Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2023, Cilt: 6 Sayı: 4, 308 - 316, 31.12.2023
https://doi.org/10.35208/ert.1341951

Öz

Kaynakça

  • D. Nagarajan, D.-J. Lee, and J.-S. Chang, “Chapter 22 - Circular bioeconomy approaches for sustainability and carbon mitigation in microalgal biorefinery,” S. Varjani, A. Pandey, T. Bhaskar, S. V. Mohan, and D. C. W. Tsang, (Eds.), Biofuels, Biochemicals, Elsevier, pp. 557-598, 2022. [CrossRef]
  • Y. Lokko, M. Heijde, K. Schebesta, P. Scholtès, M. Van Montagu, and M. Giacca, “Biotechnology and the bioeconomy—Towards inclusive and sustainable industrial development,” New Biotechnology, Vol. 40, pp. 5-10, 2018. [CrossRef]
  • World Business Council for Sustainable Development, “Circular Bioeconomy,” World Business Council for Sustainable Development, pp. 73, 2020.
  • J. Kansedo, K. T. Lee, and S. Bhatia, “Cerbera odollam (sea mango) oil as a promising non-edible feedstock for biodiesel production,” Fuel, Vol. 88(6), pp. 1148-1150, 2009. [CrossRef]
  • J. Thamilarasan, V. Ravikumar, S. P. Raj Yadav, J. Yarlagadda, A. Kumar, S. Ramasubramanian, B. Y. Asres, “Sustainability improvement of ethanol blended gasoline fuelled spark ignition engine by nanoparticles,” Journal of Nanomaterials, Vol. 2022, Article 7793947. [CrossRef]
  • J. Senthil Kumar, S. Ganesan, S. Sivasaravanan, S. Padmanabhan, L. Krishnan, and V. C. Aniruthan, “Effects of nano additives in engine emission characteristics using blends of lemon balm oil with diesel,” IOP Conference Series: Materials Science and Engineering, Vol. 197(1), Article 012022. [CrossRef]
  • V. Hariram, S. Seralathan, M. Rajasekaran, M. Dinesh Kumar, and S. Padmanabhan, “Effect of metallic nano-additives on combustion performance and emissions of DI CI engine fuelled with palmkernel methyl ester,” International Journal of Vehicle Structures and Systems, Vol. 9(2), pp. 103-109, 2017. [CrossRef]
  • S. Ganesan, S. Padmanabhan, S. Mahalingam, and C. Shanjeevi, “Environmental impact of VCR diesel engine characteristics using blends of cottonseed oil with nano additives,” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, Vol. 42(6), pp. 761-772, 2020. [CrossRef]
  • V. S. Shaisundaram, M. Chandrasekaran, M. Shanmugam, S. Padmanabhan, R. Muraliraja, and L. Karikalan, “Investigation of Momordica charantia seed biodiesel with cerium oxide nanoparticle on CI engine,” International Journal of Ambient Energy, Vol. 42(14), pp. 1615-1619, 2021. [CrossRef]
  • A. P. Venkatesh, S. Padmanabhan, G. V. Rajveer, K. Yuvaja, and M. Muniyappan, “Effect of fuel injection pressure on the performance and emission analysis of Mahua Methyl ester in a single cylinder diesel engine,” International Journal of Ambient Energy, Vol. 43(1), pp. 1556-1560, 2022. [CrossRef]
  • Khairil, A. Rizki, Iskandar, Jalaluddin, A. S. Silitonga, H. H. Masjuki, and T.M.I. Mahlia“The potential biodiesel production from Cerbera odollam oil (Bintaro) in Aceh,” MATEC Web Conferences, Vol. 159, Article 01049, 2018. [CrossRef]
  • S. Padmanabhan, T. Vinod Kumar, M. Chandrasekaran, and S. Ganesan, “Investigation of Sapindus seed biodiesel with nano additive on single cylinder diesel engine,” International Journal of Ambient Energy, Vol. 41(10), pp. 1106-1109, 2020.
  • D. D’Amato, N. Droste, B. Allen, M. Kettunen, K. Lähtinen, J. Korhonen, ... A. Toppinen, “Green, circular, bio economy: A comparative analysis of sustainability avenues,” Journal of Cleaner Production, Vol. 168, pp. 716-734, 2017. [CrossRef]
  • P. Stegmann, M. Londo, and M. Junginger, “The circular bioeconomy: Its elements and role in European bioeconomy clusters,” Resources, Conservation & Recycling: X, Vol. 6, Article 100029, 2020. [CrossRef]
  • A. Muscat et al., “Principles, drivers and opportunities of a circular bioeconomy,” Nat. Food, vol. 2, no. 8, pp. 561-566, 2021. [CrossRef]
  • V. L. Mangesh, E. M. de Olde, R. Ripoll-Bosch, H. H. E. Van Zanten, T. A. P. Metze, C. J. A. M. Termeer, M. K. van Ittersum, and I. J. M. de Boer., “Green energy: Hydroprocessing waste polypropylene to produce transport fuel,” Journal of Cleaner Production, Vol. 276, Article 124200, 2020. [CrossRef]
  • K. K. Pandey, and S. Murugan, “A review of bio-fuelled LHR engines,” International Journal of Ambient Energy, Vol. 43(1), pp. 2486-2509, 2022. [CrossRef]
  • K. K. Pandey, and M. S., “Thermal and experimental analyses of thermal barrier coated pistons,” International Journal of Modelling and Simulation, pp. 1-19, Preprint, 2023. doi: 10.1080/02286203.2023.2176676. [CrossRef]
  • H. Tarigonda, V. Reddy Gangula, P. Ratnaraju, R. R. Doddipalli, and R. L. Krupakaran, “Effect of TBC, turbocharger and EGR on the performance of diesel engine using biodiesel,” SAE Technical Paper 2022-28-0558, 2022. [CrossRef]
