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Physico-chemical properties of yellow oleander (Thevetia peruviana) and their effects on the
qualities of biodiesel. Arid Zone J Eng Technol Environ 15(4):859–866
Niju S, Balajii M (2019) Waste Sea shells for biodiesel production–current status and future
perspective. In: Biochemical and environmental bioprocessing: challenges and developments.
CRC Press, Boca Raton, FL, p 53
Niju S, Anushya C, Balajii M (2019a) Process optimization for biodiesel production from Moringa
oleifera oil using conch shells as heterogeneous catalyst. Environ Prog Sustain Energy 38(3):
e13015
Niju S, Balajii M, Anushya C (2019b) A comprehensive review on biodiesel production using
Moringa oleifera oil. Int J Green Energy 16(9):702–715
Niju S, Raj FR, Anushya C, Balajii M (2019c) Optimization of acid catalyzed esterification and
mixed metal oxide catalyzed transesterification for biodiesel production from Moringa oleifera
oil. Green Process Synth 8(1):756–775
Niju S, Vishnupriya G, Balajii M (2019d) Process optimization of Calophyllum inophyllum-waste
cooking oil mixture for biodiesel production using Donax deltoides shells as heterogeneous
catalyst. Sustain Environ Res 29(1):18
Niju, S., & Balajii, M. (2019e). Waste Sea Shells for Biodiesel Production–Current Status and
Future Perspective. Biochemical and Environmental Bioprocessing: Challenges and Developments, 53.
Niju S, Balajii M, Vishnupriya G, Begum KMS, Anantharaman N (2019e) Prospects and potential
of Calophyllum Inophyllum as a renewable feedstock for biodiesel production. In: Horizons in
bioprocess engineering. Springer, Cham, pp 45–60
Niju S, Rabia R, Devi KS, Kumar MN, Balajii M (2020a) Modified malleus malleus shells for
biodiesel production from waste cooking oil: an optimization study using box–behnken design.
Waste Biomass Valoriz 11(3):793–806
Niju S, Kirthikaa M, Arrthi S, Dharani P, Ramya S, Balajii M (2020b) Fish-bone-Doped Sea Shell
for biodiesel production from waste cooking oil. J Inst Eng 101(1):53–60
Noureddini H, Zhu D (1997) Kinetics of transesterification of soybean oil. JACOS 74:1457–1463
Nwakaire JN, Durugu S (2013) Determination of physio-chemical properties of oleander seed oil
for biodiesel production. Niger J Technol 32(3):440–442
Ogunkunle O, Oniya OO, Adebayo AO (2017) Yield response of biodiesel production from
heterogeneous and homogeneous catalysis of milk bush seed (Thevetia peruviana) oil. Energy
Policy Res 4(1):21–28
Oladayo RI, Kemisola OO (2017) Assessment of milk bush seed oil as an auspicious feedstock for
biodiesel fuel. Int J Comput Theoret Chem 5:46
Olatunji OM, Akor AJ, Abowei MFN (2012) Modelling the chemical kinetics of milk bush
(Thevetia peruviana) oil transesterification process for biodiesel production. Cont J Eng Sci 7
(3):40–48
Oluwaniyi OO, Ibiyemi SA (2003) Efficacy of catalysts in the batch esterification of the fatty acids
of Thevetia peruviana seed oil. J Appl Sci Environ Manag 7(1):15–17
Oniya OO, Adebayo AO, Ogunkunle O (2016) Optimization of biodiesel production from milk
bush (Thevetia peruviana) oil using snail shell as catalyst. Adv Multidiscip Sci Res J 3(1):9–22
Osakwe EU, Ani IJ, Akpan UG, Olutoye MA (2018) Kolanut pod husk as a biobase catalyst for
fatty acid methyl ester production using Thevetia peruviana (yellow oleander) seed oil. IOP
Conf Ser: Earth Environ Sci 173(1):012–028
Oseni MI, Obetta SE, Orukotan FV (2012) Evaluation of fatty acids profile of ethyl esters of yellow
oleander and groundnut oils as biodiesel feedstock. Am J Sci Industr Res 3(2):62–68
Panchal BM, Deshmukh SA, Sharma MR (2016) Biodiesel from Thevetia peruviana seed oil with
dimethyl carbonate using as an active catalyst potassium-methoxide. Sains Malaysiana 45
(10):1461–1468
158
S. Sivamani et al.
Physico-chemical properties of yellow oleander (Thevetia peruviana) and their effects on the
qualities of biodiesel. Arid Zone J Eng Technol Environ 15(4):859–866
Niju S, Balajii M (2019) Waste Sea shells for biodiesel production–current status and future
perspective. In: Biochemical and environmental bioprocessing: challenges and developments.
