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Influence of Glass Silica Waste Nano Powder on the Mechanical and Microstructure Properties of Alkali-Activated Mortars

机译:玻璃二氧化硅废料纳米粉对碱活化砂浆力学和微观结构性能的影响

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摘要

The recycling of millions of tons of glass bottle waste produced each year is far from optimal. In the present work, ground blast furnace slag (GBFS) was substituted in fly ash-based alkali-activated mortars (AAMs) for the purpose of preparing glass bottle waste nano-powder (BGWNP). The AAMs mixed with BGWNP were subsequently subjected to assessment in terms of their energy consumption, economic viability, and mechanical and chemical qualities. Besides affording AAMs better mechanical qualities and making them more durable, waste recycling was also observed to diminish the emissions of carbon dioxide. A more than 6% decrease in carbon dioxide emissions, an over 16% increase in compressive strength, better durability and lower water absorption were demonstrated by AAM consisting of 5% BGWNP as a GBFS substitute. By contrast, lower strength was exhibited by AAM comprising 10% BGWNP. The conclusion reached was that the AAMs produced with BGWNP attenuated the effects of global warming and thus were environmentally advantageous. This could mean that glass waste, inadequate for reuse in glass manufacturing, could be given a second life rather than being disposed of in landfills, which is significant as concrete remains the most commonplace synthetic material throughout the world.
机译:每年产生的数百万吨玻璃瓶废物的回收利用远非最佳。在目前的工作中,为了制备玻璃瓶废料纳米粉(BGWNP),在粉煤灰基碱活化砂浆(AAM)中代替了高炉渣(GBFS)。随后将掺有BGWNP的AAM进行能耗,经济可行性以及机械和化学质量方面的评估。除了为AAM提供更好的机械质量并使其更耐用外,还观察到废物回收可减少二氧化碳的排放。由AAM组成的5%BGWNP作为GBFS替代品的AAM证明,二氧化碳排放量减少了6%以上,抗压强度增加了16%以上,吸水率降低了。相反,包含10%BGWNP的AAM表现出较低的强度。得出的结论是,用BGWNP生产的AAM减弱了全球变暖的影响,因此对环境有利。这可能意味着不适合在玻璃制造中再利用的玻璃废料可以被赋予第二次生命,而不是被丢弃在垃圾填埋场中,这很重要,因为混凝土仍然是全世界最常见的合成材料。

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