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Articles

Assessment of heterogeneous catalysts obtained from chicken egg shells and diatomite for biodiesel production

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Pages 919-929 | Received 08 Sep 2021, Accepted 31 Dec 2021, Published online: 10 Jan 2022

References

  • Estevo FS. A China no âmbito da mudança climática. Negociações exteriores e políticas domésticas. DESAFÍOS. 2020;32(1):1–242.
  • Gebremariam SN, Marchetti JM. Economics of biodiesel production: Review. Energy Convers Manage. 2018; 168:74–84.
  • Guimarães DHP, Aguirre LR, Gonçalves BCM, et al. Análise físico-química de biodiesel obtido por meio de misturas de óleo de mamona e óleo de fritura. Rev Ciênc Tecnol. 2019;21:1–10.
  • Veljković VB, Biberdžić MO, Banković-Ilić IB, et al. Biodiesel production from corn oil: a review. Renew Sustain Energy Rev. 2018; 91:531–548.
  • Costa BEB, Rangel FC, Cruz RS. Esterificação do ácido oleico utilizando aluminossilicato mesoporoso modificado com óxido de zircônio. Rev Matér. 2019; 24:e–12310.
  • Takase M, Pappoe AN, Afrifa EA, et al. High performance heterogeneous catalyst for biodiesel production from non-edible oil. Renew Energy Focus. 2018; 25:24–30.
  • Latchubugata CS, Kondapaneni RV, Patluri KK, et al. Kinetics and optimization studies using response surface methodology in biodiesel production using heterogeneous catalyst. Chem Eng Res Des. 2018;135:129–139.
  • Tan YH, Abdullah MO, Nolasco-Hipolito C, et al. Waste ostrich- and chicken-eggshells as heterogeneous base catalyst for biodiesel production from used cooking oil: Catalyst characterization and biodiesel yield performance. Appl Energy. 2015;160:58–70.
  • Wei Z, Xu C, Li B. Application of waste eggshell as low-cost solid catalyst for biodiesel production. Bioresour Technol. 2009;100(11):2883–2885.
  • Viriya-Empikul N, Krasae P, Puttasawat B, et al. Waste shells of mollusk and egg as biodiesel production catalysts. Bioresour Technol. 2010;101(10):3765–3767.
  • Jazie AA, Pramanik H, Sinha ASK. Egg shell as eco-friendly catalyst for transesterification of rapeseed oil: optimization for biodiesel production. Special Issue of Int J Sustain Dev Green Econ. 2013;2:27–32.
  • Sharma YC, Singh B, Korstad J. Application of an efficient nonconventional heterogeneous catalyst for biodiesel synthesis from pongamia pinnata oil. Energy Fuels. 2010;24(5):3223–3231.
  • Chen GY, Shan R, Shi JF, et al. Ultrasonic-assisted production of biodiesel from transesterification of palm oil over ostrich eggshell-derived CaO catalysts. Bioresour Technol. 2014;171:428–432.
  • Yin X, Duan X, You Q, et al. Biodiesel production from soybean oil deodorizer distillate using calcined duck eggshell as catalyst. Energy Convers Manage. 2016;112:199–207.
  • Wu H, Zhang J, Wei Q, et al. Transesterification of soybean oil to biodiesel using zeolite supported CaO as strong base catalysts. Fuel Process Technol. 2013;109:13–18.
  • Chen GY, Shan R, Li S, et al. A biomimetic silicification approach to synthesize CaO–SiO2 catalyst for the transesterification of palm oil into biodiesel. Fuel. 2015;153:48–55.
  • Métais G, Sen S. The late miocene mammals from the Konservat-Lagerstätte of Saint-Bauzile (ardèche, France). CR Palevol. 2018;17(7):479–493.
  • Chen GY, Shan R, Shi J, et al. Transesterification of palm oil to biodiesel using rice husk ash-based catalysts. Fuel Process Technol. 2015;133:8–13.
  • Cordeiro DO, Silva JE, Oliveira AAS, et al. Influence of carbonation and rehydration on CaO derived from calcining chicken eggshells in the catalytic process of soybean oil transesterification. BJPG. 2019;13(1):21–37.
  • Sousa FP, Luciano MA, Pasa VMD. Thermogravimetry and viscometry for assessing the ester content (FAME and FAEE). Fuel Process Technol. 2013;109:133–140.
  • Boro J, Deka D, Thakur AJ. A review on solid oxide derived from waste shells as catalyst for biodiesel production. Renew Sustain Energy Rev. 2012;16(1):904–910.
