RESÍDUOS DE LOUÇA SANITÁRIA COMO COMPONENTES DE CONCRETOS E ARGAMASSAS

Autores

  • Yuri Vilas Boas Ortigara IFSULDEMINAS / UNICAMP
  • Patricia Stella Pucharelli Fontanini UNICAMP

DOI:

https://doi.org/10.46421/entac.v18i.1030

Palavras-chave:

Resíduo, Louça Sanitária, Materiais alternativos, Concreto, Argamassa

Resumo

O uso de resíduos industriais na produção de compósitos cimentícios pode apresentar vantagens, econômicas, técnicas e ambientais, o que desperta o interesse da comunidade acadêmica. Esta Revisão Sistemática da Literatura – RSL, buscou identificar as formas de reaproveitamento dos resíduos de louças sanitárias -RLS na fabricação de concretos e argamassas, de forma a categorizar os estudos já desenvolvidos, bem como identificar as principais técnicas de caracterização destes resíduos. A proposta de categorização e levantamento sistematizado de fatores oferecidos nesta pesquisa pode auxiliar a diagnosticar possibilidades de reaproveitamento dos resíduos, bem como identifica lacunas do conhecimento científico. Os resultados apontam para um baixo número de artigos publicados, porém com resultados promissores para a incorporação dos RLS nos compósitos.

Referências

ABADOU, Y.; KETTAB, R.; GHREIB, A. Experimental investigation on the carbonation properties of dune sand ceramic waste mortar. Journal of Engineering, Design and Technology, v. 16, n. 3, p. 501–516, 4 jun. 2018.

ABADOU, Y.; MITICHE-KETTAB, R.; GHRIEB, A. Ceramic waste influence on dune sand mortar performance. Construction and Building Materials, v. 125, p. 703–713, out. 2016.

ALMEIDA, D. H. DE et al. Properties of concrete manufactured with use of ceramic sanitary ware waste as aggregate. Matéria (Rio de Janeiro), v. 24, n. 2, 2019.

ALVES, A. V. et al. Mechanical properties of structural concrete with fine recycled ceramic aggregates. Construction and Building Materials, v. 64, p. 103–113, ago. 2014.

DENISIEWICZ, A. et al. Experimental Investigation of Concrete with Recycled Aggregates for Suitability in Concrete Structures. Applied Sciences, v. 9, n. 23, p. 5010, jan. 2019.

FARINHA, C.; DE BRITO, J.; VEIGA, R. Incorporation of fine sanitary ware aggregates in coating mortars. Construction and Building Materials, v. 83, p. 194–206, maio 2015.

FRANUS, W. et al. Microstructural Differences in Response of Thermoresistant (Ceramic) and Standard (Granite) Concretes on Heating. Studies Using SEM and Nonstandard Approaches to Microtomography and Mercury Intrusion Porosimetry Data. Materials, v. 11, n. 7, p. 1126, 2 jul. 2018.

GOUGH, D.; THOMAS, J.; OLIVER, S. Clarifying differences between review designs and methods. Systematic Reviews, v. 1, n. 1, p. 28, 9 jun. 2012.

HEIDARI, A.; TAVAKOLI, S.; TAVAKOLI, D. Reusing Waste Ceramic and Waste Sanitary Ware in Concrete as Pozzolans with Nano-Silica and Metakaolin. International Journal of Sustainable Construction Engineering and Technology, v. 10, n. 1, 26 ago. 2019.

KOENDERS, E. A. B.; PEPE, M.; MARTINELLI, E. Compressive strength and hydration processes of concrete with recycled aggregates. Cement and Concrete Research, v. 56, p. 203–212, 1 fev. 2014.

LU, G. et al. Improving the polishing resistance of cement mortar by using recycled ceramic.

Resources, Conservation and Recycling, v. 158, p. 104796, 1 jul. 2020.

LUCAS, J. et al. The effect of using sanitary ware as aggregates on rendering mortars’ performance. Materials & Design, v. 91, p. 155–164, fev. 2016. ENTAC2020 – Porto Alegre, Brasil, 4 a 6 de novembro de 2020MEDINA, C. et al. Caracterización de los hormigones realizados con áridos reciclados procedentes de la industria de cerámica sanitaria. Materiales de Construcción, v. 61, n. 304, p. 533–546, 30 dez. 2011.

______. Gas permeability in concrete containing recycled ceramic sanitary ware aggregate.

Construction and Building Materials, v. 37, p. 597–605, dez. 2012.

______. Durability of recycled concrete made with recycled ceramic sanitary ware aggregate. Inter-indicator relationships. Construction and Building Materials, v. 105, p. 480–486, fev. 2016a.