  • V. Sankar, M. Ramachandran, G. Thampi, and M. K. Jayaraj, “Combined effects of thermal barrier coating and blending of diesel fuel with biodiesel in diesel engines,” Materials Today Proceedings, Vol. 11(3), pp. 903-911, 2019. [CrossRef]
  • S. Padmanabhan, K. Giridharan, B. Stalin , V. Elango, J. Vairamuthu, P. Sureshkumar, L. T. Jule, and R. Krishnaraj. “Sustainability and environmental impact of ethanol and oxyhydrogen addition on nanocoated gasoline engine,” Bioinorganic Chemistry and Applications, Vol. 2022, Article 1936415, 2022. [CrossRef]
  • C. Karthikeyan, K. L. Harikrishna, and N. Nallusamy, “Experimental investigation of TBC coated piston with various blends of biodiesel,” Environmental Progress & Sustainable Energy, Vol. 42(4), Article e14065, 2023. [CrossRef]
  • P. Murugesan, P. V. Elumalai, D. Balasubramanian, S. Padmanabhan, N. Murugunachippan, Asif Afzal, P. Sharma, K. Kiran, J. S. Femilda Josephin, E. G. Varuvel , T. T. Le, T. Hai Truong, “Exploration of low heat rejection engine characteristics powered with carbon nanotubes-added waste plastic pyrolysis oil,” Process Safety and Environmental Protection, Vol. 176, pp. 1101-1119, 2023. [CrossRef]
  • E. P. Venkatesan, P. Murugesan, S. Rajendran, P. Sekar, P. A. Remigious, and R. B. Durai Chinna, “Experimental studies on thermal-barrier-coated engine fuelled by a blend of eucalyptus oil and DEE,” ACS Omega, Vol. 7(50), pp. 46391-46401, 2022. [CrossRef]
  • R. Rajesh, C. V. B. Reddy, and B. D. Prasad, “Experimental investigation of YSZ coated piston crown on performance and emission features of LHR diesel engine with mahua Biodiesel,” IOP Conference Series: Materials Science and Engineering, Vol. 998, Article 012054, 2020. [CrossRef]
  • J. Lie, M. B. Rizkiana, F. E. Soetaredjo, Y.-H. Ju, and S. Ismadji, “Production of biodiesel from sea mango (Cerbera odollam) seed using in situ subcritical methanol-water under a non-catalytic process,” International Journal of Industrial Chemistry, Vol. 9(1), pp. 53-59, 2018. [CrossRef]
  • S. S. Dhillon, and K. T. Tan, “Optimization of biodiesel production via methyl acetate reaction from cerbera odollam,” Advanced Energy Resources, Vol. 4(4), pp. 325-337, 2016. [CrossRef]
  • S. Padmanabhan, C. Joel, L. Joel, O. Y. Reddy, K. G. D. S. Harsha, and S. Ganesan, “Evaluation of waste plastic pyrolysis oil performance with diethyl ether additive on insulated piston diesel engine,” Nature Environment and Pollution Technology, Vol. 20(5), pp. 2079-2086, 2021. [CrossRef]
  • Z. Shu, J. Deng, Z. Qian, C. Fei, S. Zhu, Y. Du, and K. Zhou, “Thermal analysis of mullite coated piston used in a diesel engine,” Coatings, Vol. 12(9), Article 1302, 2022. [CrossRef]
  • M. A. J. Selvam, R. Arunraj, T. M. Inbamalar, V. Kannagi, and S. Padmanabhan, “Exploration of performance and emission characteristics of soybean biodiesel blends on CI engine,” in AIP Conference Proceedings, Vol. 2492, 2023. [CrossRef]
  • S. Ganesan, S. Padmanabhan, J. Hemanandh, and S. P. Venkatesan, “Influence of substrate temperature on coated engine piston head using multi-response optimisation techniques,” International Journal of Ambient Energy, Vol. 43(1), pp. 610-617, 2022. [CrossRef]
  • M. Bhargavi, T. Vinod Kumar, R. Ali Azmath Shaik, S. Kishore Kanna, and S. Padmanabhan, “Effective utilization and optimization of waste plastic oil with ethanol additive in diesel engine using full factorial design,” Materials Today: Proceedings, Vol. 52, pp. 930-936, 2022. [CrossRef]
  • P. Sambandam, P. Murugesan, M. I. Shajahan, B. Sethuraman, and H. A. Hussein, “Sustainability and environmental impact of hydroxy addition on a light-duty generator powered with an ethanol gasoline blend,” Journal of Renewable Energy and Environment, Vol. 9(2), pp. 82-92, 2022. [CrossRef]
  • V. L. Mangesh, S. Padmanabhan, P. Tamizhdurai, and A. Ramesh, “Experimental investigation to identify the type of waste plastic pyrolysis oil suitable for conversion to diesel engine fuel,” Journal of Cleaner Production, Vol. 246, Article 2020. [CrossRef]
  • S. Ramkumar, M. Parthasarathy, and S. Padmanabhan, “Performance optimization of HCCI engine fueled with Tamanu methyl ether,” The International Journal of Vehicle Structures and Systems, Vol. 11(2), pp. 149-153, 2019. [CrossRef]
  • S. Padmanabhan, K. Karthikeyan, K. K. Nagachandrika, K. Giridharan, and G. Chakravarthi, “Evaluation and optimization of plastic pyrolysis blends performance on diesel engine with ethanol additive using full factorial design,” The International Journal of Vehicle Structures and Systems, Vol. 14(3), pp. 348-355, 2022. [CrossRef]

Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine

Yıl 2023, Cilt: 6 Sayı: 4, 308 - 316, 31.12.2023
https://doi.org/10.35208/ert.1341951

Öz

It is essential to maintain the environment by preserving the ecological balance of the area and keeping an eye on emission regulations. It's common knowledge that fossil fuels are the backbone of the transportation industry. Over time, the atmospheric concentrations of carbon and nitrogen oxides have risen dramatically due to human activities, particularly the burning of fossil fuels at excessive rates. Long-term sustainability may be attainable with the implementation of a bio-based, circular economy. Fears of a future fuel shortage and the negative effects on the environment spurred researchers to search for more sustainable energy sources. Renewability, reduced emissions, biodegradability, and better lubricating characteristics are just some of the reasons why biodiesel is becoming increasingly popular as a viable alternative to petroleum diesel. In this research paper, biodiesel extracted from Cerbera odollam seeds was tested for its performance and emission characteristics on a low-heat rejection diesel engine with its piston coated with nano coating. The results were compared with those of a standard diesel engine, BCO25 at coated piston engine enhances break thermal efficiency by over 5.5%, consumes less fuel by 6.4%, reduces CO by 5.9%-10.7%, and reduces UBHC by 4% to 8.5%.

Kaynakça

  • D. Nagarajan, D.-J. Lee, and J.-S. Chang, “Chapter 22 - Circular bioeconomy approaches for sustainability and carbon mitigation in microalgal biorefinery,” S. Varjani, A. Pandey, T. Bhaskar, S. V. Mohan, and D. C. W. Tsang, (Eds.), Biofuels, Biochemicals, Elsevier, pp. 557-598, 2022. [CrossRef]
  • Y. Lokko, M. Heijde, K. Schebesta, P. Scholtès, M. Van Montagu, and M. Giacca, “Biotechnology and the bioeconomy—Towards inclusive and sustainable industrial development,” New Biotechnology, Vol. 40, pp. 5-10, 2018. [CrossRef]
  • World Business Council for Sustainable Development, “Circular Bioeconomy,” World Business Council for Sustainable Development, pp. 73, 2020.
  • J. Kansedo, K. T. Lee, and S. Bhatia, “Cerbera odollam (sea mango) oil as a promising non-edible feedstock for biodiesel production,” Fuel, Vol. 88(6), pp. 1148-1150, 2009. [CrossRef]
  • J. Thamilarasan, V. Ravikumar, S. P. Raj Yadav, J. Yarlagadda, A. Kumar, S. Ramasubramanian, B. Y. Asres, “Sustainability improvement of ethanol blended gasoline fuelled spark ignition engine by nanoparticles,” Journal of Nanomaterials, Vol. 2022, Article 7793947. [CrossRef]
  • J. Senthil Kumar, S. Ganesan, S. Sivasaravanan, S. Padmanabhan, L. Krishnan, and V. C. Aniruthan, “Effects of nano additives in engine emission characteristics using blends of lemon balm oil with diesel,” IOP Conference Series: Materials Science and Engineering, Vol. 197(1), Article 012022. [CrossRef]
  • V. Hariram, S. Seralathan, M. Rajasekaran, M. Dinesh Kumar, and S. Padmanabhan, “Effect of metallic nano-additives on combustion performance and emissions of DI CI engine fuelled with palmkernel methyl ester,” International Journal of Vehicle Structures and Systems, Vol. 9(2), pp. 103-109, 2017. [CrossRef]
  • S. Ganesan, S. Padmanabhan, S. Mahalingam, and C. Shanjeevi, “Environmental impact of VCR diesel engine characteristics using blends of cottonseed oil with nano additives,” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, Vol. 42(6), pp. 761-772, 2020. [CrossRef]