CRC Press, Boca Raton, FL, p 53
Niju S, Anushya C, Balajii M (2019a) Process optimization for biodiesel production from Moringa
oleifera oil using conch shells as heterogeneous catalyst. Environ Prog Sustain Energy 38(3):
e13015
Niju S, Balajii M, Anushya C (2019b) A comprehensive review on biodiesel production using
Moringa oleifera oil. Int J Green Energy 16(9):702–715
Niju S, Raj FR, Anushya C, Balajii M (2019c) Optimization of acid catalyzed esterification and
mixed metal oxide catalyzed transesterification for biodiesel production from Moringa oleifera
oil. Green Process Synth 8(1):756–775
Niju S, Vishnupriya G, Balajii M (2019d) Process optimization of Calophyllum inophyllum-waste
cooking oil mixture for biodiesel production using Donax deltoides shells as heterogeneous
catalyst. Sustain Environ Res 29(1):18
Niju, S., & Balajii, M. (2019e). Waste Sea Shells for Biodiesel Production–Current Status and
Future Perspective. Biochemical and Environmental Bioprocessing: Challenges and Developments, 53.
Niju S, Balajii M, Vishnupriya G, Begum KMS, Anantharaman N (2019e) Prospects and potential
of Calophyllum Inophyllum as a renewable feedstock for biodiesel production. In: Horizons in
bioprocess engineering. Springer, Cham, pp 45–60
Niju S, Rabia R, Devi KS, Kumar MN, Balajii M (2020a) Modified malleus malleus shells for
biodiesel production from waste cooking oil: an optimization study using box–behnken design.
Waste Biomass Valoriz 11(3):793–806
Niju S, Kirthikaa M, Arrthi S, Dharani P, Ramya S, Balajii M (2020b) Fish-bone-Doped Sea Shell
for biodiesel production from waste cooking oil. J Inst Eng 101(1):53–60
Noureddini H, Zhu D (1997) Kinetics of transesterification of soybean oil. JACOS 74:1457–1463
Nwakaire JN, Durugu S (2013) Determination of physio-chemical properties of oleander seed oil
for biodiesel production. Niger J Technol 32(3):440–442
Ogunkunle O, Oniya OO, Adebayo AO (2017) Yield response of biodiesel production from
heterogeneous and homogeneous catalysis of milk bush seed (Thevetia peruviana) oil. Energy
Policy Res 4(1):21–28
Oladayo RI, Kemisola OO (2017) Assessment of milk bush seed oil as an auspicious feedstock for
biodiesel fuel. Int J Comput Theoret Chem 5:46
Olatunji OM, Akor AJ, Abowei MFN (2012) Modelling the chemical kinetics of milk bush
(Thevetia peruviana) oil transesterification process for biodiesel production. Cont J Eng Sci 7
(3):40–48
Oluwaniyi OO, Ibiyemi SA (2003) Efficacy of catalysts in the batch esterification of the fatty acids
of Thevetia peruviana seed oil. J Appl Sci Environ Manag 7(1):15–17
Oniya OO, Adebayo AO, Ogunkunle O (2016) Optimization of biodiesel production from milk
bush (Thevetia peruviana) oil using snail shell as catalyst. Adv Multidiscip Sci Res J 3(1):9–22
Osakwe EU, Ani IJ, Akpan UG, Olutoye MA (2018) Kolanut pod husk as a biobase catalyst for
fatty acid methyl ester production using Thevetia peruviana (yellow oleander) seed oil. IOP
Conf Ser: Earth Environ Sci 173(1):012–028
Oseni MI, Obetta SE, Orukotan FV (2012) Evaluation of fatty acids profile of ethyl esters of yellow
oleander and groundnut oils as biodiesel feedstock. Am J Sci Industr Res 3(2):62–68
Panchal BM, Deshmukh SA, Sharma MR (2016) Biodiesel from Thevetia peruviana seed oil with
dimethyl carbonate using as an active catalyst potassium-methoxide. Sains Malaysiana 45
(10):1461–1468
158
S. Sivamani et al.
