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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Synthesis of hierarchical nanoporous HY zeolites from activated kaolin, a central composite design optimization study
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Synthesis of hierarchical nanoporous HY zeolites from activated kaolin, a central composite design optimization study

机译:活性高岭土多级纳米多孔HY分子筛的合成,一个核心的复合材料设计优化研究

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In this article, we investigated the optimum formulation towards synthesis of hierarchical nanoporous HY zeolites from acid activate kaolin. A central composite design (CCD) helped to examine the influence of aging (X-1), crystallization (X-2) and NaOH solution to kaolin ratio (X-3) on crystallinity (C), specific surface area (SSA) and hierarchical factor (HF). From the analysis of variance (ANOVA), we deduced that all the process variables show statistical significance towards obtaining high C and SSA while only X3 is statistically significant for optimal HF. The effectiveness of models was further evaluated using margin of error and tolerance interval. The Optimum formulation for this hierarchical nanoporous HY zeolite was 43.60, 6423 and 6.97 for X-1, X-2, and X-3, respectively. The developed models show that X-3 is the most statistically significant variable because it has the highest coefficient and the lowest p-value in the entire model. These results give instrumental insight into the synthesis of hierarchical nonporous HY zeolite. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:本文研究了酸活化高岭土合成多级纳米多孔HY分子筛的最佳配方。中心复合材料设计(CCD)有助于研究老化(X-1)、结晶(X-2)和NaOH溶液与高岭土比(X-3)对结晶度(C%)、比表面积(SSA)和层次因子(HF)的影响。从方差分析(ANOVA)中,我们推断出所有过程变量对获得高C%和SSA都显示出统计学意义,而只有X3对最佳HF具有统计学意义。使用误差幅度和公差区间进一步评估模型的有效性。X-1、X-2和X-3的多级纳米多孔HY分子筛的最佳配方分别为43.60、6423和6.97。所开发的模型表明,X-3是统计学上最显著的变量,因为它在整个模型中具有最高的系数和最低的p值。这些结果为多级无孔HY分子筛的合成提供了工具性的见解。(C) 2017年日本粉末技术学会。由Elsevier B.V.和日本粉末技术协会出版。保留所有权利。

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