493
Views
54
CrossRef citations to date
0
Altmetric
Original Articles

Bio-lubricant as an Alternative to Mineral Oil for a CI Engine—An Experimental Investigation with Pongamia Oil as a Lubricant

&
Pages 1016-1026 | Received 17 Jan 2010, Accepted 27 Feb 2010, Published online: 24 Apr 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (8)

P. Chengareddy & Arumugam Shanmugasundaram. (2023) Vegetable Oil Based Compressor Oil-optimising of Tribological Characteristics. Australian Journal of Mechanical Engineering 21:5, pages 1564-1579.
Read now
Kecheng Gu, Qiaoyu Gan, Wang Lin, Xiuli Zuo, Junyu Liu, Jian Wang, Keyu Lin, Hao Yan & Zeqi Jiang. (2023) Controllable synthesis of 0D, 1D, and 2D nano lanthanum borates and their dispersion stabilities and tribological properties in rapeseed oil. Journal of Dispersion Science and Technology 44:8, pages 1317-1326.
Read now
Neha Sharma, Gananath D. Thakre & Anjan Ray. (2021) Hitherto Unexplored Three-Membered Heterocyclic Rings Favorably Alter Tribological Properties of Fatty Acid Linear Esters. Tribology Transactions 64:6, pages 996-1021.
Read now
Ping Liu, Jianhua Fang, Xin Wang, Jiang Wu & Boshui Chen. (2021) A novel boron-nitrogen modified castor oil as an ecofriendly and efficient lubricant additive. Journal of Dispersion Science and Technology 42:2, pages 180-189.
Read now
Yashvir Singh, Abhishek Sharma, Nishant Singh, Amneesh Singla & Pankaj Mohan Rastogi. (2020) Prospects of inedible plant oil-driven bio-lubricants for tribological characteristics – a review. International Journal of Ambient Energy 41:13, pages 1534-1547.
Read now
Deqing Mei, Shengchao Dai, Tiaotiao Chen, Hengquan Wang & Yinnan Yuan. (2020) Absorption of fuel containing esters on iron surface based on molecular simulation and its effects on lubricity. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 0:0, pages 1-12.
Read now
S. Baskar, G. Sriram & S. Arumugam. (2017) Tribological Analysis of a Hydrodynamic Journal Bearing under the Influence of Synthetic and Biolubricants. Tribology Transactions 60:3, pages 428-436.
Read now
M. Habibullah, H. H. Masjuki, M. A. Kalam, M. Gulzar, A. Arslan & Rehan Zahid. (2015) Tribological Characteristics of Calophyllum inophyllum–Based TMP (Trimethylolpropane) Ester as Energy-Saving and Biodegradable Lubricant. Tribology Transactions 58:6, pages 1002-1011.
Read now

Articles from other publishers (46)

Wasihun Diriba Keno, Kannaki Shanmugam Pondicherry, Dieter Fauconnier, Venkata Ramayya Ancha & Patrick De Baets. 2024. Intelligent Manufacturing and Energy Sustainability. Intelligent Manufacturing and Energy Sustainability 13 22 .
Muhammad Ali Ijaz Malik, M.A. Kalam, M.A. Mujtaba & Fares Almomani. (2023) A review of recent advances in the synthesis of environmentally friendly, sustainable, and nontoxic bio-lubricants: Recommendations for the future implementations. Environmental Technology & Innovation 32, pages 103366.
Crossref
R. Umesh krishnan, Ashwin Reji John, P.V. Anoop, Amith Kuriyakose, Anantha Krishnan, Lakshmi Mohan & Amith Aravind. (2023) Characterization and formulation of an environment-friendly lubricant from Pongamia (Millettia Pinnata) oil using biodegradable additives. Materials Today: Proceedings.
Crossref
B. Yokesh Kumar, S. Baskar, N. Pragadish & A. Thenmozhi. 2023. Handbook of Research on Advanced Functional Materials for Orthopedic Applications. Handbook of Research on Advanced Functional Materials for Orthopedic Applications 168 185 .
