2021
DOI: 10.1016/j.ceramint.2021.04.108
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Reuse of glass waste in the manufacture of ceramic tableware glazes

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Cited by 26 publications
(13 citation statements)
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“…Usually, VC bodies consist of mullite, quartz, and a liquid phase from molten clay-feldspar; SLGW has various fluxes (such as CaO, MgO, K2O and Na2O) which lead to the formation of a great amount of liquid phase that fills the voids between the particles leading to a reduction in porosity of C2, C3, C4 and C5 samples. It is, also, found that the grain distribution in bodies containing SLGW, is similar to that of the standard VC sample [2]. According to the X-ray diffraction pattern shown in Figure 5, these samples contain also the anorthite phase formed by CaO oxide from SLGW powder.…”
Section: Scanning Electron Microscopy (Sem)supporting
confidence: 58%
See 1 more Smart Citation
“…Usually, VC bodies consist of mullite, quartz, and a liquid phase from molten clay-feldspar; SLGW has various fluxes (such as CaO, MgO, K2O and Na2O) which lead to the formation of a great amount of liquid phase that fills the voids between the particles leading to a reduction in porosity of C2, C3, C4 and C5 samples. It is, also, found that the grain distribution in bodies containing SLGW, is similar to that of the standard VC sample [2]. According to the X-ray diffraction pattern shown in Figure 5, these samples contain also the anorthite phase formed by CaO oxide from SLGW powder.…”
Section: Scanning Electron Microscopy (Sem)supporting
confidence: 58%
“…Evidently, among ceramics, Sanitary ceramic is one of the most significant types of ceramics due to its high technical characteristics; it is mainly used in the building industry [1]. Indeed, demand for various ceramic products is increasing [2]. Mostly, the production of sanitary-ware VC bodies, is based on the preparation of slip; the raw materials used in slip formulation are in general a mix of kaolin (25-35%), clay (20-28%), feldspar (15-23%) and quartz (17-31%).…”
Section: Introductionmentioning
confidence: 99%
“…On the positive side, there are already people experimenting with energy-efficient fabrication methods in the ceramics industry. Gol, et al [10] argue that using 3% weight glass waste instead of glass is an appropriate and sustainable practice. Chuenwong, et al [11], proposed that the dry process of ceramic production could save 70% energy compared with the wet process through monitoring 28 kilns and 11 spray dryers.…”
Section: Ceramic Chopsticksmentioning
confidence: 99%
“…" # " # " # " # (Pegoretti, et al, 2002) Ceramic Based Products " # X " # " # (Gol, et al, 2021) Burnt Bricks " # " # " # " # (Saraswathy, et al, 2019) Insulation " # " # " # " # (Shafi et al, 2019) The other reusing option which failed to satisfy one of the primary functions was ceramicbased products. This is mainly due to the poor shock resistance, weak in tension and may crack when hit with heavy items (TheKacasSite, 2021).…”
Section: Figure 2: Breakdown Of Papers According To Yearmentioning
confidence: 99%