Please use this identifier to cite or link to this item: https://repositorio.ufu.br/handle/123456789/49834
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dc.creatorMiguel, Karolyna Barros-
dc.date.accessioned2026-08-25T19:38:30Z-
dc.date.available2026-08-25T19:38:30Z-
dc.date.issued2026-07-29-
dc.identifier.citationMIGUEL, Karolyna Barros. Application of membrane separation processes to purify and concentrate bioactive extracts from annatto seeds (Bixa orellana L.). 2026. 137 f. Tese (Doutorado em Engenharia Química) – Universidade Federal de Uberlândia, Uberlândia, 2026. DOI https://doi.org/10.14393/ufu.te.2026.606.pt_BR
dc.identifier.urihttps://repositorio.ufu.br/handle/123456789/49834-
dc.description.abstractThe growing demand for natural colorants and functional compounds highlights the strategic potential of annatto (Bixa orellana L.), especially due to the presence of bixin, norbixin, and phenolic compounds. However, conventional extraction and purification methods still present limitations regarding efficiency, sustainability, and environmental impact. In this context, membrane separation processes emerge as an innovative and environmentally responsible alternative, capable of producing purer, more stable extracts with higher added value, in line with current industrial and regulatory requirements. This study aimed to investigate the application of polymeric and ceramic membranes for the purification and concentration of bioactive compounds from annatto seed extracts, with emphasis on the influence of membrane structure and material on the retention efficiency of bixin, phenolic compounds, and the associated antioxidant potential. The methodology encompassed the production of alumina-based hollow fiber ceramic membranes, subsequently characterized in terms of morphology, mechanical strength, chemical stability, and filtration performance. In parallel, experiments were conducted using polymeric membranes in a dead-end configuration, with the aim of evaluating their selectivity and retention capacity of bioactive compounds. Furthermore, the use of natural deep eutectic solvents, classified as a green alternative, was investigated for bixin extraction, with results compared to those obtained by conventional solvents, such as ethanol and water. The resulting samples were analyzed using chromatographic techniques, including high-performance liquid chromatography and mass spectrometry, enabling the precise quantification of bixin and phenolic compounds. The main results revealed that polymeric membranes with a molecular weight cut-off (MWCO) of 5 kDa were able to retain up to 90% of bixin and approximately 54.2% of phenolics compounds. The microfiltration ceramic hollow fiber membranes showed similar performance, reaching retentions close to 90% of bixin and 47,53% of phenolics compounds. The final permeate fluxes with polymeric and ceramic membranes were of 10.72 and 9,26 L h-1 m-2, respectively. Thus, both membranes were efficient for the concentration of bioactive compounds from annatto seed extracts, which reinforces the role of additional retention mechanisms in addition to the pore size exclusion. Results regarding the use of natural deep eutectic solvents confirmed not only higher extraction efficiency but also demonstrated their ability to stabilize bixin, preventing its degradation and ensuring greater preservation of bioactive properties. In these trials, the maximum yield reached 2.31% (w/w), while the ethanol:water mixture (1:1 v/v) yielded only 0.0075% (w/w) for bixin extraction. In addition to the superior performance, the extracts obtained were richer in bixin and showed greater stability compared to those produced by conventional solvents, reinforcing both the technical feasibility and the environmentally sustainable contribution of green solvents over the evaluated alternatives. It is concluded that membrane separation processes associated with natural deep eutectic solvents represent a promising route for the valorization of annatto seeds, by combining technical efficiency, sustainability, and feasibility of industrial-scale application. This study contributes to broadening the understanding of the use of clean technologies in obtaining natural colorants and bioactive compounds, providing foundations for the development of innovative processes aimed at the food, pharmaceutical, and cosmetic industries.pt_BR
dc.language.isoen_USpt_BR
dc.publisherUniversidade Federal de Uberlândiapt_BR
dc.rightsAcesso Embargadopt_BR
dc.subjectAnattopt_BR
dc.subjectBixinpt_BR
dc.subjectPhenolic compoundspt_BR
dc.subjectMembrane separationpt_BR
dc.subjectNatural deep eutetictic solventpt_BR
dc.titleApplication of membrane separation processes to purify and concentrate bioactive extracts from annatto seeds (Bixa orellana L.)pt_BR
dc.title.alternativeAplicación de procesos de separación por membranas para purificar y concentrar extractos bioactivos de semillas de achiote (Bixa orellana L.)pt_BR
dc.title.alternativeAplicação de processos de separação por membrana para purificar e concentrar extratos bioativos de sementes de urucum (Bixa orellana L.)pt_BR
dc.title.alternativeApplication des procédés de séparation membranaire pour purifier et concentrer les extraits bioactifs des graines de rocou (Bixa orellana L.)pt_BR
dc.typeTesept_BR
dc.contributor.advisor-co1Crespo, João Goulão-
dc.contributor.advisor-co1LattesCC1A-3CD0-EA8Bpt_BR
dc.contributor.advisor1Reis, Miria Hespanhol Miranda-
dc.contributor.advisor1Latteshttp://lattes.cnpq.br/2087228956469914pt_BR
