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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Induction plasma synthesis of nanometric spheroidized glass powder for use in cementitious materials
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Induction plasma synthesis of nanometric spheroidized glass powder for use in cementitious materials

机译:用于水泥材料的纳米球化玻璃粉末的感应等离子体合成

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摘要

Because of its high throughput, inductively-Coupled Plasma (1CP) torch can commercially provide an added value to waste glass (WG). It vaporizes WG into nanometric spheroidized glass powder (SGP) that could be used as a cementitious material. Changing the plasma gas (N2 vs O2), quench flow rate, pressure and WG feed rate induce variations on the particle size distribution and chemical composition. Using Field Emission Gun Scanning Electron Microscopy (FEGSEM), Brunauer, Emmet and Teller (BET) method, nano phase separation and Inductively-Coupled Plasma-Mass Spectrometry (1CP-MS), low quench gas, pressure and WG feed rate increase the nanometric content and specific surface of SGP. The use of O2 increases silica (SiO2) and decreases the sodium oxide (Na2O) content of SGP. The use of N2 rather demonstrates enrichment of SGP in Na2O in the cold reactor zones. This study shows that the nucleation theory of a crystalline material can be applied to an amorphous material.
机译:由于其高通量,感应耦合等离子体(1CP)焊炬可以在商业上为废玻璃(WG)提供附加值。它将WG蒸发成可以用作胶凝材料的纳米球形玻璃粉(SGP)。改变等离子气体(N2对O2),骤冷流速,压力和WG进料速率会引起粒度分布和化学成分的变化。使用场发射枪扫描电子显微镜(FEGSEM),Brunauer,Emmet和Teller(BET)方法,纳米相分离和电感耦合等离子体质谱法(1CP-MS),低淬火气体,压力和WG进料速率提高了纳米级SGP的含量和比表面。使用O2会增加二氧化硅(SiO2)并降低SGP的氧化钠(Na2O)含量。 N 2的使用反而证明了冷反应堆区域中Na 2 O中SGP的富集。这项研究表明,晶体材料的成核理论可以应用于非晶材料。

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