Page 45 - AJWEP-22-5
P. 45
Heterogeneous catalysts for biodiesel production
with nano- and micromaterials. Biophys Rev. and opportunities. Rev Virtual Química. 2021;13.
2023;15(5):1127-1158. doi: 10.21577/1984-6835.20210019
doi: 10.1007/s12551-023-01146-6 113. Fotiadou R, Patila M, Hammami MA, et al. Development
102. Ying S, Guan Z, Ofoegbu CP, et al. Green synthesis of effective lipase-hybrid nanoflowers enriched with
of nanoparticles: Current developments and limitations. carbon and magnetic nanomaterials for biocatalytic
Environ Technol Innov. 2022;26:102336. transformations. Nanomaterials. 2019;9:808.
doi: 10.1016/j.eti.2022.102336 doi: 10.3390/nano9060808
103. Liu M, Ye Y, Ye J, et al. Recent advances of magnetite 114. Alnoch RC, Santos AD, Marques de Almeida J,
(Fe O )-based magnetic materials in catalytic Krieger N, Mateo C. Recent trends in biomaterials
3
4
applications. Magnetochemistry. 2023;9(4):110. for immobilization of lipases for application in non-
doi: 10.3390/magnetochemistry9040110 conventional media. Catalysts. 2020;10:697.
104. Saire-Saire S, Garcia-Segura S, Luyo C, Andrade LH, doi: 10.3390/catal10060697
Alarcon H. Magnetic bio-nanocomposite catalysts of 115. Escorcia-Díaz D, García-Mora S, Rendón-Castrillón L,
CoFe O /hydroxyapatite-lipase for enantioselective Ramírez-Carmona M, Ocampo-López C. Advancements
4
2
synthesis provide a framework for enzyme recovery in nanoparticle deposition techniques for diverse
and reuse. Int J Biol Macromol. 2020;148:284-291. substrates: A review. Nanomaterials. 2023;13:2586.
doi: 10.1016/j.ijbiomac.2020.01.137 doi: 10.3390/nano13182586
105. Bilal M, Iqbal HMN, Adil SF, et al. Surface-coated 116. Pinto OM, Toledo RP, Barros HEDS, et al. Advances
magnetic nanostructured materials for robust bio- and challenges in WO nanostructures’ synthesis.
3
catalysis and biomedical applications-A review. J Adv Processes. 2024;12:2605.
Res. 2022;38:157-177. doi: 10.3390/pr12112605
doi: 10.1016/j.jare.2021.09.013 117. Fattah IMR, Ong HC, Mahlia TMI, et al. State of the
106. Mahor A, Singh P, Bharadwaj N, et al. Carbon- Art of catalysts for biodiesel production. Front Energy
based nanomaterials for delivery of biologicals and Res. 2020;8:101.
therapeutics: A cutting-edge technology. C. 2021;7:19. doi: 10.3389/fenrg.2020.00101
doi: 10.3390/c7010019 118. Ivchenko VP, Nifant’ev IE. The chemistry of oleates
107. Sharma S, Sharma H, Sharma R. A review on and related compounds in the 2020s. RSC Green Chem.
functionalization and potential application spectrum of 2025;27:41.
magnetic nanoparticles (MNPs) based systems. Chem doi: 10.1039/d4gc04862h
Inorg Mater. 2024;2:100035. 119. Vahid BR, Haghighi M. Biodiesel production from
doi: 10.1016/j.cinorg.2024.100035 sunflower oil over MgO/MgAl2O4 nanocatalyst: Effect
108. Javed R, Zia M, Naz S, Aisida SO, Ain NU, Ao Q. Role of fuel type on catalyst nanostructure and performance.
of capping agents in the application of nanoparticles Energy Conv Manage. 2017;134:290-300.
in biomedicine and environmental remediation: doi: 10.1016/j.enconman.2016.12.048
Recent trends and future prospects. J Nanobiotechnol. 120. Alaei S, Haghighi M, Toghiani J, Vahid BR. Magnetic
2020;18(1):72. and reusable MgO/MgFe2O4 nanocatalyst for biodiesel
doi: 10.1186/s12951-020-00704-4 production from sunflower oil: Influence of fuel ratio
109. Pourmadadi M, Rahmani E, Shamsabadipour A, et al. in combustion synthesis on catalytic properties and
Role of iron oxide (Fe O ) nanocomposites in advanced performance. Ind Crops Prod. 2018;117:322-332.
3
2
biomedical applications: A state-of-the-art review. doi: 10.1016/j.indcrop.2018.03.015
Nanomaterials. 2022;12:3873. 121. Widayat W, Hadiyanto H, Emma P, et al. No Access
doi: 10.3390/nano12213873 production of biodiesel from waste cooking oil using
110. Pandit C, Banerjee S, Pandit S, et al. Recent advances heterogeneous catalysts KI/γ-Al2O3. J Environ Eng
and challenges in the utilization of nanomaterials in Sci. 2020;15:107-112.
transesterification for biodiesel production. Heliyon. doi: 10.1680/jenes.19.00012
2023;9(4):e15475. 122. Farouk SM, Tayeb AM, Abdel-Hamid SMS,
doi: 10.1016/j.heliyon.2023.e15475 Osman RM. Recent advances in transesterification
111. Zhong L, Jiao Xiaobo, Hu H, et al. Activated magnetic for sustainable biodiesel production, challenges, and
lipase-inorganic hybrid nanoflowers: A highly active prospects: A comprehensive review. Environ Sci Pollut
and recyclable nanobiocatalyst for biodiesel production. Res. 2024;31(9):12722-12747.
Renew Energy. 2021;171:825-832. doi: 10.1007/s11356-024-32027-4
doi: 10.1016/j.renene.2021.02.155 123. Kamarullah SH, Abdul Razak ZK, Shohaimi NAM,
112. Oliveira D, Luiz A, Francisco C, et al. Lipases Amal Zakariah N. Production of biodiesel from
immobilized onto nanomaterials as biocatalysts in waste cooking oil usingpotassium hydroxide
biodiesel production: Scientific context, challenges, supported on alumina catalyst. Malays J Analyt Sci.
Volume 22 Issue 5 (2025) 39 doi: 10.36922/AJWEP025130095