dc.contributor.referee1Santos, Suelen Siqueira dos-
dc.contributor.referee1Latteshttp://lattes.cnpq.br/2497252336017443pt_BR
dc.contributor.referee2Cardoso, Vicelma Luiz-
dc.contributor.referee2Latteshttp://lattes.cnpq.br/7947426011712250pt_BR
dc.contributor.referee3Oliveira, Thamayne Valadares de-
dc.contributor.referee3Latteshttp://lattes.cnpq.br/8217534758331184pt_BR
dc.contributor.referee4Ferreira, Carla Maria Carvalho Gil Brazinha de Barros-
dc.creator.Latteshttp://lattes.cnpq.br/1641095841573484pt_BR
dc.description.degreenameTese (Doutorado)pt_BR
dc.description.resumoThe growing demand for natural colorants and functional compounds highlights the strategic potential of annatto (Bixa orellana L.), especially due to the presence of bixin, norbixin, and phenolic compounds. However, conventional extraction and purification methods still present limitations regarding efficiency, sustainability, and environmental impact. In this context, membrane separation processes emerge as an innovative and environmentally responsible alternative, capable of producing purer, more stable extracts with higher added value, in line with current industrial and regulatory requirements. This study aimed to investigate the application of polymeric and ceramic membranes for the purification and concentration of bioactive compounds from annatto seed extracts, with emphasis on the influence of membrane structure and material on the retention efficiency of bixin, phenolic compounds, and the associated antioxidant potential. The methodology encompassed the production of alumina-based hollow fiber ceramic membranes, subsequently characterized in terms of morphology, mechanical strength, chemical stability, and filtration performance. In parallel, experiments were conducted using polymeric membranes in a dead-end configuration, with the aim of evaluating their selectivity and retention capacity of bioactive compounds. Furthermore, the use of natural deep eutectic solvents, classified as a green alternative, was investigated for bixin extraction, with results compared to those obtained by conventional solvents, such as ethanol and water. The resulting samples were analyzed using chromatographic techniques, including high-performance liquid chromatography and mass spectrometry, enabling the precise quantification of bixin and phenolic compounds. The main results revealed that polymeric membranes with a molecular weight cut-off (MWCO) of 5 kDa were able to retain up to 90% of bixin and approximately 54.2% of phenolics compounds. The microfiltration ceramic hollow fiber membranes showed similar performance, reaching retentions close to 90% of bixin and 47,53% of phenolics compounds. The final permeate fluxes with polymeric and ceramic membranes were of 10.72 and 9,26 L h-1 m-2, respectively. Thus, both membranes were efficient for the concentration of bioactive compounds from annatto seed extracts, which reinforces the role of additional retention mechanisms in addition to the pore size exclusion. Results regarding the use of natural deep eutectic solvents confirmed not only higher extraction efficiency but also demonstrated their ability to stabilize bixin, preventing its degradation and ensuring greater preservation of bioactive properties. In these trials, the maximum yield reached 2.31% (w/w), while the ethanol:water mixture (1:1 v/v) yielded only 0.0075% (w/w) for bixin extraction. In addition to the superior performance, the extracts obtained were richer in bixin and showed greater stability compared to those produced by conventional solvents, reinforcing both the technical feasibility and the environmentally sustainable contribution of green solvents over the evaluated alternatives. It is concluded that membrane separation processes associated with natural deep eutectic solvents represent a promising route for the valorization of annatto seeds, by combining technical efficiency, sustainability, and feasibility of industrial-scale application. This study contributes to broadening the understanding of the use of clean technologies in obtaining natural colorants and bioactive compounds, providing foundations for the development of innovative processes aimed at the food, pharmaceutical, and cosmetic industries.pt_BR
dc.publisher.countryBrasilpt_BR
dc.publisher.programPrograma de Pós-graduação em Engenharia Químicapt_BR
dc.sizeorduration137pt_BR
dc.subject.cnpqCNPQ::ENGENHARIAS::ENGENHARIA QUIMICA::OPERACOES INDUSTRIAIS E EQUIPAMENTOS PARA ENGENHARIA QUIMICA::OPERACOES DE SEPARACAO E MISTURApt_BR
dc.subject.cnpqCNPQ::ENGENHARIAS::ENGENHARIA QUIMICA::PROCESSOS INDUSTRIAIS DE ENGENHARIA QUIMICApt_BR
dc.embargo.termsPublicação de artigo pendentept_BR
dc.identifier.doihttps://doi.org/10.14393/ufu.te.2026.606pt_BR
dc.orcid.putcode224883237-
dc.subject.autorizadoEngenharia Químicapt_BR
dc.description.embargo2028-07-29-
dc.subject.odsODS::ODS 9. Indústria, Inovação e infraestrutura - Construir infraestrutura resiliente, promover a industrialização inclusiva e sustentável, e fomentar a inovação.pt_BR
dc.subject.odsODS::ODS 3. Saúde e bem-estar - Assegurar uma vida saudável e promover o bem-estar para todos, em todas as idades.pt_BR
dc.subject.odsODS::ODS 12. Consumo e produção responsáveis - Assegurar padrões de produção e de consumo sustentáveis.pt_BR
dc.identifier.capesdegreeprogramcode32006012005P4 -
dc.degree.levelDoutorado Acadêmicopt_BR
dc.degree.departmentFaculdade de Engenharia Químicapt_BR
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