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Preparation, molecular docking, and biological evaluation of radioiodinated cefaclor for inflammation detection. [PDF]
Hussien H +4 more
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MSWIBA-based cellular alkali-activated concrete incorporating waste glass powder
Cement and Concrete Composites, 2019Abstract In this study, municipal solid waste incineration bottom ash (MSWIBA) and waste glass were recycled and reused to synthesize aerated or cellular alkali-activated concrete (AAAC) in order to minimize their disposal at landfills and to produce a value-added construction material.
Dongxing Xuan, Pei Tang, Chi Sun Poon
exaly +3 more sources
Waste-to-resource preparation of glass-containing foams from geopolymers
Ceramics International, 2019Waste glass-based cellular geopolymers with total porosity about ~55 vol%, thermal conductivity of ~0.21 W/mK, and compression strength of ~7.3 MPa were successfully produced by a direct foaming technique using hydrogen peroxide (chemical pore-forming ...
Chengying Bai +2 more
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Formation of Cellular-Structure Material From Automotive Glass Waste and Sawdust
Materials and Manufacturing Processes, 2013The automotive industry is perceived as a producer of a wide range of numerous recyclable materials. Various proportions of glass automotive waste and sawdust as pore-forming agent were prepared with the aim of producing glass-based foams. Impacts of sintering conditions and additions of sawdust on microstructural evolution and physical properties of ...
A. A. Francis, M. K. Abdel Rahman
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Micro- and macro-cellular sintered glass-ceramics from wastes
Journal of the European Ceramic Society, 2007Glass obtained from melting a mixture of industrial wastes (panel glass from dismantled cathode ray tubes, mining residues from feldspar excavation and lime from fume abatement systems of the glass industry) has been employed for manufacturing micro- and macro-cellular sintered glass-ceramics. Micro-cellular glass-ceramics, with a closed porosity, were
E. Bernardo
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Environmental Progress & Sustainable Energy, 2013
Thin‐film transistor liquid crystal display (TFT–LCD) waste glass comprises mainly SiO2 and Al2O3, which are suitable raw materials for geopolymer. This study investigates the effects of the amount of foam agents on the properties of waste glass‐based cellular geopolymer.
Hau‐Shing Shiu +4 more
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Thin‐film transistor liquid crystal display (TFT–LCD) waste glass comprises mainly SiO2 and Al2O3, which are suitable raw materials for geopolymer. This study investigates the effects of the amount of foam agents on the properties of waste glass‐based cellular geopolymer.
Hau‐Shing Shiu +4 more
openaire +2 more sources
University News. North-Caucasian Region. Technical Sciences Series, 2018
V. Smoliy
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V. Smoliy
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Ash-Slag Based Cellular Glass for Energy-Efficient 3-Ply Construction Panels
Glass and Ceramics (English Translation of Steklo I Keramika), 2019V A Smolii, A S Kosarev, E A Yatsenko
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