Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites

The circular economy encourages optimizing use of plastics, waste reduction, sustainable materials, and processing of plastic products. In this framework, the use of agricultural waste materials promotes waste reduction and eco-design in plastic product manufacturing. This study researched the prepa...

Full description

Autores:
Menendez, A.
Coello, M.
Suarez, J.
Lazo, M.
Bravo, G.
Baño, G.
Adrian, E.
Rigail Cedeño, A.
Tipo de recurso:
Conferencia (Ponencia)
Fecha de publicación:
2024
Institución:
Universidad de los Andes
Repositorio:
Séneca: repositorio Uniandes
Idioma:
eng
OAI Identifier:
oai:repositorio.uniandes.edu.co:1992/76057
Acceso en línea:
https://hdl.handle.net/1992/76057
https://repositorio.uniandes.edu.co/
Palabra clave:
Biocomposites
Compatibilizers
Processability
Circular Economy
Ingeniería
Rights
openAccess
License
https://repositorio.uniandes.edu.co/static/pdf/aceptacion_uso_es.pdf
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repository_id_str
dc.title.eng.fl_str_mv Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
title Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
spellingShingle Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
Biocomposites
Compatibilizers
Processability
Circular Economy
Ingeniería
title_short Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
title_full Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
title_fullStr Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
title_full_unstemmed Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
title_sort Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocomposites
dc.creator.fl_str_mv Menendez, A.
Coello, M.
Suarez, J.
Lazo, M.
Bravo, G.
Baño, G.
Adrian, E.
Rigail Cedeño, A.
dc.contributor.author.none.fl_str_mv Menendez, A.
Coello, M.
Suarez, J.
Lazo, M.
Bravo, G.
Baño, G.
Adrian, E.
Rigail Cedeño, A.
dc.contributor.editor.none.fl_str_mv Salcedo, Felipe
Perilla, Jairo Ernesto
Sierra, Cesar
Medina, Jorge Alberto
dc.subject.keyword.eng.fl_str_mv Biocomposites
Compatibilizers
Processability
Circular Economy
topic Biocomposites
Compatibilizers
Processability
Circular Economy
Ingeniería
dc.subject.themes.none.fl_str_mv Ingeniería
description The circular economy encourages optimizing use of plastics, waste reduction, sustainable materials, and processing of plastic products. In this framework, the use of agricultural waste materials promotes waste reduction and eco-design in plastic product manufacturing. This study researched the preparation of an isotatic polypropylene (PP) matrix (MFI 50 grade) with spent coffee grounds (SCG) and various commercial additives. The biocomposites were analyzed to evaluate their mechanical properties and processability. PP and SCG composites were synthesized with 30% SCG content with maleic anhydride grafted polypropylene (PP-g-MA), stearic acid and epoxidized oil as compatibilizers. The study found that polypropylene grafted with maleic anhydride (PP-g-MA) as a compatibilizer improves SCG dispersion, enhancing processing stability. Epoxidized oil (EO) and stearic acid (SA) can also function as lubricants that significantly improve composite processability by decreasing specific energy and shear viscosity. The processability properties were accessed using a torque rheometer. A tensile test showed that while SCG addition decreases mechanical strength, PP-g-MA improves interfacial adhesion, and EO and SA increase flexibility by reducing brittleness.
publishDate 2024
dc.date.issued.none.fl_str_mv 2024-12
dc.date.accessioned.none.fl_str_mv 2025-02-07T19:47:02Z
dc.date.available.none.fl_str_mv 2025-02-07T19:47:02Z
dc.type.none.fl_str_mv Documento de Conferencia
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dc.identifier.isbn.none.fl_str_mv 978-958-798-779-9
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/1992/76057
dc.identifier.instname.none.fl_str_mv Universidad de los Andes
dc.identifier.reponame.none.fl_str_mv Repositorio Institucional Séneca
dc.identifier.repourl.none.fl_str_mv https://repositorio.uniandes.edu.co/
identifier_str_mv 978-958-798-779-9
Universidad de los Andes
Repositorio Institucional Séneca
url https://hdl.handle.net/1992/76057
https://repositorio.uniandes.edu.co/
dc.language.iso.none.fl_str_mv eng
language eng
dc.relation.conferencedate.none.fl_str_mv 05-19-2024/05-23-2024
dc.relation.conferenceplace.none.fl_str_mv Cartagena de Indias, Colombia
dc.relation.ispartofconference.none.fl_str_mv Proceedings of the 39th International Conference of the Polymer Processing Society (PPS-39)
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dc.format.extent.none.fl_str_mv 10 páginas
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dc.publisher.none.fl_str_mv Ediciones Uniandes
dc.publisher.faculty.none.fl_str_mv Facultad de Ingeniería
dc.publisher.place.none.fl_str_mv Bogotá
publisher.none.fl_str_mv Ediciones Uniandes
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spelling Menendez, A.Coello, M.Suarez, J.Lazo, M.Bravo, G.Baño, G.Adrian, E.Rigail Cedeño, A.Salcedo, FelipePerilla, Jairo ErnestoSierra, CesarMedina, Jorge Alberto2025-02-07T19:47:02Z2025-02-07T19:47:02Z2024-12978-958-798-779-9https://hdl.handle.net/1992/76057Universidad de los AndesRepositorio Institucional Sénecahttps://repositorio.uniandes.edu.co/The circular economy encourages optimizing use of plastics, waste reduction, sustainable materials, and processing of plastic products. In this framework, the use of agricultural waste materials promotes waste reduction and eco-design in plastic product manufacturing. This study researched the preparation of an isotatic polypropylene (PP) matrix (MFI 50 grade) with spent coffee grounds (SCG) and various commercial additives. The biocomposites were analyzed to evaluate their mechanical properties and processability. PP and SCG composites were synthesized with 30% SCG content with maleic anhydride grafted polypropylene (PP-g-MA), stearic acid and epoxidized oil as compatibilizers. The study found that polypropylene grafted with maleic anhydride (PP-g-MA) as a compatibilizer improves SCG dispersion, enhancing processing stability. Epoxidized oil (EO) and stearic acid (SA) can also function as lubricants that significantly improve composite processability by decreasing specific energy and shear viscosity. The processability properties were accessed using a torque rheometer. A tensile test showed that while SCG addition decreases mechanical strength, PP-g-MA improves interfacial adhesion, and EO and SA increase flexibility by reducing brittleness.10 páginasapplication/pdfengEdiciones UniandesFacultad de IngenieríaBogotáhttps://repositorio.uniandes.edu.co/static/pdf/aceptacion_uso_es.pdfinfo:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Processability and mechanical properties of spent coffee ground (SCG) and polypropylene biocompositesDocumento de Conferenciainfo:eu-repo/semantics/conferenceObjectinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_8544http://purl.org/coar/resource_type/c_c94fhttp://purl.org/coar/version/c_970fb48d4fbd8a85TextBiocompositesCompatibilizersProcessabilityCircular EconomyIngeniería05-19-2024/05-23-2024Cartagena de Indias, ColombiaProceedings of the 39th International Conference of the Polymer Processing Society (PPS-39)ORIGINALPPS-39 - Processability and Mechanical Properties of Spent Coffee Ground (SCG) and Polypropylene Biocomposites.pdfPPS-39 - 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