Technological Forecasting on the Synthesis of Liquid Soap from Waste Cooking Oil

Authors

DOI:

https://doi.org/10.9771/cp.v18i3.60790

Keywords:

Waste cooking oil, Liquid soap, Technological forecasting.

Abstract

New technologies that aim to mitigate the effects of incorrect disposal of waste cooking oil have attracted the interest of the scientific community. The synthesis of new products from waste cooking oil has become a way of giving this remains a new destination. In this work, a technological forecasting was carried out on the synthesis of liquid soap from residual frying oil, mapping scientific productions using the Web of Science and Scopus databases, for patents, Questel Orbit Intelligence® was used. Scientific productions showed a certain oscillation, however, since 2021 the numbers have started to increase again, especially in Indonesia, India, and the United States. For patents, China stood out, granting 28 patents in total.

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Author Biographies

André Luis Bispo Galvão de Souza, University of Brasília

Undergraduate student in Energy Engineering at UnB Gama College, University of Brasília.

Ricardo Miguel Gonçalves da Silva , University of Brasília

Undergraduate student in Energy Engineering at UnB Gama College, University of Brasília.

Andréia Alves Costa Lindinger, University of Brasília

Post-doctorate in Chemistry from the University of Brasília in 2011.

References

BRAGA, P. R. S.; LINDINGER, A. A. C.; LOPES, R. V. V. BIOGAMA – Reciclagem de Óleo de Fritura e Conscientização Ambiental a partir de Coleta Seletiva na Comunidade do Gama – DF. Revista Interdisciplinar de Pesquisa em Engenharia, [s.l.], v. 1, p. 1-4, 2017.

CHENG, G. et al. A novel method for the green utilization of waste fried oil. Particuology, [s.l.], v. 84, p. 1-11, 2023.

CHUNMING, W. et al. Method for preparing liquid soap from kitchen waaste oil.

CN-0817732, 2021.

DA CONCEIÇÃO, V. S. et al. Prospecção tecnológica relativa ao uso do Azeite de Dendê como matéria-prima para a fabricação de sabão. Revista Observatorio de la Economia Latinoamericana, [s.l.], v. 3.771-3.786, 2023.

FONSECA, T. C. de S. et al. Multifunctional, stable and low-cost lipopeptide biosurfactant produced by Enterobacter cloacae UCP 1597. Research, Society and Development, [s.l.], p. 11-15, 2022.

FOO, W. H. et al. Recent advances in the conversion of waste cooking oil into value-added products: A review. Fuel, London, England, v. 324, p. 124539, 2022.

GAMBARDELLA, A. et al. Formulation of biobased soap gels from wastederived feedstocks. RSC Sustainability, [s.l.], p. 584-591, 2023.

HANISA, K.; KUMAR, S.; TAJUL, A. Y. The Management of Waste Cooking Oil: A Preliminary Survey. Health and the Environment Journal, [s.l.], v. 4, p. 76-81, 2013.

HARTINI, S. et al. Optimal treatment combination for dishwashing liquid soap based on waste cooking oil according to the requirement of Indonesian quality standards. Evergreen, [s.l.], p. 492-498, 2021.

HENNESSEY-RAMOS, L.; MURILLO-ARANGO, W.; TOVAR GUAYABO, G. Evaluation of a colorant and oil extracted from avocado waste as functional components of a liquid soap formulation. Revista Facultad Nacional de Agronomia Medellin, [s.l.], v. 72, n. 2, p. 8.855-8.862, 2019.

INPI – INSTITUTO NACIONAL DA PROPRIEDADE INDUSTRIAL. WIPO IPC Policátion. 2024. Disponível em: http://ipc.inpi.gov.br/classifications/ipc/ipcpub/. Acesso em: 7 abr. 2024.

IPCC – INTERGOVERNAMENTAL PANEL ON CLIMATE CHANGE. Página de busca. [2023]. Disponível em: https://www.ipcc.ch/. Acesso em: 13 mar. 2024.

JOSHI, J. R.; BHANDERI, K. K.; PATEL, J. V. Waste cooking oil as a promising source for bio lubricants – A review. Journal of the Indian Chemical Society, [s.l.], v. 100, n. 1, p. 100820, 2023.

LANDI, F. F. A. et al. Environmental assessment of four waste cooking oil valorization pathways. Waste Management, New York, v. 138, p. 219-233, 2022.

