101
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Energy generation and exhaust emissions in a stationary engine using soybean and beef tallow biodiesel blends with diesel and additives

ORCID Icon, ORCID Icon & ORCID Icon
Pages 6782-6792 | Received 29 Oct 2021, Accepted 24 Feb 2022, Published online: 03 Apr 2022

References

  • Abreu, F. L. B. 2010. “Power Generation and Analysis of Emissions in Stationary Engine Using Biodiesel, Blends of Biodiesel and Blends of Biodiesel Containing Additive, Produced by Ethylic Route and Its Characterization, in Portuguese.” PhD thesis, Fluminense Federal University, Niterói, RJ, Brazil.
  • Al-Dawody, M. F., and S. K. Bhatti. 2014. “Experimental and Computational Investigations for Combustion, Performance and Emission Parameters of a Diesel Engine Fueled with Soybean Biodiesel-Diesel Blends.” Energy Procedia 52: 421–430.
  • Alagumalai, A., O. Mahian, F. Hollmann, and W. Zhang. 2021. “Environmentally Benign Solid Catalysts for Sustainable Biodiesel Production: A Critical Review.” Science of the Total Environment 768: 144856.
  • Amid, S., M. Aghbashlo, W. Penga, A. Hajiahmad, B. Najafi, H. S. Ghaziaskar, H. Rastegari, et al. 2021. “Exergetic Performance Evaluation of a Diesel Engine Powered by Diesel/Biodiesel Mixtures Containing Oxygenated Additive Ethylene Glycol Diacetate.” Science of the Total Environment 792: 148435.
  • Ashok, B., K. Nanthagopal, A. Mohan, A. Johny, and A. Tamilarasu. 2017. “Comparative Analysis on the Effect of Zinc Oxide and Ethanox as Additives with Biodiesel in CI Engine.” Energy 140: 352–364.
  • Atmanli, A. 2016. “Comparative Analyses of Dieselewaste oil Biodiesel and Propanol, n-Butanol or 1-Pentanol Blends in a Diesel Engine.” Fuel 176: 209–215.
  • Avinash, A., and A. Murugesan. 2017. Chemometric analysis of cow dung ash as an adsorbent for purifying biodiesel from waste cooking oil, Scientific Reports 7, 9526.
  • Basha, J. S. 2018. “Impact of Carbon Nanotubes and Di-Ethyl Ether as Additives with Biodiesel Emulsion Fuels in a Diesel Enginee - An Experimental Investigation.” Journal of the Energy Institute 91: 289–303.
  • Calder, J., M. M. Roy, and W. Wang. 2018. “Performance and Emissions of a Diesel Engine Fueled by Biodiesel-Diesel Blends with Recycled Expanded Polystyrene and Fuel Stabilizing Additive.” Energy 149: 204–212.
  • Campanelli, P., M. Banchero, and L. Manna. 2010. “Synthesis of Biodiesel from Edible, Nonedible and Waste Cooking Oils via Supercritical Methyl Acetate Transesterification.” Fuel 89: 3675–3682.
  • Chavan, S. B., R. R. Kumbhar, and R. B. Deshmukh. 2013. “Callophyllum Inophyllum Linn (“Honne”) oil, a Source for Biodiesel Production. “Research Journal of Chemical Sciences 3: 24–31.
  • Cihan, Ö. 2021. “Experimental and Numerical Investigation of the Effect of fig Seed oil Methyl Ester Biodiesel Blends on Combustion Characteristics and Performance in a Diesel Engine.” Energy Reports 7: 5846–5856.
  • Cintas, P., S. Mantegna, E. C. Gaudino, and G. Cravotto. 2010. “A new Pilot Flow Reactor for High-Intensity Ultrasound Irradiation. Application to the Synthesis of Biodiesel.” Ultrasonics Sonochemistry 17: 985–989.
  • Düz, M. Z., A. Saydut, and G. Öztürk. 2011. “Alkali Catalyzed Transesterification of Safflower Seed oil Assisted by Microwave Irradiation.” Fuel Processing Technology 92: 308–313.
  • Elkelawy, M., A. E. Kabeel, E. A. El Shenawy, H. Panchal, A. Elbanna, H. A. Bastawissi, and K. K. Sadasivuni. 2020. “Experimental Investigation on the Influences of Acetone Organic Compound Additives Into the Diesel/Biodiesel Mixture in CI Engine.” Sustainable Energy Technologies and Assessments 37. doi:10.1016/j.seta.2019.100614.
