and Diesel Fuel.” Fuel 207: 461–469.
  • Yilmaz, N., E. Ileri, A. Atmanlı, A. Deniz Karaoglan, U. Okkan, and M. Sureyya Kocak. 2016. “Predicting the Engine Performance and Exhaust Emissions of a Diesel Engine Fueled With Hazelnut Oil Methyl Ester: The Performance Comparison of Response Surface Methodology and LSSVM.” Journal of Energy Resources Technology 138 (5): 052206-052206-052207. doi:https://doi.org/10.1115/1.4032941.
  • Yuan, Z., G. Li, and E. L. Hegg. 2018. “Enhancement of Sugar Recovery and Ethanol Production from Wheat Straw Through Alkaline pre-Extraction Followed by Steam Pretreatment.” Bioresource Technology 266: 194–202. doi:https://doi.org/10.1016/j.biortech.2018.06.065.
  • Zhang, J., and B. Jia. 2018. “Enhanced Butanol Production Using Clostridium Beijerinckii SE-2 from the Waste of Corn Processing.” Biomass and Bioenergy 115: 260–266. doi:https://doi.org/10.1016/j.biombioe.2018.05.012.

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