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Reducing energy losses in industrial processes with high-efficiency thermal insulation of microporous castable calcium silicate produced from elements of biomass: eggshells and rice husk ash

Abstract

This research project aims to find a common and integrated solution to two problems of great impact in Brazil. The first is to find a sustainable destination for the millions of tons of rice husks and eggshells from chickens generated in the industrial production of these foods. As they are biological materials of low degradability, these barks cannot simply be used as fertilizer in plantations or fully absorbed by the production chains. Currently, a significant proportion of such materials are disposed of in landfills or outdoor piles. The second problem is the loss of thermal energy that occurs in all industrial processes that have high-temperature operations (200-1200ºC) due to the lack of appropriate thermal insulators. The compound known as hydrated calcium silicate (CaSiO3.3H2O) is a synthetic material widely used in this application because it is highly porous, chemically inert, and less toxic than ceramic fiber blankets. Currently, it is produced from the hydrothermal reaction between sources of calcium oxide (CaO) and silica (SiO2) using mineral raw materials such as calcined limestone rocks and quartz sand, respectively. Considering that chicken eggshells are mainly formed by calcium carbonate (CaCO3) and rice shells contain high levels of silica, it is reasonable to assume that these wastes can be combined to produce thermal insulators based on full-biomass-formed hydrated calcium silicate. In addition to providing an adequate destination for biological waste, this new material would strongly contribute to minimizing the carbon footprint of other industrial processes by reducing thermal losses and fuel consumption. Other residential and building applications for this material, which involve passive protection of doors, electrical cables, and beams against fire and thermo-acoustic insulation of roofs and floors, indicate a great potential for immediate consumption in civil and automotive construction. (AU)

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VEICULO: TITULO (DATA)
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Scientific publications (9)
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
RAFAEL SALOMÃO; LEANDRO FERNANDES; ANDREAS SUNDBLOM; PETER GREENWOOD; ISABELA SANTOS MARTINATTI; PAULO ROBERTO TERUO TIBA. Novel Colloidal Silica Technology For In Situ Spinelization in MgO-Containing Refractories. MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, v. 27, . (18/19773-3, 10/19274-5, 22/03655-7)
HIDALGO-ARAUJO, ANA CAROLINA; SALOMAO, RAFAEL; BERARDI, UMBERTO; DORNELLES, KELEN ALMEIDA. Thermochromic materials for building Applications: Overview through a bibliometric analysis. Solar Energy, v. 293, p. 13-pg., . (24/00850-9, 24/10060-5, 22/03655-7, 22/14074-5)
SAKIHAMA, JOSE; SALOMA, RAFAEL. Microstructure evolution of porous calcium hexaluminate compacts during first heating. CERAMICS INTERNATIONAL, v. 50, n. 3, p. 10-pg., . (18/19773-3, 22/03655-7)
SALOMAO, RAFAEL; FERNANDES, LEANDRO; SIMAO, LUIZ CARLOS. Novel microporous MgO-based high-temperature thermal insulator. OPEN CERAMICS, v. 16, p. 10-pg., . (18/19773-3, 22/03655-7)
HIDALGO-ARAUJO, ANA CAROLINA; SALOMAO, RAFAEL; DORNELLES, KELEN ALMEIDA. Application of Thermochromic and Self-cleaning Materials in Buildings: A Bibliometric Analysis. MULTIPHYSICS AND MULTISCALE BUILDING PHYSICS, IBPC 2024, VOL 1, v. 552, p. 6-pg., . (22/03655-7, 22/14074-5)
HIDALGO-ARAUJO, ANA CAROLINA; SALOMAO, RAFAEL; BERARDI, UMBERTO; DORNELLES, KELEN ALMEIDA. Design and characterization of a SiO2-TiO2 coating containing organic and inorganic thermochromic pigments and optimized with TiO2-P25 for improved long-term performance in energy-efficient roofing. SOLAR ENERGY MATERIALS AND SOLAR CELLS, v. 289, p. 15-pg., . (10/19274-5, 22/03655-7, 24/00850-9, 22/14074-5, 24/10060-5)
SALOMAO, RAFAEL; FERNANDES, LEANDRO; SUNDBLOM, ANDREAS; GREENWOOD, PETER; MARTINATTI, ISABELA SANTOS; TIBA, PAULO ROBERTO TERUO. Novel Colloidal Silica Technology For In Situ Spinelization in MgO-Containing Refractories. MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, v. 27, p. 13-pg., . (18/19773-3, 22/03655-7)
SALOMA, RAFAEL; MARTINATTI, ISABELA S.; FERNANDES, LEANDRO; ANDREAS, SUNDBLOM; GREENWOOD, PETER; TIBA, PAULO R. T.. Novel colloidal silica technology for MgO-containing refractories - Part 1: Anti-hydroxylation binder. OPEN CERAMICS, v. 15, p. 12-pg., . (18/19773-3, 22/03655-7)
HIDALGO-ARAUJO, ANA CAROLINA; SALOMAO, RAFAEL; BERARDI, UMBERTO; DORNELLES, KELEN ALMEIDA. TiO2-P25 Enhanced Thermochromic Coatings for Energy Efficient Roofing: Evaluating Long-Term Performance through Accelerated Aging Tests. BUILDING AND ENVIRONMENT, v. 281, p. 13-pg., . (24/00850-9, 22/03655-7, 24/10060-5, 22/14074-5)