______. New additions for eco-efficient cement design. Impact on calorimetric behaviour and comparison of test methods. Materials and Structures, v. 49, n. 11, p. 4595–4607, nov. 2016b.

MEDINA, C.; FRÍAS, M.; SÁNCHEZ DE ROJAS, M. I. Microstructure and properties of recycled concretes using ceramic sanitary ware industry waste as coarse aggregate. Construction and Building Materials, v. 31, p. 112–118, jun. 2012.

______. Freeze-thaw durability of recycled concrete containing ceramic aggregate. Journal of Cleaner Production, v. 40, p. 151–160, fev. 2013a.

______. Properties of recycled ceramic aggregate concretes: Water resistance. Cement and Concrete Composites, v. 40, p. 21–29, jul. 2013b.

OGRODNIK, P.; SZULEJ, J. The Assessment of Possibility of Using Sanitary Ceramic Waste as Concrete Aggregate—Determination of the Basic Material Characteristics. Applied Sciences, v. 8, n. 7, p. 1205, 23 jul. 2018.

OGRODNIK, P.; SZULEJ, J.; FRANUS, W. The Wastes of Sanitary Ceramics as Recycling Aggregate to Special Concretes. Materials, v. 11, n. 8, p. 1275, 24 jul. 2018.

OGRODNIK, P.; ZEGARDŁO, B.; SZELĄG, M. The Use of Heat-Resistant Concrete Made with Ceramic Sanitary Ware Waste for a Thermal Energy Storage. Applied Sciences, v. 7, n. 12, p. 1303, 16 dez. 2017.

PITARCH, A. M. et al. Effect of Tiles, Bricks and Ceramic Sanitary-Ware Recycled Aggregates on Structural Concrete Properties. Waste and Biomass Valorization, v. 10, n. 6, p. 1779–1793, 1 jun. 2019.

RUIZ, J. DE A.; GRANJA, A. D. UM MAPEAMENTO SISTEMÁTICO DA LITERATURA SOBRE A RELAÇÃO ENTRE VALOR E COLABORAÇÃO NA CONSTRUÇÃO. . In: IN: SIBRAGEC - SIMPÓSIO BRASILEIRO DE GESTÃO E ECONOMIA DA CONSTRUÇÃO, INOVAÇÃO E SUSTENTABILIDADE,. Salvador, BA: 2013THOMAS, C. et al. Influence of curing conditions on recycled aggregate concrete.

Construction and Building Materials, v. 172, p. 618–625, maio 2018.

TU, T.-Y.; CHEN, Y.-Y.; HWANG, C.-L. Properties of HPC with recycled aggregates. Cement and Concrete Research, v. 36, n. 5, p. 943–950, 1 maio 2006.

VIEIRA, T. et al. Durability-related performance of concrete containing fine recycled aggregates from crushed bricks and sanitary ware. Materials & Design, v. 90, p. 767–776, jan. 2016.

ZEGARDŁO, B.; SZELĄG, M.; OGRODNIK, P. Ultra-high strength concrete made with recycled aggregate from sanitary ceramic wastes – The method of production and the interfacial transition zone. Construction and Building Materials, v. 122, p. 736–742, set. 2016.

ZITO, S.; IRASSAR, E.; RAHHAL, V. ESTUDIO SOBRE PASTAS Y MORTEROS DE CEMENTO PORTLAND CON REEMPLAZO POR LOZA SANITARIA. Avances en Ciencias e Ingeniería, p. 10, 2016.

ZITO, S. V.; IRASSAR, E. F.; RAHHAL, V. F. Management of sanitary ware wastes as supplementary cementing materials in concretes. Journal of Sustainable Cement-Based Materials, v. 9, n. 1, p. 35–49, 2 jan. 2020.

Downloads

Publicado

2020-11-04

Como Citar

ORTIGARA, Yuri Vilas Boas; FONTANINI, Patricia Stella Pucharelli. RESÍDUOS DE LOUÇA SANITÁRIA COMO COMPONENTES DE CONCRETOS E ARGAMASSAS. In: ENCONTRO NACIONAL DE TECNOLOGIA DO AMBIENTE CONSTRUÍDO, 18., 2020. Anais [...]. Porto Alegre: ANTAC, 2020. p. 1–8. DOI: 10.46421/entac.v18i.1030. Disponível em: https://eventos.antac.org.br/index.php/entac/article/view/1030. Acesso em: 30 jun. 2024.

Edição

Seção

(Inativa) Tecnologias de Sistemas e Processos Construtivos

Artigos mais lidos pelo mesmo(s) autor(es)

Artigos Semelhantes

<< < 1 2 3 4 5 6 7 8 9 10 > >> 

Você também pode iniciar uma pesquisa avançada por similaridade para este artigo.