  • V. S. Shaisundaram, M. Chandrasekaran, M. Shanmugam, S. Padmanabhan, R. Muraliraja, and L. Karikalan, “Investigation of Momordica charantia seed biodiesel with cerium oxide nanoparticle on CI engine,” International Journal of Ambient Energy, Vol. 42(14), pp. 1615-1619, 2021. [CrossRef]
  • A. P. Venkatesh, S. Padmanabhan, G. V. Rajveer, K. Yuvaja, and M. Muniyappan, “Effect of fuel injection pressure on the performance and emission analysis of Mahua Methyl ester in a single cylinder diesel engine,” International Journal of Ambient Energy, Vol. 43(1), pp. 1556-1560, 2022. [CrossRef]
  • Khairil, A. Rizki, Iskandar, Jalaluddin, A. S. Silitonga, H. H. Masjuki, and T.M.I. Mahlia“The potential biodiesel production from Cerbera odollam oil (Bintaro) in Aceh,” MATEC Web Conferences, Vol. 159, Article 01049, 2018. [CrossRef]
  • S. Padmanabhan, T. Vinod Kumar, M. Chandrasekaran, and S. Ganesan, “Investigation of Sapindus seed biodiesel with nano additive on single cylinder diesel engine,” International Journal of Ambient Energy, Vol. 41(10), pp. 1106-1109, 2020.
  • D. D’Amato, N. Droste, B. Allen, M. Kettunen, K. Lähtinen, J. Korhonen, ... A. Toppinen, “Green, circular, bio economy: A comparative analysis of sustainability avenues,” Journal of Cleaner Production, Vol. 168, pp. 716-734, 2017. [CrossRef]
  • P. Stegmann, M. Londo, and M. Junginger, “The circular bioeconomy: Its elements and role in European bioeconomy clusters,” Resources, Conservation & Recycling: X, Vol. 6, Article 100029, 2020. [CrossRef]
  • A. Muscat et al., “Principles, drivers and opportunities of a circular bioeconomy,” Nat. Food, vol. 2, no. 8, pp. 561-566, 2021. [CrossRef]
  • V. L. Mangesh, E. M. de Olde, R. Ripoll-Bosch, H. H. E. Van Zanten, T. A. P. Metze, C. J. A. M. Termeer, M. K. van Ittersum, and I. J. M. de Boer., “Green energy: Hydroprocessing waste polypropylene to produce transport fuel,” Journal of Cleaner Production, Vol. 276, Article 124200, 2020. [CrossRef]
  • K. K. Pandey, and S. Murugan, “A review of bio-fuelled LHR engines,” International Journal of Ambient Energy, Vol. 43(1), pp. 2486-2509, 2022. [CrossRef]
  • K. K. Pandey, and M. S., “Thermal and experimental analyses of thermal barrier coated pistons,” International Journal of Modelling and Simulation, pp. 1-19, Preprint, 2023. doi: 10.1080/02286203.2023.2176676. [CrossRef]
  • H. Tarigonda, V. Reddy Gangula, P. Ratnaraju, R. R. Doddipalli, and R. L. Krupakaran, “Effect of TBC, turbocharger and EGR on the performance of diesel engine using biodiesel,” SAE Technical Paper 2022-28-0558, 2022. [CrossRef]
  • V. Sankar, M. Ramachandran, G. Thampi, and M. K. Jayaraj, “Combined effects of thermal barrier coating and blending of diesel fuel with biodiesel in diesel engines,” Materials Today Proceedings, Vol. 11(3), pp. 903-911, 2019. [CrossRef]
  • S. Padmanabhan, K. Giridharan, B. Stalin , V. Elango, J. Vairamuthu, P. Sureshkumar, L. T. Jule, and R. Krishnaraj. “Sustainability and environmental impact of ethanol and oxyhydrogen addition on nanocoated gasoline engine,” Bioinorganic Chemistry and Applications, Vol. 2022, Article 1936415, 2022. [CrossRef]
  • C. Karthikeyan, K. L. Harikrishna, and N. Nallusamy, “Experimental investigation of TBC coated piston with various blends of biodiesel,” Environmental Progress & Sustainable Energy, Vol. 42(4), Article e14065, 2023. [CrossRef]
  • P. Murugesan, P. V. Elumalai, D. Balasubramanian, S. Padmanabhan, N. Murugunachippan, Asif Afzal, P. Sharma, K. Kiran, J. S. Femilda Josephin, E. G. Varuvel , T. T. Le, T. Hai Truong, “Exploration of low heat rejection engine characteristics powered with carbon nanotubes-added waste plastic pyrolysis oil,” Process Safety and Environmental Protection, Vol. 176, pp. 1101-1119, 2023. [CrossRef]