Rajaganapathy Chinnachamy, Vasudevan Durairaj, Murugapoopathi Saravanamuthu & Varthini Rajagopal. (2022) Evaluation of the effect of silver nanoparticles on the tribological and thermophysical properties of bio-lubricants. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering 237:2, pages 410-417.
Crossref
Meghana K. Navada, Ranjtha Rai, Ganesha A & Suraj Patil. (2023) Synthesis and characterization of size controlled nano copper oxide structures for antioxidant study and as eco-friendly lubricant additive for bio-oils. Ceramics International 49:7, pages 10402-10410.
Crossref
Rajendra Uppar, P. Dinesha & Shiva Kumar. (2022) A critical review on vegetable oil-based bio-lubricants: preparation, characterization, and challenges. Environment, Development and Sustainability.
Crossref
Mehmood Ul Hassan, Muhammad Usman, Rehmat Bashir, Asad Naeem Shah, Muhammad Ali Ijaz Malik, M.A. Mujtaba, Samah Elsayed Elkhatib & Md Abul Kalam. (2022) Tribological Analysis of Molybdenum Disulfide (MOS2) Additivated in the Castor and Mineral Oil Used in Diesel Engine. Sustainability 14:17, pages 10485.
Crossref
Chiew Tin Lee, Mei Bao Lee, Guo Ren Mong & William Woei Fong Chong. (2022) A bibliometric analysis on the tribological and physicochemical properties of vegetable oil–based bio-lubricants (2010–2021). Environmental Science and Pollution Research 29:37, pages 56215-56248.
Crossref
H.R. Amriya Tasneem, K.P. Ravikumar & H.V. Ramakrishna. (2022) Performance and Wear Debris Characteristics of Karanja Biodiesel and Biolubricant as a Substitute in a Compression Ignition Engine. Fuel 319, pages 123870.
Crossref
Rakesh Narayana Sarma & Ravikrishnan Vinu. (2022) Current Status and Future Prospects of Biolubricants: Properties and Applications. Lubricants 10:4, pages 70.
Crossref
M. Shahabuddin, M. Mofijur, I.M. Rizwanul Fattah, M.A. Kalam, H.H. Masjuki, M.A. Chowdhury & Nayem Hossain. (2022) Study on the tribological characteristics of plant oil-based bio-lubricant with automotive liner-piston ring materials. Current Research in Green and Sustainable Chemistry 5, pages 100262.
Crossref
D. K. KARUPANNASAMY, M. SAMBATHKUMAR, R. GUKENDRAN, K. S. K. SASIKUMAR, N. BAASKARAN & S. SHANKAR. (2021) ASSESSING THE TRIBOLOGICAL PROPERTIES OF VEGETABLE OIL EMULSIONS AND MACHINING PARAMETER OPTIMIZATION USING RESPONSE SURFACE METHODOLOGY. Surface Review and Letters 28:12.
Crossref
Abhijith Kunneparambil Sukumaran, Ananthan D Thampi, E Sneha, Muhammed Arif & S Rani. (2021) Effect of bovine serum albumin on the lubricant properties of rice bran oil: a biomimetic approach. Sādhanā 46:4.
Crossref
A R Girish & Y M Shashidhara. (2021) Study on Performance and Emission Characteristics of Four stroke Gasoline engine under Formulated Neem oil as base lubricant. IOP Conference Series: Materials Science and Engineering 1189:1, pages 012014.
Crossref
Krishna Chowdary, Ankit Kotia, Venkatasubramaniam Lakshmanan, Ammar H. Elsheikh & Mohamed Kamal Ahmed Ali. (2021) A review of the tribological and thermophysical mechanisms of bio-lubricants based nanomaterials in automotive applications. Journal of Molecular Liquids 339, pages 116717.
Crossref
Gulab Siraskar, Vishnu Wakchaure & Ramchandra Jahagirdar. (2021) Diesel engine emission characteristics for cotton seed (CS) trimethylolpropane (TMP) ester (CSTE) as lubricant. Arabian Journal of Geosciences 14:18.
