Comparação das emissões de CO2 e eficiência potencial entre biodiesel e diesel renovável
DOI:
https://doi.org/10.22579/22484817.1055Palavras-chave:
Biomassa, Combustível, Óleo vegetalResumo
O uso de biocombustíveis renováveis tem vantagens importantes, como o aumento da eficiência energética, a diversificação da matriz energética dos países e a redução dos gases de efeito estufa, entre outras. Além disso, os combustíveis fósseis estão a começar a esgotar-se gradualmente. Os biocombustíveis, como o biodiesel e o diesel renovável (também chamado de diesel verde ou óleo vegetal hidro tratado), tornaram-se importantes campos de investigação, pois podem mitigar os danos ambientais sem afetar a qualidade do transporte. Tanto o biodiesel como o gasóleo renovável provêm da mesma biomassa, que pode variar entre óleo vegetal, gorduras animais, óleo de microalgas e óleos alimentares usados. Cada combustível é produzido através de um processo diferente (transesterificação no caso do biodiesel e hidrotratamento no caso do gasóleo renovável). Por esta razão, cada um deles tem propriedades químicas e físicas diferentes que determinam o seu desempenho, incluindo a sua eficiência e emissões de CO2. Esta revisão analisa as matérias-primas de biomassa utilizadas e faz uma comparação entre os processos de transformação, a eficiência e as potenciais emissões de CO2. Por fim, estabelece as vantagens e desvantagens da utilização do biodiesel e do gasóleo renovável.
Referências
Aatola, H., Larmi, M., Sarjovaara, T., and Mikkonen, S. (2008). Hydrotreated Vegetable Oil (HVO) as a Renewable Diesel Fuel: Trade off between NOx, Particulate Emission, and Fuel Consumption of a Heavy Duty Engine. SAE International Journal of Engines, 1, 1251–1262. https://doi.org/10.4271/2008-01-2500
Adetunji, J. (2017). Fact check: Are diesel cars really more polluting than petrol cars The Conversation. https://theconversation.com/fact-check-are-diesel-cars-really-more-polluting-than-petrol-cars-76241
Ahmad, S., Jafry, A. T., Haq, M. ul, Abbas, N., Ajab, H., Hussain, A., Sajjad, U. (2023). Performance and Emission Characteristics of Second Generation Biodiesel with Oxygenated Additives. Energies, 16, 5153. https://doi.org/10.3390/en16135153
Alonso Gomez, L., y Bello Pérez, L. A. (2018). Materias primas usadas para la producción de etanol de cuatro generaciones: retos y oportunidades. Agrociencia, 52, 967–990.
Anuar, M. R., and Abdullah, A. Z. (2016). Challenges in biodiesel industry with regards to feedstock, environmental, social and sustainability issues: A critical review. Renewable and Sustainable Energy Reviews, 58, 208–223. https://doi.org/10.1016/j.rser.2015.12.296
Bankovic-Ilic, I. B., Stamenkovic, O. S., and Veljkovic, V. B. (2012). Biodiesel production from nonedible plant oils. Renewable and Sustainable Energy Reviews, 16, 3621–3647. https://doi.org/10.1016/j.rser.2012.03.002
Cárdenas, M. D., Armas, O., Mata, C., and Soto, F. (2016). Performance and pollutant emissions from transient operation of a common rail diesel engine fueled with different biodiesel fuels. Fuel, 185, 743–762. https://doi.org/10.1016/j.fuel.2016.08.002
Costa, M., Marchitto, L., Piazzullo, D., andPrati, M. V. (2021). Comparison between the energetic and environmental performance of a combined heat and power unit fueled with diesel and waste vegetable oil: An experimental and numerical study. Renewable Energy, 168, 791–805. https://doi.org/10.1016/j.renene.2020.12.099
Department of Energy, U. (2019). Biofuels and Greenhouse Gas Emissions: Myths versus Facts. EERE, New York, NY.
Dimitriadis, A., and Natsios, I. (2018). Evaluation of a Hydrotreated Vegetable Oil (HVO) and Effects on Emissions of a Passenger Car Diesel Engine. Frontiers in Energy Research, 4.
Douvartzides, S. L., Charisiou, N. D., Papageridis, K. N., and Goula, M. A. (2019). Green diesel: Biomass feedstocks, production technologies, catalytic research, fuel properties and performance in compression ignition internal combustion engines. Energies, 12. https://doi.org/10.3390/en12050809
Dynamicscience. (2020). Chemistry-biofuels-comparing biodiesel and petrodiesel. http://www.dynamicscience.com.au/tester/solutions1/chemistry/organic/diesels.html
ETIP Bioenergy - European Technology and Innovation Platform. (2020). Hydrogenated vegetable oil (HVO), 1–4.
