Betiku E, Ajala SO (2014) Modeling and optimization of Thevetia peruviana (yellow oleander) oil
biodiesel synthesis via Musa paradisiaca (plantain) peels as heterogeneous base catalyst: a case
of artificial neural network vs. response surface methodology. Ind Crop Prod 53:314–322
Bohlouli A, Mahdavian L (2019) Catalysts used in biodiesel production: a review. Biofuels 3:1–14
Bora DK (2009) Performance of single cylinder diesel engine with karabi seed biodiesel. CSIR,
New Delhi
Bora MM, Gogoi P, Deka DC, Kakati DK (2014a) Synthesis and characterization of yellow
oleander (Thevetia peruviana) seed oil-based alkyd resin. Ind Crop Prod 52:721–728
Bora P, Konwar LJ, Boro J, Phukan MM, Deka D, Konwar BK (2014b) Hybrid biofuels from
oil-rich fodder crops: a comparative standpoint with corresponding biodiesel. Appl Energy
135:450–460
Bora P, Konwar LJ, Phukan MM, Deka D, Konwar BK (2015) Microemulsion based hybrid
biofuels from Thevetia peruviana seed oil: structural and dynamic investigations. Fuel
157:208–218
Borah MJ, Devi A, Das V, Deka D (2017) Catalytic conversion of Thevetia peruviana oil into
biodiesel by TiO 2 -ZnO nanocatalyst. Int J Res Eng Technol 6(1):56–60
Canakci M, Van Gerpen J (1999) Biodiesel production via acid catalysis. Trans ASAE 42(5):1203
Chavan M, Sutar A, Bhatkande R, Gurav R, Mulla M, Deokar A, Harari P (2018) Experimental
studies on production of biodiesel from Thevetia peruviana feedstock. Int J Eng Manage Res 8
(2):46–49
Cherubini F, Jungmeier G, Wellisch M, Willke T, Skiadas I, Van Ree R, de Jong E (2009) Toward a
common classification approach for biorefinery systems. Biofuels Bioprod Biorefin 3
(5):534–546
Darnoko D, Cheryan M (2000) Kinetics of palm oil transesterification in a batch reactor. JAOCS
77:1263–1266
Dawood S, Ahmad M, Ullah K, Zafar M, Khan K (2018) Synthesis and characterization of methyl
esters from non-edible plant species yellow oleander oil, using magnesium oxide (MgO) nanocatalyst. Mater Res Bull 101:371–379
Deka DC, Basumatary S (2011) High quality biodiesel from yellow oleander (Thevetia peruviana)
seed oil. Biomass Bioenergy 35(5):1797–1803
Dhoot SB, Jaju DR, Deshmukh SA, Panchal BM, Sharma MR (2011) Extraction of Thevetia
peruviana seed oil and optimization of biodiesel production using alkali catalyzed methanolysis.
J Altern Energy Sour Technol 2(2):8–16
Duraisamy MK, Balusamy T, Senthilkumar T (2012) Effect of compression ratio on CI engine
fueled with methyl ester of Thevetia peruviana seed oil. ARPN J Engi Appl Sci 7(2):229–232
Eloka-Eboka AC, Inambao FL (2017) Production properties studies of tropical Thevetia peruviana
and Jatropha curcas biodiesel using biometallic-salts as catalysts. In: Proceedings of the world
congress on engineering and computer science, p 2
Fayyazi E, Ghobadian B, Najafi G, Hosseinzadeh B, Mamat R, Hosseinzadeh J (2015) An
ultrasound-assisted system for the optimization of biodiesel production from chicken fat oil
using a genetic algorithm and response surface methodology. Ultrason Sonochem 26:312–320
Ferreira RSB, dos Passos RM, Sampaio KA, Batista EA (2019) Heterogeneous catalysts for
biodiesel production: a review. Food Public Health 9:125–137
Gurusala NK, Selvan VAM (2015) Effects of alumina nanoparticles in waste chicken fat biodiesel
on the operating characteristics of a compression ignition engine. Clean Techn Environ Policy
17(3):681–692
Hoque ME, Singh A, Chuan YL (2011) Biodiesel from low cost feedstocks: the effects of process
parameters on the biodiesel yield. Biomass Bioenergy 35(4):1582–1587
Howard A, Chris R (2005) Elementary linear algebra, 9th edn. Wiley, Hoboken. 978-0-471-669593
Ibiyemi SA, Fadipe VO, Akinremi OO, Bako SS (2002) Variation in oil composition of Thevetia