Crossref
A. G. N. Sofiah, M. Samykano, S. Shahabuddin, K. Kadirgama & A. K. Pandey. (2020) An experimental study on characterization and properties of eco-friendly nanolubricant containing polyaniline (PANI) nanotubes blended in RBD palm olein oil. Journal of Thermal Analysis and Calorimetry 145:6, pages 2967-2981.
Crossref
C. RajaganapathyD. Vasudevan. (2021) Tribological and thermo-physical properties of jatropha oil containing TiO 2 nanoparticles . Transactions of the Canadian Society for Mechanical Engineering 45:2, pages 262-272.
Crossref
Raj Shah, Mathias Woydt & Stanley Zhang. (2021) The Economic and Environmental Significance of Sustainable Lubricants. Lubricants 9:2, pages 21.
Crossref
Anh Tuan Hoang, Sandro Nižetić & Aykut I. Ölçer. (2021) 2,5-Dimethylfuran (DMF) as a promising biofuel for the spark ignition engine application: A comparative analysis and review. Fuel 285, pages 119140.
Crossref
S. Baskar, S. Arumugam, G. Sriram & Venkata Sai Satyanarayana Sastry Sistla. 2021. Advances in Materials and Manufacturing Engineering. Advances in Materials and Manufacturing Engineering 587 593 .
Senthil Kumar Subburaj, Madavan Rengaraj & Ravindran Mariappan. (2020) Evaluating critical characteristics of vegetable oil as a biodegradable insulating oil for transformer. International Journal of Emerging Electric Power Systems 21:5.
Crossref
R. Ellappan, S. Arumugam & V. Santhanam. (2020) Electro-chemical corrosion Behavior of Vegetable oil-Based Engine oil. IOP Conference Series: Materials Science and Engineering 954:1, pages 012040.
Crossref
M. Gul, N.W.M. Zulkifli, H.H. Masjuki, M.A. Kalam, M.A. Mujtaba, M.H. Harith, A.Z. Syahir, Waqar Ahmed & Abdul Bari Farooq. (2020) Effect of TMP-based-cottonseed oil-biolubricant blends on tribological behavior of cylinder liner-piston ring combinations. Fuel 278, pages 118242.
Crossref
H. A. Hamid, Ghazali Omar, N. A. B. Masripan & R. Hasan. (2020) Tribological Behavioural of Bio-Oil Extracted from Peel Waste of Musa Aluminata Balbisiana. Tribology Online 15:4, pages 251-258.
Crossref
Chandra Mouli VV Kotturu, V Srinivas, V Vandana, Kodanda Rama Rao Chebattina & Y Seetha Rama Rao. (2019) Investigation of tribological properties and engine performance of polyol ester–based bio-lubricant: Commercial motorbike engine oil blends. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 234:5, pages 1304-1317.
Crossref
Yogendra Rathore, Dinesh Ramchandani & R.K. Pandey. (2019) Experimental investigation of performance characteristics of compression-ignition engine with biodiesel blends of Jatropha oil & coconut oil at fixed compression ratio. Heliyon 5:11, pages e02717.
Crossref
Shubrajit Bhaumik, Viorel Paleu, Rajan Pathak, Rishabh Maggirwar, Jitendra Kumar Katiyar & Anuj Kumar Sharma. (2019) Tribological investigation of r-GO additived biodegradable cashew nut shells liquid as an alternative industry lubricant. Tribology International 135, pages 500-509.
Crossref
Yashvir Singh, Abhishek Sharma & Amneesh Singla. (2019) Non-edible vegetable oil–based feedstocks capable of bio-lubricant production for automotive sector applications—a review. Environmental Science and Pollution Research 26:15, pages 14867-14882.
Crossref
J. Sunil, J. Vignesh, R. Vettumperumal, R. Maheswaran & R.A. Arul Raja. (2019) The thermal properties of CaO-Nanofluids. Vacuum 161, pages 383-388.
