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首页> 外文期刊>Environmental Progress & Sustainable Energy >Humidity‐conditioning mesoporous molecular sieves synthesized from thin‐film‐transistor liquid‐crystal‐display waste glass and SiC sludge
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Humidity‐conditioning mesoporous molecular sieves synthesized from thin‐film‐transistor liquid‐crystal‐display waste glass and SiC sludge

机译:湿度调节介孔分子筛从合成量薄膜晶体管液态晶体显示废玻璃和SiC污泥

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摘要

This study characterized the humidity conditioning of Al‐MCM‐41 mesoporous molecular sieves that were recycled from thin‐film‐transistor liquid‐crystal‐display (TFT‐LCD) waste glass and SiC sludge and synthesized through alkali fusion and hydrothermal processes. Temperatures of 450–650°C, various liquid: solid ratios (5:1, 10:1, 15:1), and different proportions of SiC sludge in the TFT–LCD waste glass were used. The crystal structures of the Al‐MCM‐41 were determined using X‐ray diffraction. The concentrations of heavy metals leached from the materials were below Taiwan's regulatory thresholds. When the liquid: solid ratio was 10:1 and the alkali fusion temperature was 90, 105, or 120°C, the mesoporous molecular sieves met JIS A1470 intensity building materials specifications (moisture adsorption content??29 g/m 2 ). Mesoporous molecular sieves recycled from TFT‐LCD waste glass and SiC sludge had excellent mechanical properties, making them feasible for use in humidity‐conditioning applications. This novel synthesis process could also be employed for other Si‐related industrial wastes and be beneficial during the large‐scale production of valuable silica‐based humidity‐conditioning materials for environmental protection applications. ? 2017 American Institute of Chemical Engineers Environ Prog, 37: 1285–1290, 2018
机译:本研究的特点湿度调节的量MCM 41介孔分子筛的再生量薄膜晶体管应承担的液体量晶体量显示(TFT LCD)应承担的废玻璃和SiC污泥通过碱融合和合成热液过程。450 - 650°C,各种液体:固体比率(5:1,10:1, 15:1)和不同比例的碳化硅污泥在tft -废玻璃。晶体结构的铝量MCM 41人决定使用X射线衍射。浓度的重金属淋溶材料低于台湾的监管阈值。和碱熔温度是90年,105年,或120°C,介孔分子筛JIS会面A1470强度建筑材料规范(水分吸附内容?在? 2 >

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