peruviana Juss ‘Yellow Oleander’ fruit seeds. J Appl Sci Environ Manag 6:61–65
156
S. Sivamani et al.
biodiesel synthesis via Musa paradisiaca (plantain) peels as heterogeneous base catalyst: a case
of artificial neural network vs. response surface methodology. Ind Crop Prod 53:314–322
Bohlouli A, Mahdavian L (2019) Catalysts used in biodiesel production: a review. Biofuels 3:1–14
Bora DK (2009) Performance of single cylinder diesel engine with karabi seed biodiesel. CSIR,
New Delhi
Bora MM, Gogoi P, Deka DC, Kakati DK (2014a) Synthesis and characterization of yellow
oleander (Thevetia peruviana) seed oil-based alkyd resin. Ind Crop Prod 52:721–728
Bora P, Konwar LJ, Boro J, Phukan MM, Deka D, Konwar BK (2014b) Hybrid biofuels from
oil-rich fodder crops: a comparative standpoint with corresponding biodiesel. Appl Energy
135:450–460
Bora P, Konwar LJ, Phukan MM, Deka D, Konwar BK (2015) Microemulsion based hybrid
biofuels from Thevetia peruviana seed oil: structural and dynamic investigations. Fuel
157:208–218
Borah MJ, Devi A, Das V, Deka D (2017) Catalytic conversion of Thevetia peruviana oil into
biodiesel by TiO 2 -ZnO nanocatalyst. Int J Res Eng Technol 6(1):56–60
Canakci M, Van Gerpen J (1999) Biodiesel production via acid catalysis. Trans ASAE 42(5):1203
Chavan M, Sutar A, Bhatkande R, Gurav R, Mulla M, Deokar A, Harari P (2018) Experimental
studies on production of biodiesel from Thevetia peruviana feedstock. Int J Eng Manage Res 8
(2):46–49
Cherubini F, Jungmeier G, Wellisch M, Willke T, Skiadas I, Van Ree R, de Jong E (2009) Toward a
common classification approach for biorefinery systems. Biofuels Bioprod Biorefin 3
(5):534–546
Darnoko D, Cheryan M (2000) Kinetics of palm oil transesterification in a batch reactor. JAOCS
77:1263–1266
Dawood S, Ahmad M, Ullah K, Zafar M, Khan K (2018) Synthesis and characterization of methyl
esters from non-edible plant species yellow oleander oil, using magnesium oxide (MgO) nanocatalyst. Mater Res Bull 101:371–379
Deka DC, Basumatary S (2011) High quality biodiesel from yellow oleander (Thevetia peruviana)
seed oil. Biomass Bioenergy 35(5):1797–1803
Dhoot SB, Jaju DR, Deshmukh SA, Panchal BM, Sharma MR (2011) Extraction of Thevetia
peruviana seed oil and optimization of biodiesel production using alkali catalyzed methanolysis.
J Altern Energy Sour Technol 2(2):8–16
Duraisamy MK, Balusamy T, Senthilkumar T (2012) Effect of compression ratio on CI engine
fueled with methyl ester of Thevetia peruviana seed oil. ARPN J Engi Appl Sci 7(2):229–232
Eloka-Eboka AC, Inambao FL (2017) Production properties studies of tropical Thevetia peruviana
and Jatropha curcas biodiesel using biometallic-salts as catalysts. In: Proceedings of the world
congress on engineering and computer science, p 2
Fayyazi E, Ghobadian B, Najafi G, Hosseinzadeh B, Mamat R, Hosseinzadeh J (2015) An
ultrasound-assisted system for the optimization of biodiesel production from chicken fat oil
using a genetic algorithm and response surface methodology. Ultrason Sonochem 26:312–320
Ferreira RSB, dos Passos RM, Sampaio KA, Batista EA (2019) Heterogeneous catalysts for
biodiesel production: a review. Food Public Health 9:125–137
Gurusala NK, Selvan VAM (2015) Effects of alumina nanoparticles in waste chicken fat biodiesel
on the operating characteristics of a compression ignition engine. Clean Techn Environ Policy
17(3):681–692
Hoque ME, Singh A, Chuan YL (2011) Biodiesel from low cost feedstocks: the effects of process
parameters on the biodiesel yield. Biomass Bioenergy 35(4):1582–1587
Howard A, Chris R (2005) Elementary linear algebra, 9th edn. Wiley, Hoboken. 978-0-471-669593
Ibiyemi SA, Fadipe VO, Akinremi OO, Bako SS (2002) Variation in oil composition of Thevetia
peruviana Juss ‘Yellow Oleander’ fruit seeds. J Appl Sci Environ Manag 6:61–65
156
S. Sivamani et al.
