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Research Article

Preparation of rare earth modified clay-based solid acid catalysts and their application for biodiesel production from soybean oil

, , , & ORCID Icon
Pages 12453-12473 | Received 24 Mar 2023, Accepted 15 Sep 2023, Published online: 05 Nov 2023

References

  • Ding, L. J. 2013. Research on the technology of preparing biodiesel from xanthoceras sorbifolia bunge seed oil. China: Inner Mongolia Agricultural University.
  • Ding, L., J. Chen, G. Li, H. Lian, and Y. Hao. 2023. Process optimization of Ce doped solid acid catalyzed biodiesel and determination of fatty acid methyl ester content. Modern Industry 43 (5):140–46.
  • Ding, L., Y. Hao, J. Chen, B. Hai, and X. Wang. 2021. Optimization of one-step production of biodiesel by sulfuric acid/Stannic oxide-Hangjin2 clay catalyzed Xanthoceras Sorbifolia Bunge kernel. Energy Sources, Part A Recovery, Utilization, & Environmental Effects 4:1–13. doi:10.1080/15567036.2021.1941436.
  • Du, Q. 2013. Preparation and catalytic properties of rare earth doped solid acids. China: Sichuan Normal University.
  • Fang, R. Q. 2006. Application of SO42-/ZrO2 solid acid catalyst in deacidification of biodiesel feedstock. China: Xiamen University.
  • Feng, X., O. Onel, M. Council-Troche, A. Noble, R.-H. Yoon, and J. R. Morris. 2021. A study of rare earth ion-adsorption clays: The speciation of rare earth elements on kaolinite at basic pH. Applied Clay Science 201:105920. doi:10.1016/j.clay.2020.105920.
  • Galadima, A., and O. Muraza. 2020. Waste materials for production of biodiesel catalysts: Technological status and prospects. Journal of Cleaner Production 263:121358. doi:10.1016/j.jclepro.2020.121358.
  • Gao, Z., J. Chen, and T. M. Zhang. 1993. Synergistic effect of oridonin and cisplatin on cytotoxicity and DNA cross-link against mouse sarcoma S180 cells in culture. Zhongguo Yao Li Xue Bao = Acta Pharmacologica Sinica 14 (6):561–64.
  • Guo, H. F., Z. S. Chen, X. Y. Hao, and Y. Peng. 2010. Preparation and characterization of solid super acid catalyst Ce~(4+)-SO_4~(2-)/SnO_2 prepared with microemulsion method. Journal of Molecular Catalysis 24 (4):291–97.
  • Guo, J., Y. Du, and H. Zhang. 2020. A brief summary of research progress on the application of rare earth materials in heterogeneous Catalysis. Acta Chimica Sinica 78 (7):625. doi:10.6023/A20030053.
  • Hino, M., S. Kobayashi, and K. Arata. 1980. Solid catalyst treated with anion. 2. Reactions of butane and isobutane catalyzed by zirconium oxide treated with sulfate ion. Solid Superacid Catalyst Journal of the American Chemical Society 11 (21):6439–41. doi:10.1021/ja00515a051.
  • Huiqin, M. 2014. Preparation of solid superacid catalyst and its catalytic synthesis of tributyl citrate. China: Shihezi University.
  • Kiss, A. A., A. C. Dimian, and G. Rothenberg. 2008. Biodiesel by catalytic reactive distillation powered by metal oxides. Energy Fuels 22 (1):598–604. doi:10.1021/ef700265y.
  • Kong, P. S., P. Cognet, Y. Pérès, J. Esvan, W. M. A. W. Daud, and M. K. Aroua. 2018. Development of a Novel Hydrophobic ZrO2–SiO2 based acid catalyst for catalytic esterification of glycerol with oleic acid. Industrial & Engineering Chemistry Research 57 (29):9386–99.
  • Liao, Y., X. Huang, X. P. Liao, and B. Shi. 2012. Preparation of SO/ZrO solid acid and its catalytic performance for citric acid esterification. Journal of Sichuan Normal University: Natural Science Edition 35 (004):551–56.
