Page 42 - AJWEP-22-5
P. 42
Rajak, et al.
Recent advances in photocatalytic advanced oxidation of free fatty acids (FFA) in acid oil for biodiesel
processes for organic compound degradation: A review. production: An optimization study. Res Chem Intermed.
Desalination Water Treat. 2024;318:100384. 2021;41:1035-1051.
doi: 10.1016/j.dwt.2024.100384 doi: 10.1007/s11164-013-1253-6
33. López DE, Goodwin JG Jr., Bruce DA, Lotero E. 44. Xie W, Yang X, Hu P. Cs2.5H0.5PW12O40 encapsulated
Transesterification of triacetin with methanol on solid acid in metal-organic framework UiO-66 as heterogeneous
and base catalysts. Appl Catal A Gen. 2005;295:97-105. catalysts for acidolysis of soybean oil. Catal Lett.
doi: 10.1016/j.apcata.2005.07.055 2017;147:2772-2782.
34. Singh AP, He B, Thompson J, Gerpen J. Process doi: 10.1007/s10562-017-2189-z
optimization of biodiesel production using alkaline 45. Peng C, Yu D, Zhang C, et al. Alkali/alkaline-earth
catalysts. Appl Eng Agric. 2006;22:597-600. metal-modified MnOx supported on three-dimensionally
doi: 10.13031/2013.21213 ordered macroporous-mesoporous TixSi1-xO2
35. Naveenkumar R, Baskar G. Biodiesel production from catalysts: Preparation and catalytic performance for soot
Calophyllum inophyllum oil using zinc doped calcium combustion. J Environ Sci (China). 2023;125:82-94.
oxide (Plaster of Paris) nanocatalyst. Bioresour Technol. doi: 10.1016/j.jes.2021.10.029
2019;280:493-496. 46. Babak S, Iman H, Zuhairi AA. Statistical evaluation of
doi: 10.1016/j.biortech.2019.02.078 the pertinent parameters in bio-synthesis of Ag/MWf-
36. Soeratri W, Hidayah R, Rosita N. Effect of combination CNT composites using plackett-burman design and
soy bean oil and oleic acid to characteristic, penetration, response surface methodology. Iran J Chem Chem Eng
physical stability of nanostructure lipid carrier Int English Ed. 2013;32(7):113-126.
resveratrol. Fol Med Indones. 2019;55:213-222. 47. Athar M, Zaidi S, Hassan SZ. Intensification and
doi: 10.20473/fmi.v55i3.15505 optimization of biodiesel production using microwave-
37. Maroa S, Inambao F. A review of sustainable biodiesel assisted acid-organo catalyzed transesterification
production using biomass derived heterogeneous process. Sci Rep. 2020;10:21239.
catalysts. Eng Life Sci. 2021;21(12):790-824. doi: 10.1038/s41598-020-77798-1
doi: 10.1002/elsc.202100025 48. Kedir WM, Wondimu KT, Weldegrum GS. Optimization
38. Pastore C, Lopez A, Mascolo G. Efficient conversion and characterization of biodiesel from waste cooking oil
of brown grease produced by municipal wastewater using modified CaO catalyst derived from snail shell.
treatment plant into biofuel using aluminium chloride Heliyon. 2023;9(5):e16475.
hexahydrate under very mild conditions. Bioresour doi: 10.1016/j.heliyon.2023.e16475
Technol. 2014;155:91-97. 49. Al-Zeghayer YS, Jibril BY. On the effects of calcination
doi: 10.1016/j.biortech.2013.12.106 conditions on the surface and catalytic properties
39. Din NAS, Lim SJ, Maskat MY, et al. Lactic acid of γ-Al2O3-supported CoMo hydrodesulfurization
separation and recovery from fermentation broth by catalysts. Appl Catal A Gen. 2005;292:287-294.
ion-exchange resin: A review. Bioresour Bioprocess. doi: 10.1016/j.apcata.2005.06.014
2021;8:31. 50. Zul NA, Ganesan S, Hamidon TS, Oh WD, Hussin MH.
doi: 10.1186/s40643-021-00384-4 A review on the utilization of calcium oxide as a base
40. Nguyen HD, Nguyen MH, Nguyen TD, Nguyen PT. catalyst in biodiesel production. J Environ Chem Eng.
Nephelium lappaceum oil: A low-cost alternative 2021;9(4):105741.
feedstock for sustainable biodiesel production using doi: 10.1016/j.jece.2021.105741
magnetic solid acids. Environ Progress Sustain Energy. 51. Wang J, Wang P, Yoshida A, et al. Mn-Co oxide
2015;35:603-610. decorated on cu nanowires as efficient catalysts for
doi: 10.1002/ep.12254 catalytic oxidation of toluene. Carbon Resour Convers.
41. Teo SH, Goto M, Taufiq-Yap YH. Biodiesel production 2020;3:36-45.
from Jatropha curcas L. Oil with ca and la mixed oxide doi: 10.1016/j.crcon.2020.02.001
catalyst in near supercritical methanol conditions. 52. Li H, Wang T, Wang Y, et al. Catalytic activity
J Supercrit Fluids. 2015;104:243-250. enhancement of sulfated metal oxide by doping Co on
doi: 10.1016/j.supflu.2015.06.023 MIL-100(Fe) for esterification. Fuel. 2023;334:126631.
42. Lynam JG, Coronella CJ, Yan W, Reza MT, Vasquez VR. doi: 10.1016/j.fuel.2022.126631
Acetic acid and lithium chloride effects on hydrothermal 53. Abitha M, Viswanathan C, Ponpandian N. Oxide
carbonization of lignocellulosic biomass. Bioresour derivatives of metal-organic frameworks for water
Technol. 2011:102:6192-6199. splitting: A concise review. Sustain Energy Fuels.
doi: 10.1016/j.biortech.2011.02.035 2025;9:921-941.
43. Shah KA, Parikh JK, Maheria KC. Use of sulfonic doi: 10.1039/D4SE01525H
acid-functionalized silica as catalyst for esterification 54. Boro J, Konwar LJ, Deka D. Transesterification of non
Volume 22 Issue 5 (2025) 36 doi: 10.36922/AJWEP025130095

