Sustainable catalysts for biodiesel production: The potential of CaO supported on sugarcane bagasse biochar

被引:38
作者
Melo, Vinicius Mateo e [1 ]
Ferreira, Gabriela Filipini [1 ]
Fregolente, Leonardo Vasconcelos [1 ]
机构
[1] Univ Estadual Campinas, Sch Chem Engn, Av Albert Einstein 500, BR-13083852 Campinas, SP, Brazil
关键词
Heterogeneous catalyst; Calcium oxide; Biochar; Sugarcane bagasse; Transesterification; Biodiesel; WASTE COOKING OIL; PALM KERNEL SHELL; HETEROGENEOUS CATALYST; CHICKEN MANURE; BIOMASS WASTE; LOW-COST; TRANSESTERIFICATION; CARBON; ESTERIFICATION; OPTIMIZATION;
D O I
10.1016/j.rser.2023.114042
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biodiesel production faces environmental and economic challenges due to the use of homogeneous catalysts, such as NaOH, KOH, NaOCH3, and KOCH3. Despite their good activity, these catalysts are toxic and almost impossible to recycle/reuse. Heterogeneous catalysts, otherwise, can be reused and easily separated from the final product, resulting in more sustainable and cost-effective production. However, these catalysts leach, losing activity through reaction cycles and contaminating the biodiesel This review has therefore addressed the use of CaO - a promising catalyst for biodiesel synthesis - and various biochar-derived catalysts. Particular attention was paid to studies involving the use of CaO in a biochar matrix (CaO/Biochar), given the support essential role in making the CaO use feasible. The use of catalysts derived from sugarcane bagasse biochar was also high-lighted, given this biomass importance, especially in Brazil. Studies have shown that biochar-derived catalysts have good activity, excellent stability, and can be reused for up to 10 cycles. Concerning CaO/Biochar, it was found that biochar significantly reduced Ca2+ leaching, but there is still a need to further reduce the Ca2+ release into biodiesel. There is also a need to give more focus on CaO leaching. Finally, a lack of studies on the use of catalysts derived from sugarcane bagasse biochar is notiable, showing no study involving the CaO-embedded sugarcane bagasse biochar.
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页数:12
相关论文
共 123 条
[41]   Bifunctional Heterogeneous Catalyst for Biodiesel Production from Waste Vegetable Oil [J].
Elias, Samya ;
Rabiu, Ademola M. ;
Okeleye, Benjamin I. ;
Okudoh, Vincent ;
Oyekola, Oluwaseun .
APPLIED SCIENCES-BASEL, 2020, 10 (09)
[42]  
Energy Agency I, 2020, World energy outlook
[43]   Improved biodiesel production from waste cooking oil with mixed methanol-ethanol using enhanced eggshell-derived CaO nano-catalyst [J].
Erchamo, Yeshimebet Simeon ;
Mamo, Tadios Tesfaye ;
Workneh, Getachew Adam ;
Mekonnen, Yedilfana Setarge .
SCIENTIFIC REPORTS, 2021, 11 (01)
[44]   Biodiesel production from Silybum marianum L. seed oil with high FFA content using sulfonated carbon catalyst for esterification and base catalyst for transesterification [J].
Fadhil, Abdelrahman B. ;
Aziz, Akram M. ;
Al-Tamer, Marwa H. .
ENERGY CONVERSION AND MANAGEMENT, 2016, 108 :255-265
[45]   Functionalization of biochar derived from lignocellulosic biomass using microwave technology for catalytic application in biodiesel production [J].
Gonzalez, M. E. ;
Cea, M. ;
Reyes, D. ;
Romero-Hermoso, L. ;
Hidalgo, P. ;
Meier, S. ;
Benito, N. ;
Navia, R. .
ENERGY CONVERSION AND MANAGEMENT, 2017, 137 :165-173
[46]  
Guilhen S. N., 2018, Sintese e caracterizacao de biocarvao obtido a partir do residuo de coco da macauba para remocao de uranio de solucoes aquosas, DOI DOI 10.11606/T.85.2018.TDE-13092018-144036
[47]   One-Step Biodiesel Production from Waste Cooking Oil Using CaO Promoted Activated Carbon Catalyst from Prunus persica Seeds [J].
Hameed, Ayesha ;
Naqvi, Salman Raza ;
Sikandar, Umair ;
Chen, Wei-Hsin .
CATALYSTS, 2022, 12 (06)
[48]   Synthesis and characterisation of laboratory-charred grass straw (Oryza saliva) and chestnut wood (Castanea sativa) as reference materials for black carbon quantification [J].
Hammes, Karen ;
Smernik, Ronald J. ;
Skjemstad, Jan O. ;
Herzog, Andreas ;
Vogt, Ulrich F. ;
Schmidt, Michael W. I. .
ORGANIC GEOCHEMISTRY, 2006, 37 (11) :1629-1633
[49]  
Hidayat A, 2021, Indonesian Journal of Science and Technology, V6, P337, DOI [10.17509/ijost.v6i2.34498, 10.17509/ijost.v6i2.34498, DOI 10.17509/IJOST.V6I2.34498]
[50]   Lignin-derived layered 3D biochar with controllable acidity for enhanced catalytic upgrading of Jatropha oil to biodiesel [J].
Huang, Jinshu ;
Jian, Yumei ;
Li, Hu ;
Fang, Zhen .
CATALYSIS TODAY, 2022, 404 :35-48