  • Li, Y., and Y. Jiang. 2018. Preparation of a palygorskite supported KF/CaO catalyst and its application for biodiesel production via transesterification. RSC Advances 8 (29):16013–18. doi:10.1039/C8RA02713G.
  • Liu, Z. C., J. Q. Li, and X. Z. Shen. 2006. Preparation of S2O82-/ZrO2-Ce2 O3 solid superacid and study on catalytic synthesis of Cyclic Ketals. Journal of Hunan University of Humanities and Science 3:31–33. Science 2016, 370 (may1), 260-269.
  • Liu, S., M. Zhu, and M. Iqbal. 2020. Research progress on stability of solid acid catalysts. Catalysis Surveys from Asia 24 (3):196–206. doi:10.1007/s10563-020-09305-5.
  • Li, L., B. Yan, H. Li, S. Yu, S. Liu, H. Yu, and X. Ge. 2018. SO42−/ZrO2 as catalyst for upgrading of pyrolysis oil by esterification. Fuel 226:190–94. doi:10.1016/j.fuel.2018.04.006.
  • Li, Y., K. Zhu, Y. Jiang, L. Chen, H. Zhang, H. Li, and S. Yang. 2023. Biomass-derived hydrophobic metal-organic frameworks solid acid for green efficient catalytic esterification of oleic acid at low temperatures. Fuel Processing Technology 239:107558. doi:10.1016/j.fuproc.2022.107558.
  • López, D., K. Suwannakarn, D. A. Bruce, and J. G. Goodwin. 2007. Esterification and transesterification on tungstated zirconia: Effect of calcination temperature. Journal of Catalysis 247 (1):43–50. doi:10.1016/j.jcat.2007.01.003.
  • Mashhadinezhad, M., F. Shirini, and M. Mamaghani. 2018. Nanoporous Na±montmorillonite perchloric acid as an efficient heterogeneous catalyst for synthesis of merocyanine dyes based on isoxazolone and barbituric acid. Microporous and Mesoporous Materials 262:269–82. doi:10.1016/j.micromeso.2017.11.031.
  • Munir, M., M. Saeed, M. Ahmad, A. Waseem, S. Sultana, M. Zafar, and G. R. Srinivasan. 2022. Optimization of novel Lepidium perfoliatum Linn. Biodiesel using zirconium-modified montmorillonite clay catalyst. Energy Sources, Part A Recovery, Utilization, & Environmental Effects 44 (3):6632–47. doi:10.1080/15567036.2019.1691289.
  • Nuchdang, S., and D. Rattanaphra. 2019. Effect of La2O3 derived from Thai monazite Ore chemical processing on the properties of SO4-1/ZrO2. Key Engineering Materials 821:195–200. doi:10.4028/www.scientific.net/KEM.821.195.
  • Piumetti, M., B. Bonelli, P. Massiani, S. Dzwigaj, I. Rossetti, S. Casale, L. Gaberova, M. Armandi, and E. Garrone. 2011. Effect of vanadium dispersion and support properties on the catalytic activity of V-SBA-15 and V-MCF mesoporous materials prepared by direct synthesis. Catalysis Today 176 (1):458–64. doi:10.1016/j.cattod.2010.10.066.
  • Reddy, P. R. G. N., B. G. Rao, T. V. Rao, and B. M. Reddy. 2019. Selective aerobic oxidation of vanillyl alcohol to vanillin catalysed by nanostructured Ce-Zr-O solid solutions. Catalysis Letters 149 (2):533–43. doi:10.1007/s10562-019-02658-1.
  • Sagala, B., T. Muschin, X. Wang, and B. Zhaorigetu. 2017. One-step benzene hydroxylation to phenol using CuO x /Mesoporous Hangjin 2# clay composites. ChemistrySelect 2 (17):4847–51. doi:10.1002/slct.201602079.
  • Serio, M., R. Tesser, L. Pengmei, and E. Santacesaria. 2007. Heterogeneous catalysts for biodiesel production. EnergyFuels 22 (1):207–17. doi:10.1021/ef700250g.
  • Shen, B. X., Y. Yao, X. J. Tang, X. C. Hao, J. J. Dai, X. B. Li, P. Wang. 2011. Effects of doping elements on properties of Ti2/SO42- solid acids. Chinese Journal of Chemical Engineering 62 (3):6.
