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The Role of Modification SBA-15 Mesoporous Silica with CPTMS in Cd Adsorptions

机译:改性SBA-15中孔二氧化硅与CPS型中的CPTM中的作用

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Mesoporous silica SBA-15 was synthesized using Pluronic 123 triblock copolymers as surfactant and functionalized with CPTMS to modify its surface. The synthesis of SBA-15 was prepared at optimized concentration of Pluronic 123 surfactant at 60 mM and showed surface area of 831.996 m~2/g determined by BET N2 adsorption isotherm test at 77 K. The functionalized product, CPTMS-SBA-15 on the other hand has lower surface area at 711.061 m~2/g. This very high surface of CPTMS-SBA-15 and pure SBA-15 were used as adsorbent of Cd from industrial waste water using laboratory water samples. CPTMS-SBA-15 showed lower surface and pore size in comparison with pure SBA-15 but the effectiveness in adsorption of Cd was found higher than pure SBA-15. In this study, we compared the percentage of Cd removal using CPTMS-SBA-15 and pure SBA-15 systems. The materials were characterized by XRD, the presence of organic group was demonstrated by FTIR, and the ions concentration in solution after adsorption process was determined by AAS.
机译:使用Pluronic 123三嵌段共聚物作为表面活性剂合成介孔二氧化硅SBA-15,用CPTM官能化以改变其表面。在60mM的Pluronic 123表面活性剂的优化浓度下制备SBA-15的合成,并在77K下通过BET N 2吸附等温试验显示831.996m〜2 / g的表面积。官能化产品,CPTMS-SBA-15另一方面,在711.061m〜2 / g的表面积下具有下表面积。使用实验水样的工业废水中,CPTM-SBA-15和纯SBA-15的这种非常高的表面用作CD的吸附剂。与纯SBA-15相比,CPTMS-SBA-15显示较低的表面和孔径,但发现CD吸附的有效性高于纯SBA-15。在这项研究中,我们使用CPTMS-SBA-15和纯SBA-15系统进行了比较CD去除百分比。通过XRD表征材料,通过FTIR证明了有机基团的存在,通过AAS测定吸附过程后溶液中的离子浓度。

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