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April 1, 2026Materials1 citationsOpen Access

Effect of Waste Glass Incorporation Methods on the Physical, Mechanical and Microstructural Properties of Cementitious Binders

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JMJurgita MalaiškienėKBKarolina BekerėJŠJelena Škamat

Key Points

  • The aim is to evaluate how different methods of incorporating waste glass influence the properties of cementitious binders.
  • Applied three incorporation methods: conventional mixing, intensive mixing, and ultrasonic treatment.
  • Analyzed four glass types: from televisions, washing machines, fluorescent lamps, and solar panels.
  • Compared density, compressive strength, phase composition, and microstructure of hardened cement paste.
  • Ultrasonic treatment of lamp glass resulted in the best performance.
  • Intensive mixing was effective for other glass types.
  • Compressive strength increased by up to 24% with certain methods.
  • Achieved a denser microstructure compared to other glass incorporation techniques.

Abstract

In previous studies, it was established that replacing cement with dispersed glass from various electronic and household devices is challenging due to the formation of agglomerates in the mixture. Therefore, this study addresses this problem by applying different methods for incorporating dispersed glass: mixing in a conventional Hobart-type mixer, mixing dry components in an intensive Eirich-type mixer, and dispersing the glass particles in water using ultrasonic treatment. Using these 3 glass waste incorporation methods, the properties of hardened cement paste—density, compressive strength, phase composition, and microstructure—were compared. The effects of 4 types of glass (from television screens, washing machines, fluorescent lamps, and solar panels) were analysed. The results showed that lamp glass dispersed in water with ultrasound showed the best performance, while for the other glass types, intensive mixing was more effective. Under these conditions, the compressive strength of the samples increased by up to approximately 24%, and a denser microstructure was obtained compared to other glass incorporation methods.

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Cite This Study

Malaiškienė et al. (2026) studied this question.

synapsesocial.com/papers/69ccb74216edfba7beb89344https://doi.org/10.3390/ma19071346
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