  • Alyosef HA, Ibrahim S, Welscher J, et al. Effect of acid treatment on the chemical composition and the structure of egyptian diatomite. Int J Miner Process. 2014;132:17–25.
  • Nagabhushana KR, Lokesha HS, Reddy SS, et al. Thermoluminescence properties of CaO powder obtained from chicken eggshells. Radiat Phys Chem. 2017;138:54–59.
  • Vichaphund QS, Kitiwan M, Atong D, et al. Microwave synthesis of wollastonite powder from eggshells. J Eur Ceram Soc. 2011;31(14):2435–2440.
  • Puntharoda R, Sankrama C, Chantarameec N, et al. Synthesis and characterization of wollastonite from egg shell and diatomite by the hydrothermal method. J Ceram Process Res. 2013;14:198–201.
  • Nascimento CR, Sobrinho EMO, Assis RB, et al. Síntese da zeólita a utilizando diatomita como fonte de sílicio e alumínio. Cerâmica. 2014;60(353):63–68.
  • Trezza MA. Hydration study of ordinary Portland cement in the presence of zinc ions. Hydration study of ordinary Portland cement in the presence of zinc ions. Mat Res. 2007;10(4):331–334.
  • Vakalova V, Karionova NP, Pogrebenkov VM, et al. Features of solid phase synthesis of wollastonite from natural and technogenic raw material. Refract Ind Ceram. 2010;51(4):295–301.
  • Khachani M, Hamidi EA, Halim M, et al. Non-isothermal kinetic and thermodynamic studies of the dehydroxylation process of synthetic calcium hydroxide Ca(OH)2. J Mater Environ Sci. 2014;5:615–624.
  • Sing K, Haul R, Pierotti R, et al. Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity. Pure Appl Chem. 1985;57(4):603–619.
  • Lima-Corrêa R, Castro C, Assaf J. Lithium containing MgAl mixed oxides obtained from sol-gel hydrotalcite for transesterification. Braz J Chem Eng. 2018;35(1):189–195.
  • Obermeier J, Sakellariou K, Tsongidis N, et al. Material development and assessment of an energy storage concept based on the CaO-looping process. Sol Energy. 2017;150:298–309.
  • Samyn P, Schoukens G, Nieuwkerke DV, et al. Synthesis of imidized nanoparticles containing soy oil under various reaction conditions. Eur Polym J. 2015;66:78–90.
  • Gomes AF, Gomes MPS, Souza LD, et al. Thermal and chromatographic characterization of biomass, lipid material, and microalgal biodiesel from monoraphidium sp. J Therm Anal Calorim. 2015;119(3):1861–1866.
  • Ruschel CFC, Ferrão MF, Francisco PS, et al. Otimização do processo de transesterificação em duas etapas Para produção de biodiesel através do planejamento experimental doehlert. Química Nova. 2016;15:1–6.
  • Mello VM, Oliveira FCC, Fraga WG, et al. Determination of the content of fatty acid methyl esters (FAME) in biodiesel samples obtained by esterification using 1H-NMR spectroscopy. Magn Reson Chem. 2008;46(11):1051–1054.
  • Guzatto R, Martini LT, Samios D. The use of a modified TDSP for biodiesel production from soybean, linseed and waste cooking oil. Fuel Process Technol. 2011;92(10):2083–2088.
  • Ayodeji AA, Modupe OE, Rasheed B, et al. Data on CaO and eggshell catalysts used for biodiesel production. Data Brief. 2018;19:1466–1473.
  • Ouanji F, Khachani M, Boualag M, et al. Large-scale biodiesel production from moroccan used frying oil. Int J Hydrogen Energy. 2016;41(45):21022–21029.
  • Li Y, Zhang X, Sun L, et al. Fatty acid methyl ester synthesis catalyzed by solid superacid catalyst. Appl Energy. 2010;87(1):156–159.
  • Amani H, Ahmad Z, Asif M, et al. Transesterification of waste cooking palm oil by MnZr with supported alumina as a potential heterogeneous catalyst. J Ind Eng Chem. 2014;20(6):4437–4442.
  • Lizama TV, Ballote DL, Mézquita HE, et al. Thermogravimetric analysis as a rapid and simple method to determine the degradation degree of soy biodiesel. Fuel. 2015;156:158–162.
  • Albuquerque AA, Danielski L, Stragevitch L. Techno-economic assessment of an alternative process for biodiesel production from feedstock containing high levels of free fatty acids. Energy Fuels. 2016;30(11):9409–9418.

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