Crossref
Manoj Kumar Pathak, Amit Joshi, K. K. S. Mer, Jitendra K. Katiyar & Vinay Kumar Patel. 2019. Automotive Tribology. Automotive Tribology 197 214 .
Yashvir Singh, Paramvir Singh, Abhishek Sharma, Praveen Choudhary, Amneesh Singla & Nishant Kumar Singh. (2018) Optimization of wear and friction characteristics of Phyllanthus Emblica seed oil based lubricant using response surface methodology. Egyptian Journal of Petroleum 27:4, pages 1145-1155.
Crossref
Shiva Kumar, Pijakala Dinesha & Marc A. Rosen. (2018) Performance and emission characteristics of a bio-lubricated two-stroke gasoline engine. Environmental Science and Pollution Research 25:18, pages 17789-17796.
Crossref
S. Arumugam, R. Ellappan, S. Sangavi, G. Sriram & P. Ramakrishna. (2017) Feasibility Analysis of Biodegradable Automotive Lubricant: An Evaluation of Material–Lubricant Compatibility in a Corrosion Perspective. Arabian Journal for Science and Engineering 43:3, pages 1345-1368.
Crossref
Shubrajit Bhaumik, Shubhabrata Datta & S. D. Pathak. (2017) Analyses of Tribological Properties of Castor Oil With Various Carbonaceous Micro- and Nano-Friction Modifiers. Journal of Tribology 139:6.
Crossref
Yashvir Singh, Abid Farooq, Aamir Raza, Muhammad Arif Mahmood & Surbhi Jain. (2017) Sustainability of a non-edible vegetable oil based bio-lubricant for automotive applications: A review. Process Safety and Environmental Protection 111, pages 701-713.
Crossref
Sathuramalingam Pillay Darminesh, Nor Azwadi Che Sidik, G. Najafi, Rizalman Mamat, Tan Lit Ken & Yutaka Asako. (2017) Recent development on biodegradable nanolubricant: A review. International Communications in Heat and Mass Transfer 86, pages 159-165.
Crossref
A. R. Dey & R. D. Misra. (2016) Effect of infiltration of bio-lubricant on the performance of a compression ignition engine fuelled with biodiesel blends. Clean Technologies and Environmental Policy 19:2, pages 553-563.
Crossref
Yashvir Singh, Rajnish Garg & Suresh Kumar. (2015) Aspects of Non-edible Vegetable Oil-Based Bio-lubricants in the Automotive Sector. Green 5:1-6, pages 59-72.
Crossref
Yashvir Singh. (2015) Tribological behavior as lubricant additive and physiochemical characterization of Jatropha oil blends. Friction 3:4, pages 320-332.
Crossref
S. Rani, M.L. Joy & K. Prabhakaran Nair. (2015) Evaluation of physiochemical and tribological properties of rice bran oil ? biodegradable and potential base stoke for industrial lubricants. Industrial Crops and Products 65, pages 328-333.
Crossref
Yashvir Singh, Rajnish Garg & Suresh Kumar. (2015) Optimization of tribological behavior of Pongamia oil blends as an engine lubricant additive. Green Processing and Synthesis 4:5.
Crossref
S. Arumugam, G. Sriram & R. Ellappan. (2014) Bio-lubricant-biodiesel combination of rapeseed oil: An experimental investigation on engine oil tribology, performance, and emissions of variable compression engine. Energy 72, pages 618-627.
Crossref
H.M. Mobarak, E. Niza Mohamad, H.H. Masjuki, M.A. Kalam, K.A.H. Al Mahmud, M. Habibullah & A.M. Ashraful. (2014) The prospects of biolubricants as alternatives in automotive applications. Renewable and Sustainable Energy Reviews 33, pages 34-43.
Crossref
K. S. V. Krishna Reddy, Naval Kabra, Umesh Kunchum & T. Vijayakumar. (2014) Experimental Investigation on Usage of Palm Oil as a Lubricant to Substitute Mineral Oil in CI Engines. Chinese Journal of Engineering 2014, pages 1-5.
Crossref

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.