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Sustainable ambient pressure-dried silica aerogel from waste glass

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Silica aerogels are outstanding insulation materials, and applying them as a building insulation could significantly enhance the energy efficiency of dwellings. However, the current high price of aerogels hinders their use on large scales, in part due to the embedded costs of production such as raw materials and their energy-intensive drying process. This study proposes a method relying on the upcycling of waste mixed fine soda lime glass as a silica source for subsequent aerogel synthesis via ambient pressure drying (APD). The optimal conditions for the dissolution of silica from waste glass were found to be a 24-hour reaction with a 4M NaOH solution under 80 ºC and a liquid-to-solid ratio of 10. The investigation of silica dissolution considers the balance between the yield of silica and the practical scalability. The resulting aerogel is hydrophobic, has a thermal conductivity of 26 mW.m-1.K-1, a specific surface area of 608 m2.g-1, and a density of 121 kg/m3. These properties are comparable to commercial aerogel, and to a reference aerogel made from commercial sodium silicate. Additionally, the heat treatment of aerogel at 500 ºC for 4 hours further improved its properties, suggesting a potential for targeted property enhancements.
Originele taal-2Engels
Artikelnummer100425
Aantal pagina's12
TijdschriftCurrent Research in Green and Sustainable Chemistry
Volume9
DOI's
StatusGepubliceerd - 8 aug 2024

Financiering

This research is funded by project BRIMM (Bright Renovatie Isolatie voor woningschil door (Advanced) Materialen en Methodes) under Missiegedreven Onderzoek, Ontwikkeling en Innovatie (MOOI). The authors acknowledge Beatrice Cerrai for assistance with SEM measurements.

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  1. SDG 7 – Betaalbare en schone energie
    SDG 7 – Betaalbare en schone energie
  2. SDG 9 – Industrie, innovatie en infrastructuur
    SDG 9 – Industrie, innovatie en infrastructuur
  3. SDG 12 – Verantwoordelijke consumptie en productie
    SDG 12 – Verantwoordelijke consumptie en productie

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