G'/> Synthesis of alpha-cordierite nanoparticles from bentonite using thermal shock assisted solid-state reaction method
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Synthesis of alpha-cordierite nanoparticles from bentonite using thermal shock assisted solid-state reaction method

机译:&α和 - 来自膨润土的-Cordierite纳米粒子使用热冲击辅助固态反应方法

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Graphical abstractDisplay OmittedHighlights?-cordierite nanopowders synthesized using natural raw mineral materials.?A combination of solid state reaction and thermal shock process method used.?A high degree of -cordierite phase purity was produced.?The method can be used for cheap and mass production of α-cordierite.AbstractFor the first time, we believe, nanosized -cordierite glass-ceramics are produced using bentonite, talc, alumina, and kaolin as the raw materials and applying thermal shock to the precursor powders and sintered at 1100, 1200, and 1300?°C. A combination of a furnace at about 800?°C and liquid nitrogen was used for the applied thermal shock with a total temperature difference of about 1000?°C. The effects of thermal shock process and sintering temperature on -cordierite formation and microstructure have been investigated. The results show that -cordierite was formed above 1160?°C and its weight ratio increased continuously as sintered temperature increased to 1300?°C. By increasing the temperature, -cordierite nanoparticles grain sizes and the intensity of FTIR peaks started to increase. Applying thermal shock to precursor powders reduced the grain size of each consisting mineral and resulted in nanosized -cordierite powder.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> -cordierite纳米芯片使用天然原料矿物质合成。 固态反应和热冲击过程的组合使用方法。 产生高度 -cordierite相纯度。 该方法可用于廉价和大规模生产α-堇青石。 抽象 首次,我们认为,纳米型 -cordierite玻璃陶瓷使用膨润土,滑石,氧化铝和高岭土作为原料生产,并将热冲击施加到前体粉末,并在1100,1200烧结,和1300?°C。约800℃和液氮的炉子的组合用于施加的热冲击,其总温度约为1000Ω·℃。研究了热冲击工艺和烧结温度对<α-Cordierite形成和微观结构的影响。结果表明,在1160℃的1160℃上形成<α> -Cordierite,其重量比连续增加,因为烧结温度增加到1300℃。通过增加温度,<α> -cordierite纳米颗粒粒度和FTIR峰的强度开始增加。将热冲击施加到前体粉末减少了各种组成矿物的晶粒尺寸,并导致纳米型<α> - Cordierite粉末。 ]]>

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