Firdaus, N., Aunillah, A., Wardiana, E., Pranowo, D., Herman, M., and Syafaruddin. (2022). Comparison of engine performance and emissions for fuels of diesel biodiesel blends and pure biodiesel. IOP Conference Series: Earth and Environmental Science, 1038, 012025. https://doi.org/10.1088/1755-1315/1038/1/012025
Garraín, D., Herrera, I., Lago, C., Lechón, Y., and Sáez, R. (2010). Renewable Diesel Fuel from Processing of Vegetable Oil in Hydrotreatment Units: Theoretical Compliance with European Directive 2009/28/EC and Ongoing Projects in Spain. Smart Grid and Renewable Energy, 01, 70–73. https://doi.org/10.4236/sgre.2010.12011
Gerveni, M., Hubbs, T., and Irwin, S. (2024). Revisiting Biomass-Based Diesel Feedstock Trends over 2011-2022. Farmdoc Daily, 14.
Hernández, J. J., Rodríguez-Fernández, J., and Calle-Asensio, A. (2020). Performance and regulated gaseous emissions of a Euro 6 diesel vehicle with Lean NOx Trap at different ambient conditions: Sensitivity to the type of fuel. Energy Conversion and Management, 219. https://doi.org/10.1016/j.enconman.2020.113023
IATA. (2019). Fact Sheet 6: Examples of ground transport biofuel mandates around the world, 1–6.
Julio, A. A. V., Milessi, T. S., Ocampo Batlle, E. A., Silva Lora, E. E., Yepes Maya, D. M., and Escobar Palacio, J. C. (2022). Techno economic and environmental potential of Renewable Diesel as complementation for diesel and biodiesel in Brazil: A comprehensive review and perspectives. Journal of Cleaner Production, 371, 133431. https://doi.org/10.1016/j.jclepro.2022.133431
Komariah, L. N., Arita, S., Rendana, M., Ramayanti, C., Suriani, N. L., and Erisna, D. (2022). Microbial contamination of diesel biodiesel blends in storage tank; an analysis of colony morphology. Heliyon, 8, e09264. https://doi.org/10.1016/j.heliyon.2022.e09264
Maziero, J. V. G., Corrêa, I. M., Bernardi, J. A., and Storino, M. (2007). Desempenho de um motor diesel com óleo bruto de girassol. Revista Brasileira de Agrociência, 13, 249–255.
Mofijur, M., Rasul, M. G., Hassan, N. M. S., and Nabi, M. N. (2019). Recent development in the production of third generation biodiesel from microalgae. In Energy Procedia, 5th International Conference on Power and Energy Systems Engineering (CPESE 2018) (Vol. 156, pp. 53–58). https://doi.org/10.1016/j.egypro.2018.11.088
Moodley, P. (2021). Sustainable biofuels: Opportunities and challenges. In R. C. Ray (Ed.), Sustainable Biofuels, Applied Biotechnology Reviews (pp. 1–20). Academic Press. https://doi.org/10.1016/B978-0-12-820297-5.00003-7
Morgenstern, C. (2022). Hydrotreated Vegetable Oil (HVO) explained. Cummins Inc. https://www.cummins.com/news/2022/07/01/hydrotreated-vegetable-oil-hvo-explained
Neste Corporation. (2020). Neste Renewable Diesel Handbook. https://www.neste.com/renewable-diesel-handbook
Quevedo-Amador, R. A., Escalera-Velasco, B. P., Arias, A. M. R., Reynel-Ávila, H. E., Moreno-Piraján, J. C., Giraldo, L., and Bonilla-Petriciolet, A. (2024). Application of waste biomass for the production of biofuels and catalysts: A review. Clean Technologies and Environmental Policy. https://doi.org/10.1007/s10098-023-02728-4
Simbi, I., Aigbe, U. O., Oyekola, O. O., and Osibote, O. A. (2022). Chemical and quality performance of biodiesel and petrol blends. Energy Conversion and Management: X, 15, 100256. https://doi.org/10.1016/j.ecmx.2022.100256
Tavel CO2. (2017). Transport calculations Travel and climate. Swedish National Travel Survey. https://travelandclimate.org/transport-calculations
Uchino, K. (2022). Piezoelectric devices for sustainability technologies. In Earth Systems and Environmental Sciences. Elsevier. https://doi.org/10.1016/B978-0-323-90386-8.00014-0
United Nations. (2022). The Paris Agreement UNFCCC. https://unfccc.int/process-and-meetings/the-paris-agreement
Your NRG. (2023). HVO fuel specifications | HVO vs Diesel and Biodiesel. https://yournrg.co.uk/advice-hub/hvo/hvo-fuel-specifications
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