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Candeias, Carla; Rocha, Fernando (2025) Decarbonizing Red Ceramics Through Sustainable Formulations of Complementary Raw Materials. Minerals, 15 (12). doi:10.3390/min15121258

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Reference TypeJournal (article/letter/editorial)
TitleDecarbonizing Red Ceramics Through Sustainable Formulations of Complementary Raw Materials
JournalMinerals
AuthorsCandeias, CarlaAuthor
Rocha, FernandoAuthor
Year2025 (November 27)Volume15
Issue12
PublisherMDPI AG
DOIdoi:10.3390/min15121258Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID19283372Long-form Identifiermindat:1:5:19283372:5
GUID0
Full ReferenceCandeias, Carla; Rocha, Fernando (2025) Decarbonizing Red Ceramics Through Sustainable Formulations of Complementary Raw Materials. Minerals, 15 (12). doi:10.3390/min15121258
Plain TextCandeias, Carla; Rocha, Fernando (2025) Decarbonizing Red Ceramics Through Sustainable Formulations of Complementary Raw Materials. Minerals, 15 (12). doi:10.3390/min15121258
In(2025, December) Minerals Vol. 15 (12). MDPI AG

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

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Vilarinho, I.S., Ferreira, M., Miranda, C., Silva, J., Batista, S., Gonçalves, M.C., and Seabra, M.P. (2025). Decarbonisation of Earthenware Ceramic Production Using Bivalve Shell Waste. Ceramics, 8.
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EU (2025, September 15). Best Available Techniques for the Ceramic Manufacturing Industry (CER BREF). Industrial Emissions Directive 2010/75/EU. Publications Office of the European Union. Available online: https://eippcb.jrc.ec.europa.eu/sites/default/files/2019-11/cer_bref_0807.pdf.
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Lisboa, J. (2014). Argilas Comuns em Portugal Continental: Ocorrência e Caraterísticas, Associação Portuguesa para o Estudo do Quaternário(APEQ). (In Portuguese).
Oliveira (1991) Cad. Lab. Xeolóxico Laxe Traços gerais da evolução tectono-estratigráfica da Zona de Ossa-Morena, em Portugal 16, 221
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Novo, S. (2004). Caracterização de Xistos Argilosos de Barrancos e Argilas Residuais de S. Pedro do Corval Como Matérias Primas Cerâmicas. [Master’s Dissertation, University of Aveiro]. (In Portuguese).
Brindley, G., and Brown, G. (1984). X-ray diffraction procedures for clay mineral identification. Crystal Structures of Clay Minerals and Their X-ray Identification, Mineralogical Society.
(2018). Standard Test Method for Drying and Firing Shrinkages of Ceramic Whiteware Clays ASTM C326-09 (Standard No. ASTM C326-09).
(2021). Ceramic Tiles—Sampling and Basis for Testing (Standard No. ISO 10545-1:2021).
(1982). Standard Test Method for Drying and Firing Shrinkages of Ceramic Whiteware Clays (Standard No. ASTM C326-82).
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(2006). Water Absorption, Bulk Density, Apparent Porosity, and Apparent Specific Gravity of Fired Whiteware Products (Standard No. ASTM C373-88).
Not Yet Imported: - journal-article : 10.3390/ma14247672

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Not Yet Imported: Science Progress - journal-article : 10.1177/00368504241232534

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Not Yet Imported: Journal of the European Ceramic Society - journal-article : 10.1016/j.jeurceramsoc.2007.03.009

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(2015). Specification for Masonry Units—Part 1: Clay Masonry Units (Standard No. EN 771-1:2011+A1:2015).
Karaman (2006) J. Sci. Ind. Res. Firing temperature and firing time influence on mechanical and physical properties of clay bricks 65, 141
Wang, Y., and Abuel-Naga, H. (2025). Unfired Bricks from Wastes: A Review of Stabilizer Technologies, Performance Metrics, and Circular Economy Pathways. Buildings, 15.
Nkondi (2025) Case Stud. Constr. Mater. Fired clay bricks made by incorporating organic additives: A review 23, e05037
Not Yet Imported: - journal-article : 10.3390/ma11122439

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Not Yet Imported: - journal-article : 10.3390/ma16010262

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European Commission’s Joint Research Centre (JRC) (2025, October 06). European Bureau for Research on Industrial Transformation and Emissions, Circular Economy and Sustainable Industry Unit of Directorate B—Fair and Sustainable Economy. Available online: https://bureau-industrial-transformation.jrc.ec.europa.eu/.
Intergovernmental Panel on Climate Change (IPCC) (2025, October 06). Climate Change 2007: Working Group III: Mitigation of Climate Change—Industry. Available online: https://archive.ipcc.ch/publications_and_data/ar4/wg3/en/ch7.html.
Almeida, M., Dias, A., Arroja, L., and Dias, B. (2010, January 17–19). Life cycle assessment (cradle to gate) of a Portuguese brick. Proceedings of the Portugal SB10: Sustainable Building Affordable to All, Algarve, Portugal.
European Comission (EC) (2025, October 06). Climate Action—Energy, Climate change, Environment. Available online: https://climate.ec.europa.eu/index_en.
Eggleston, H.S., Buendia, L., Miwa, K., Ngara, T., and Tanabe, K. (2006). Chapter 2: Stationary Combustion. 2006 IPCC Guidelines for National Greenhouse Gas Inventories, Institute for Global Environmental Strategies. Available online: https://www.ipcc-nggip.iges.or.jp/public/2006gl/pdf/2_Volume2/V2_2_Ch2_Stationary_Combustion.pdf.
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