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Improvement of Kaolin Based Geopolymer Coated Wood Substrates for Use in NaOH Molarity

机译:高岭土岩土聚合物涂层木材用途改善NaOH摩尔

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Geopolymer system which has high demand, especially among carbon conscious end users resulted in various research works on suitable mix designs of geopolymeric materials. There are certain factors that influence the properties of geopolymers such as composition, type and relative amount of alkali activator, NaOH concentration, specific surface composition of source materials, and condition during the initial period of the geopolymerization process. Focus of our work is on the degree of influence NaOH concentration has towards mechanical and bonding properties of kaolin geopolymer coated lumber wood. Other crucial parameters were kept constant at optimum that was deduced based on our earlier findings. The final idea is to create kaolin based coating material that is compatible with wood substrates which leads to a novel finding. To best of our knowledge, no researchers had attempted to do similar work before. Kaolin geopolymer coated lumber wood was prepared with varying NaOH concentration ranging from 2M to 14M. These prepared samples were tested after 7, 28 and 90 days to also analyse the changes in properties of kaolin geopolymer coated lumber wood over time. Samples were then subjected to mechanical and bonding testings such as flexural, adhesive, and water absorption as well. Morphological studies such as scanning electron microscopy were also performed to further evident findings from all testings.
机译:高需求的地质聚合物系统,特别是在碳意识最终用户之间导致各种研究适用于地区聚合物材料的融合设计。存在一些因素,这些因素影响了地质活化剂,NaOH浓度,源材料的源材料的特异性表面组成的组成,类型和相对量,以及在地质聚合物化过程的初始时期的情况下的组成,类型和相对量。我们的作品的重点是影响NaOH浓度朝向高岭土地质聚合物涂层木材木材的机械和粘合性能。基于我们之前的结果推导出的最佳情况下,其他至关重要的其他关键参数保持不变。最后的思想是创造与木材基材兼容的高岭土的涂料,这导致了一种新的发现。据我们所知,没有研究人员以前试图做类似的工作。制备高岭土地质聚合物涂层木材,具有不同的NaOH浓度范围为2m至14米。在7,28和90天后测试这些制备的样品,以分析高潮地质聚合物涂覆的木材木材的性能变化随时间的变化。然后对样品进行机械和粘合测试,例如弯曲,粘合剂和吸水性。还对扫描电子显微镜等的形态学研究也进行了所有测试的进一步明显的发现。

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