  • Fazal, M. A., A. S. M. A. Haseeb, and H. H. Masjuki. 2011. “Biodiesel Feasibility Study: An Evaluation of Material Compatibility; Performance; Emission and Engine Durability.” Renewable and Sustainable Energy Reviews 15: 1314–1324.
  • Imtenan, S., H. Masjuki, M. Varman, M. Kadam, M. Arbab, H. Sajjad, and S. Rahman. 2014. “Impact of Oxygenated Additives to Palm and Jatropha Biodiesel Blends in the Context of Performance and Emission Characteristics of a Light-Duty Diesel Engine.” Energy Conversion and Management 83: 149–158.
  • Isık, M. Z., H. Bayındır, B. Iscan, and H. Aydın. 2017. “The Effect of n-Butanol Additive on low Load Combustion, Performance and Emissions of Biodiesel-Diesel Blend in a Heavy Duty Diesel Power Generator.” Journals of the Energy Institute 90: 174–184.
  • Kabeel, A., E. A. El Shenawy, M. Elkelawy, H. A. Bastawissi, and A. Elbanna. 2018. “Influence of Acetone as Oxygenator Additive on the Combustion, Performance, and Emission of Dieselbiodiesel Blends in Direct Injection Diesel Engine.” Proceedings of the 18th International AMME Conference, 189–201.
  • Kalam, M. A., and H. H. Masjuki. 2008. “Testing Palm Biodiesel and NPAA Additives to Control NOx and CO While Improving Efficiency in Diesel Engines.” Biomass & Bioenergy 32: 1116–1122.
  • Killol, A., N. Reddy, S. Paruvada, and S. Murugan. 2019. “Experimental Studies of a Diesel Engine Run on Biodiesel n-Butanol Blends.” Renewable Energy 135: 687–700.
  • Kline, S., and F. Mcclintock. 1953. “Describing Uncertainties in Single-Sample Experiments.” Mechanical Engineering 75: 3–8.
  • Kumar, S., P. Dinesha, and I. Bran. 2017. “Influence of Nanoparticles on the Performance and Emission Characteristics of a Biodiesel Fuelled Engine: An Experimental Analysis.” Energy 140: 98–105.
  • Leung, D. Y. C., and Y. Guo. 2006. “Transesterification of Neat and Used Frying oil: Optimization for Biodiesel Production.” Fuel Processing Technology 87: 883–890.
  • Long, Yun-Duo, and Z. Fang. 2012. “Hydrothermal Conversion of Glycerol to Chemicals and Hydrogen: Review and Perspective.” Biofuels, Bioproducts and Biorefining 6: 686–702.
  • Madiwale, S., A. Karthikeyan, V. Bhojwani, and S. Chougule. 2017. “Cottonseed oil Biodiesel with Ethanol as an Additive-an Alternative Fuel for Diesel Engine.” ARPN Journal of Engineering and Applied Sciences 12 (17): 5160–5167.
  • Mahalingam, A., D. B. Munuswamy, Y. Devarajan, and S. Radhakrishnan. 2018. “Investigation on the Emission Reduction Technique in a Acetone Biodiesel Aspirated Diesel Engine.” Journal of Oil Palm Research 30 (2): 345–349.
  • Masera, K., A. K. Hossain, P. A. Davies, and K. Doudin. 2021. “Investigation of 2-Butoxyethanol as Biodiesel Additive on Fuel Property and Combustion Characteristics of two Neat Biodiesel.” Renewable Energy 164: 285–297.
  • Mirhashemi, F. S., and H. Sadrnia. 2020. “NOX Emissions of Compression Ignition Engines Fueled with Various Biodiesel Blends: A Review.” Journal of the Energy Institute 93: 129–151.
  • Nayak, S., and B. P. Pattanaik. 2014. “Experimental Investigation on Performance and Emission Characteristics of a Diesel Engine Fuelled with Mahua Biodiesel Using Additive.” Energy Procedia 54: 569–579.
  • Pawar, R., K. Jagadale, P. Gujar, V. Barade, and B. Solankure. 2018. “A Comprehensive Review on Influence of Biodiesel and Additives on Performance and Emission of Diesel Engine.” Chemical Engineering Transactions 5: 451–456.