  • E. P. Venkatesan, P. Murugesan, S. Rajendran, P. Sekar, P. A. Remigious, and R. B. Durai Chinna, “Experimental studies on thermal-barrier-coated engine fuelled by a blend of eucalyptus oil and DEE,” ACS Omega, Vol. 7(50), pp. 46391-46401, 2022. [CrossRef]
  • R. Rajesh, C. V. B. Reddy, and B. D. Prasad, “Experimental investigation of YSZ coated piston crown on performance and emission features of LHR diesel engine with mahua Biodiesel,” IOP Conference Series: Materials Science and Engineering, Vol. 998, Article 012054, 2020. [CrossRef]
  • J. Lie, M. B. Rizkiana, F. E. Soetaredjo, Y.-H. Ju, and S. Ismadji, “Production of biodiesel from sea mango (Cerbera odollam) seed using in situ subcritical methanol-water under a non-catalytic process,” International Journal of Industrial Chemistry, Vol. 9(1), pp. 53-59, 2018. [CrossRef]
  • S. S. Dhillon, and K. T. Tan, “Optimization of biodiesel production via methyl acetate reaction from cerbera odollam,” Advanced Energy Resources, Vol. 4(4), pp. 325-337, 2016. [CrossRef]
  • S. Padmanabhan, C. Joel, L. Joel, O. Y. Reddy, K. G. D. S. Harsha, and S. Ganesan, “Evaluation of waste plastic pyrolysis oil performance with diethyl ether additive on insulated piston diesel engine,” Nature Environment and Pollution Technology, Vol. 20(5), pp. 2079-2086, 2021. [CrossRef]
  • Z. Shu, J. Deng, Z. Qian, C. Fei, S. Zhu, Y. Du, and K. Zhou, “Thermal analysis of mullite coated piston used in a diesel engine,” Coatings, Vol. 12(9), Article 1302, 2022. [CrossRef]
  • M. A. J. Selvam, R. Arunraj, T. M. Inbamalar, V. Kannagi, and S. Padmanabhan, “Exploration of performance and emission characteristics of soybean biodiesel blends on CI engine,” in AIP Conference Proceedings, Vol. 2492, 2023. [CrossRef]
  • S. Ganesan, S. Padmanabhan, J. Hemanandh, and S. P. Venkatesan, “Influence of substrate temperature on coated engine piston head using multi-response optimisation techniques,” International Journal of Ambient Energy, Vol. 43(1), pp. 610-617, 2022. [CrossRef]
  • M. Bhargavi, T. Vinod Kumar, R. Ali Azmath Shaik, S. Kishore Kanna, and S. Padmanabhan, “Effective utilization and optimization of waste plastic oil with ethanol additive in diesel engine using full factorial design,” Materials Today: Proceedings, Vol. 52, pp. 930-936, 2022. [CrossRef]
  • P. Sambandam, P. Murugesan, M. I. Shajahan, B. Sethuraman, and H. A. Hussein, “Sustainability and environmental impact of hydroxy addition on a light-duty generator powered with an ethanol gasoline blend,” Journal of Renewable Energy and Environment, Vol. 9(2), pp. 82-92, 2022. [CrossRef]
  • V. L. Mangesh, S. Padmanabhan, P. Tamizhdurai, and A. Ramesh, “Experimental investigation to identify the type of waste plastic pyrolysis oil suitable for conversion to diesel engine fuel,” Journal of Cleaner Production, Vol. 246, Article 2020. [CrossRef]
  • S. Ramkumar, M. Parthasarathy, and S. Padmanabhan, “Performance optimization of HCCI engine fueled with Tamanu methyl ether,” The International Journal of Vehicle Structures and Systems, Vol. 11(2), pp. 149-153, 2019. [CrossRef]
  • S. Padmanabhan, K. Karthikeyan, K. K. Nagachandrika, K. Giridharan, and G. Chakravarthi, “Evaluation and optimization of plastic pyrolysis blends performance on diesel engine with ethanol additive using full factorial design,” The International Journal of Vehicle Structures and Systems, Vol. 14(3), pp. 348-355, 2022. [CrossRef]
Toplam 36 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Çevresel Olarak Sürdürülebilir Mühendislik
Bölüm Research Articles
Yazarlar