  • Shestakova, P., M. Popova, Á. Szegedi, H. Lazarova, T. K. Nga Luong, I. Trendafilova, J. Mihály, and T. N. Parac-Vogt. 2021. Hybrid catalyst with combined Lewis and brønsted acidity based on ZrIV substituted polyoxometalate grafted on mesoporous MCM-41 silica for esterification of renewable levulinic acid. Microporous and Mesoporous Materials 323:111203. doi:10.1016/j.micromeso.2021.111203.
  • Smith, A. C. 2015. Carbon tracker: Fossil fuel industry’s optimistic demand forecasts are product of skewed thinking. SNL Energy Coal Report 11 (42):18–18.
  • Sun, J. F. 2009. Solid acid-catalyzed transesterification of vegetable oil to produce biodiesel. China: Shanghai Normal University.
  • Wang, F., J. H. Ho, Y. Jiang, R. Amal, and Efficient Photocatalytic Hydrogen Generation. ACS Applied Materials Interfaces. 2015. Tuning phase composition of TiO 2 by sn 4+ doping for efficient photocatalytic hydrogen generation. ACS Applied Materials & Interfaces 7 (43):23941. doi:10.1021/acsami.5b06287.
  • Wang, H., L. Jiang, Y. Wang, Y. Zheng, X. Jiao, and D. Pan. 2018. Synthesis of borneol from α-pinene catalyzed by a SO42/TiO2–La3+ nanometer rare-earth solid superacid. Inorganic Nano-Metal Chemistry 48 (1):23–30. doi:10.1080/24701556.2017.1357622.
  • Watanabe, K., T. Kawakami, K. Baba, N. Oshio, and T. Kimura. 2004. Simultaneous isomerization and desulfurization of sulfur-containing light naphtha over metal/SO42−/ZrO2-Al2O3 catalyst. Applied Catalysis A: General 276 (1):145–53. doi:10.1016/j.apcata.2004.07.055.
  • Wei, W. 2014. Study on the production of biodiesel from waste animal fat catalyzed by solid super acid. China: Harbin Institute of Technology.
  • Wen, L. B., W. G. Tan, Y. Wang, H. Han, X. Zheng. 2008. Preparation of biodiesel from tallow seed oil catalyzed by solid acid catalysts. China Oils & Fats 33 (6):44–47.
  • Wu, L., Y. Hao, S. Chen, R. Chen, P. Sun, and T. Chen. 2021. Effects of rare earth metal doping on Au/ReZrO2 catalysts for efficient hydrogen generation from formic acid. New Journal of Chemistry 45 (12):5704–11. doi:10.1039/D0NJ06124G.
  • Xiao, G., X. Guo, X. Pan, L. Gu, X. Liu, L. Gao, and G. Xiao. 2021. Synthesis of brominated alkanes via heterogeneous catalytic distillation over Al2O3/SO42−/ZrO2. Catalysts 11 (12):11. doi:10.3390/catal11121464.
  • Yang, H., Y. Zhou, D. Tong, M. Yang, W. Yu, C. Zhou, and W. Yu. 2019. Catalytic conversion of cellulose to reducing sugars over clay-based solid acid catalyst supported nanosized SO42−-ZrO2. Applied Clay Science 185:105376. doi:10.1016/j.clay.2019.105376.
  • Zhang, H., L. Chen, Y. Li, Y. Hu, L. Hu, C. Xu, S. Yang. 2022. Functionalized organic-inorganic hybrid porous coordination polymers based catalysts for biodiesel production via trans/esterification. Green Chemistry. doi:10.1039/d2gc02722d.
  • Zhang, H., H. Li, Y. Hu, K. T. Venkateswara Rao, C. Xu, and S. Yang. 2019. Advances in production of bio-based ester fuels with heterogeneous bifunctional catalysts. Renewable and Sustainable Energy Reviews 114:109296. doi:10.1016/j.rser.2019.109296.
  • Zhang, R., F. Zhu, Y. Dong, X. Wu, Y. Sun, D. Zhang, T. Zhang, and M. Han. 2020. Function promotion of SO42−/Al2O3–SnO2 catalyst for biodiesel production from sewage sludge. Renewable Energy 147:275–83. doi:10.1016/j.renene.2019.08.141.
  • Zhao, W., Y. Chen, Q. Hu, L. Lu, and D. Hu. 2021. Review of rare earth catalytic materials. Jiangxi Science 39 (1):1–7+24.
  • Zhu, T., L. Zhang, Z. Li, G. Wei, Z. Xin, D. Xiong, and Z. Ou. 2021. Partial hydrogenation of jatropha oil biodiesel catalyzed by Nickel/Bentonite catalyst. Waste and Biomass Valorization 12 (1):465–74. doi:10.1007/s12649-020-00977-8.

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