Eco-Efficient Artificial Stones Produced Using Quartzite Quarry Waste and Vegetable Resin

Author:

Aguiar Mariane Costalonga de1ORCID,Fernandes Maria Carolyna Sopeletti2ORCID,Sant’Ana Maria Angelica Kramer1ORCID,Sagrillo Viviana Possamai Della2,Anastácio Alexandre dos Santos3ORCID,Gadioli Monica Castoldi Borlini1ORCID

Affiliation:

1. Centre for Mineral Technology State of Espírito Santo, Branch—CETEM/MCTI, Cachoeiro de Itapemirim 29311-970, ES, Brazil

2. Federal Institute of Espirito Santo—IFES, Vitória 29040-780, ES, Brazil

3. Department of Chemistry and Physics, Federal University of Espirito Santo—UFES, Alegre 29500-000, ES, Brazil

Abstract

The ornamental stone industry plays a crucial role in the world economy, and thus the production process of ornamental stones generates a large volume of waste that is normally destined for landfills. Given the growing market import of artificial stones, there is a need for more sustainable practices to reduce waste and improve the use of natural resources. Thus, the present study aims to develop artificial stones with waste from the ornamental stone extraction process from the quarry, and vegetable polyurethane resin derived from castor oil, in order to analyze its viability in the production of artificial stone slabs. The wastes used in this work were three quartzites, fragmented and mixed with three grain sizes, called coarse, medium, and fine. These wastes were characterized using X-ray fluorescence (XRF), X-ray diffraction (XRD), Fourier transform infrared (FTIR), and thermal analysis (TGA/DTG/DSC). Artificial stone slabs were produced using 15 wt.% vegetable polyurethane resin derived from castor oil and 85 wt.% ornamental stone wastes (quartzite). These slabs underwent apparent density, water absorption, porosity, 3-point flexural strength, scanning electron microscopy (SEM), petrography, and X-ray diffraction (XRD) tests. According to the results obtained, it was possible to prove the technical viability of manufacturing artificial stones with ornamental stone wastes and with the use of vegetable polyurethane resin derived from castor oil. The use of these raw materials not only resulted in the manufacture of a new material but also in an environmentally conscious and sustainable approach, following precepts such as the circular economy. The creation of these eco-efficient products is a significant contribution to the search for solutions that value environmental preservation and the optimization of natural resources.

Funder

Fundação de Amparo à Pesquisa e Inovação do Espírito Santo—FAPES

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference45 articles.

1. Montani, C. (2023, September 10). XXXII Rapporto Marmo e Pietre nel Mondo 2021, Marble and Stones in the World XXXII Report. Aldus. Casa di Edizioni in Carrara. Available online: https://www.abirochas.com.br.

2. Associação Brasileira da Indústria de Rochas Ornamentais—ABIROCHAS (2023, September 10). Balanço das Exportações e Importações Brasileiras de Rochas Ornamentais no 1º Trimestre de 2023. Informe: 01/2023. Available online: http://www.abirochas.com.br.

3. Silveira, L.L., Gomes, J.C., Castilho, E.D., and Almeida, P.F. (2017, January 23–27). Estudo comparativo da resistência à flexão quatro pontos entre granitos ornamentais telados com resina poliuretana de mamona e epóxi. Proceedings of the XXVII Encontro Nacional de Tratamento de Minérios e Metalurgia Extrativa, Belém, Brazil.

4. Vidal, F.W.H., Azevedo, H.C.A., and Castro, N.F. (2014). Tecnologia de Rochas Ornamentais: Pesquisa, Lavra e Beneficiamento, Centro de Tecnologia Mineral. CETEM/MCTI.

5. Determination of Useful Life of Red Ceramic Parts Incorporated with Ornamental Stone Waste;Xavier;J. Mater. Civ. Eng.,2018

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