LOPES ROMERO. A. et al. Nova pandemia, velhas formas de prevenção: fabricação e doação de produtos saneantes domissanitários para famílias em situação de vulnerabilidade social. Revista Tecnologia e Sociedade, [s.l.], v. 16, n. 43, p. 52, 2020.

MCMURRY, J. Química Orgânica – Combo: tradução da 9a edição norte-americana. [S.l.]: Delmar Cengage Learning, 2016.

NEOENERGIA. Composição Tarifária, 2024. Disponível em: https://www.neoenergia.com/web/brasilia/sua-casa/composicao-tarifaria. Acesso em: 30 mar. 2024.

ORBIT INTELLIGENCE. Orbit Intelligence by Questel®. [2024]. Disponível em: https://www. orbit.com/. Acesso em: 7 abr. 2024.

PREPARAENEM. Saponificação. [2024]. Disponível em: https://www.preparaenem.com/quimica/reacao-saponificacao.htm. Acesso em: 10 mar. 2025.

SALIMON, J.; SALIH, N.; YOUSIF, E. Biolubricants: Raw materials, chemical modifications and environmental benefits. European Journal of Lipid Science and Technology: EJLST, [s.l.], v. 112, n. 5, p. 519-530, 2010.

SHEINBAUM-PARDO, C.; CALDERÓN-IRAZOQUE, A.; RAMÍREZ-SUÁREZ, M. Potential of biodiesel from waste cooking oil in Mexico. Biomass & Bioenergy, [s.l.], v. 56, p. 230-238, 2013.

SILVA, R. M. G.; BRAGA, P. R. S.; COSTA, A. A. Prospecção Tecnológica sobre o Uso de Bagaço de Cana-de-Açúcar e seus Derivados para a Adsorção Seletiva e Compostos Contendo Enxofre no Diesel. Cadernos de Prospecção, Salvador, v. 17, n. 2, p. 361-378, 2024. Disponível em: https://doi.org/10.9771/cp.v17i2.56621. Acesso em: 30 mar. 2024.

VAN GRINSVEN, A. et al. Used Cooking Oil (UCO) as biofuel feedstock in the EU. CE Delft, December, 2020. Disponível em: https://www.regenwald-statt-palmoel.de/images/pdf/CE_Delft_UCO.pdf. Acesso em: 4 abr. 2024.

WIDYANINGSIH, S. et al. Formulation of Antibacterial Liquid Soap from Nyamplung Seed Oil (Calophyllum inophyllum L) with Addition of Curcuma heyneana and its Activity Test on Staphylococcus aureus. IOP Conference Series: Materials Science and Engineering, [s.l.], v. 349, p. 012062, 2018. DOI: 10.1088/1757-899X/349/1/012062.

WIDYASANTI, A.; AYUNINGTYAS, B.; ROSALINDA, S. Characterization of liquid soap from castor oil (Ricinus communis) with the addition of white tea extracts. Earth and Environmental Science, [s.l.], v. 443, n. 1, p. 012061, 2020.

WIJANA, S.; PUSPITA, T.; RAHMAH, N. L. Optimization of solubilizers combinations on the transparent liquid soap with the addition of peppermint (Mentha piperita L.) and lavender (Lavandula L.) oil. In: AIP CONFERENCES PROCEEDINGS, 2019. Anais [...]. [S.l.], 2019.

WU, B. et al. Direct conversion of McDonald’s waste cooking oil into a biodegradable high-resolution 3D-printing resin. ACS Sustainable Chemistry & Engineering, [s.l.], v. 8, n. 2, p. 1.171-1.177, 2020.

XIONG, Y. et al. Solid alcohol based on waste cooking oil: Synthesis, properties, micromorphology and simultaneous synthesis of biodiesel. Waste Management, New York, v. 85, p. 295-303, 2019.

Published

2025-07-01

How to Cite

Souza, A. L. B. G. de, Silva , R. M. G. da, & Lindinger, A. . A. C. . (2025). Technological Forecasting on the Synthesis of Liquid Soap from Waste Cooking Oil. Cadernos De Prospecção, 18(3), 781–792. https://doi.org/10.9771/cp.v18i3.60790

Issue

Section

Prospecções Tecnológicas de Assuntos Específicos