Recycling of waste glass and incinerated sewage sludge ash in glass-ceramics

玻璃回收 材料科学 焚化 硅灰石 吸水率 玻璃陶瓷 微观结构 陶瓷 烧结 废物管理 污水污泥 冶金 熔块 原材料 毒性特征浸出程序 钙长石 浸出(土壤学) 复合材料 矿物学 污水 金属 环境科学 化学 有机化学 工程类 土壤科学 土壤水分
作者
Yujie Huang,Ziwei Chen,Yunpeng Liu,Jian‐Xin Lu,Zuwang Bian,Marcus Yio,Christopher Cheeseman,Fazhou Wang,Chi Sun Poon
出处
期刊:Waste Management [Elsevier BV]
卷期号:174: 229-239 被引量:30
标识
DOI:10.1016/j.wasman.2023.12.007
摘要

Disposal of waste glass and incinerated sewage sludge ash (ISSA) in landfills is a waste of resources and poses significant environmental risks. This work aims to recycle waste glass and ISSA together to form value-added glass-ceramics. The physical and mechanical properties, leaching behaviour, and microstructure of the glass-ceramics produced with different proportions of waste glass powder (WGP) and ISSA were investigated. Thermodynamic calculations were performed to predict the formation of crystalline phases and the phase transformation involved. The results showed the potential of WGP and ISSA as raw materials in glass-ceramics production. WGP effectively densified the microstructure of the glass-ceramics by forming a viscous phase. As WGP content increased, the total porosity of glass-ceramics decreased whereas the density increased, accompanied by the formed anorthite transforming into wollastonite. The incorporation of WGP densified and refined the pore structure of the glass-ceramics, thereby improving the mechanical properties and reducing the water absorption. The glass-ceramics produced with a 50:50 blend of WGP and ISSA exhibited the highest compressive strength of 43.7 MPa and the lowest water absorption of 0.3 %. All fabricated glass-ceramics exhibited innocuous heavy metal leaching. The co-sintering of ISSA and WGP can produce additive-free glass-ceramics, characterized by reduced energy consumption and notable heavy metal immobilization capacity. These materials hold promise for utilization in construction as building materials.
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