Ramanujam Anbazhagan 0009-0002-9880-5693

Panchacharam Naveenchandran Bu kişi benim 0009-0002-2354-4505

Yayımlanma Tarihi 31 Aralık 2023
Gönderilme Tarihi 12 Ağustos 2023
Kabul Tarihi 16 Eylül 2023
Yayımlandığı Sayı Yıl 2023 Cilt: 6 Sayı: 4

Kaynak Göster

APA Anbazhagan, R., & Naveenchandran, P. (2023). Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine. Environmental Research and Technology, 6(4), 308-316. https://doi.org/10.35208/ert.1341951
AMA Anbazhagan R, Naveenchandran P. Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine. ERT. Aralık 2023;6(4):308-316. doi:10.35208/ert.1341951
Chicago Anbazhagan, Ramanujam, ve Panchacharam Naveenchandran. “Enhancement of the Environmental Bio-Economy by Investigating a Sustainable Cerbera Odollam Biodiesel at a Low Heat Rejection Engine”. Environmental Research and Technology 6, sy. 4 (Aralık 2023): 308-16. https://doi.org/10.35208/ert.1341951.
EndNote Anbazhagan R, Naveenchandran P (01 Aralık 2023) Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine. Environmental Research and Technology 6 4 308–316.
IEEE R. Anbazhagan ve P. Naveenchandran, “Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine”, ERT, c. 6, sy. 4, ss. 308–316, 2023, doi: 10.35208/ert.1341951.
ISNAD Anbazhagan, Ramanujam - Naveenchandran, Panchacharam. “Enhancement of the Environmental Bio-Economy by Investigating a Sustainable Cerbera Odollam Biodiesel at a Low Heat Rejection Engine”. Environmental Research and Technology 6/4 (Aralık 2023), 308-316. https://doi.org/10.35208/ert.1341951.
JAMA Anbazhagan R, Naveenchandran P. Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine. ERT. 2023;6:308–316.
MLA Anbazhagan, Ramanujam ve Panchacharam Naveenchandran. “Enhancement of the Environmental Bio-Economy by Investigating a Sustainable Cerbera Odollam Biodiesel at a Low Heat Rejection Engine”. Environmental Research and Technology, c. 6, sy. 4, 2023, ss. 308-16, doi:10.35208/ert.1341951.
Vancouver Anbazhagan R, Naveenchandran P. Enhancement of the environmental bio-economy by investigating a sustainable Cerbera odollam biodiesel at a low heat rejection engine. ERT. 2023;6(4):308-16.