  • Qi, D. H., H. Chen, L. M. Geng, and Y. Z. H. Bian. 2010. “Experimental Studies on the Combustion Characteristics and Performance of a Direct Injection Engine Fueled with Biodiesel/Diesel Blends.” Energy Conversion and Management 51: 2985–2992.
  • Qi, D. H., L. M. Geng, H. Chen, Y. Z. H. Bian, J. Liu, and X. C. H. Ren. 2009. “Combustion and Performance Evaluation of a Diesel Engine Fueled with Biodiesel Produced from Soybean Crude oil.” Renewable Energy 34: 2706–2713.
  • Qi, D., L. Ma, R. Chen, X. Jin, and M. Xie. 2021. “Effects of EGR Rate on the Combustion and Emission Characteristics of Diesel-Palm oil-Ethanol Ternary Blends Used in a CRDI Diesel Engine with Double Injection Strategy.” Applied Thermal Engineering 199: 117530.
  • Rajasekar, E., A. Murugesan, R. Subramanian, and N. Nedunchezhian. 2010. “Review of NOx Reduction Technologies in CI Engines Fuelled with Oxygenated Biomass Fuels.” Renewable & Sustainable Energy Reviews 14: 2113–2121.
  • Rajendran, S. 2020. “Effect of Antioxidant Additives on Oxides of Nitrogen (NOx) Emission Reduction from Annona Biodiesel Operated Diesel Engine.” Renewable Energy 148: 1321–1326.
  • Randazzo, M. L., and J. R. Sodré. 2011. “Exhaust Emissions from a Diesel Powered Vehicle Fuelled by Soybean Biodiesel Blends (B3–B20) with Ethanol as an Additive (B20E2–B20E5).” Fuel 90: 98–103.
  • Rashedul, H., H. Masjuki, M. Kalam, A. Ashraful, S. A. Rahman, and S. Shahir. 2014. “The Effect of Additives on Properties, Performance and Emission of Biodiesel Fuelled Compression Ignition Engine.” Energy Conversation and Management 88: 348–364.
  • Razzaq, L., M. A. Mujtaba, M. E. M. Soudagar, W. Ahmed, H. Fayaz, S. Bashir, I. M. R. Fattah, et al. 2021. “Engine Performance and Emission Characteristics of Palm Biodiesel Blends with Graphene Oxide Nanoplatelets and Dimethyl Carbonate Additives.” Journal of. Environmental Management 282. Article no. 111917. doi:10.1016/j.jenvman.2020.111917.
  • Refaat, A. A., S. T. El Sheltawy, and K. U. Sadek. 2008. “Optimum Reaction Time, Performanceand Exhaust Emissions of Biodiesel Produced by Microwave Irradiation.” International Journal of Environmental Science and Technology 5: 315–322.
  • Roy, M. M., J. Calder, W. Wang, A. Mangad, and F. C. M. Diniz. 2016. “Cold Start Idle Emissions from a Modern Tier-4 Turbo-Charged Diesel Engine Fueled with Diesel-Biodiesel, Diesel Biodiesel-Ethanol, and Diesel-Biodiesel-Diethyl Ether Blends.” Applied Energy 180: 52–65.
  • Santo Filho, D. M. E. 2010. Metrology Applied to Analysis of Biodiesel, in Portuguese, PhD Thesis, Fluminense Federal University, Niterói, RJ, Brazil.
  • Sayyed, S., R. Kumar Das, and K. Kulkarni. 2021. “Performance Assessment of Multiple Biodiesel Blended Diesel Engine and NOx Modeling Using ANN.” Case Studies in Thermal Engineering 28: 101509.
  • Uyumaz, A. 2018. “Combustion, Performance and Emission Characteristics of a DI Diesel Engine Fueled with Mustard oil Biodiesel Fuel Blends at Different Engine Loads.” Fuel 212: 256–267.
  • Vikas, V., and M. Rajesh. 2017. “Experimental Investigation on Performance and Emission Characteristics of Diesel Engine Using Coconut Blends With Acetone as Additive.” International Journal of Innovative Research in Science, Engineering and Technology 6 (8): 17327–17333.
  • Vinukumar, K., A. Azhagurajan, S. Vettivel, N. Vedaraman, and A. H. Lenin. 2018. “Biodiesel with Nano Additives from Coconut Shell for Decreasing Emissions in Diesel Engines.” Fuel 222: 180–184.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.