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Synthesis of Hydroxy-Sodalite/Cancrinite Zeolites from Calcite-Bearing Kaolin for the Removal of Heavy Metal Ions in Aqueous Media

机译:从方解石高岭土中合成羟基 - 钠/甲基岩沸石,用于水溶液中重金属离子的去除

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摘要

A hydroxy-sodalite/cancrinite zeolite composite was synthesized from low-grade calcite-bearing kaolin by hydrothermal alkali-activation method at 160 °C for 6 h. The effect of calcite addition on the formation of the hydroxy-sodalite/cancrinite composite was investigated using artificial mixtures. The chemical composition and crystal morphology of the synthesized zeolite composite were characterized by X-ray powder diffraction, infrared spectroscopy, scanning electron microscopy, and N2 adsorption/desorption analyses. The average specific surface area is around 17−20 m2·g−1, whereas the average pore size lies in the mesoporous range (19−21 nm). The synthesized zeolite composite was used as an adsorbent for the removal of heavy metals in aqueous solutions. Batch experiments were employed to study the influence of adsorbent dosage on heavy metal removal efficiency. Results demonstrate the effective removal of significant quantities of Cu, Pb, Ni, and Zn from aqueous media. A comparative study of synthesized hydroxy-sodalite and hydroxy-sodalite/cancrinite composites revealed the latter was 16−24% more efficient at removing heavy metals from water. The order of metal uptake efficiency for these zeolites was determined to be Pb > Cu > Zn > Ni. These results indicate that zeolite composites synthesized from natural calcite-bearing kaolin materials could represent effective and low-cost adsorbents for heavy metal removal using water treatment devices in regions of water shortage.
机译:通过在160℃下在160℃下通过水热碱活化法合成羟基 - 钠钠/径晶岩沸石复合材料6小时。使用人造混合物研究了方解石添加对羟基 - 钠/凹岩复合物的形成的影响。合成的沸石复合材料的化学成分和晶体形态通过X射线粉末衍射,红外光谱,扫描电子显微镜和N2吸附/解吸分析表征。平均比表面积约为17-20m 2·G-1,而平均孔径位于中孔范围(19-21nm)。合成的沸石复合物用作吸附剂,用于在水溶液中除去重金属。采用分批实验研究吸附剂剂量对重金属去除效率的影响。结果证明了从含水介质中有效地去除大量Cu,Pb,Ni和Zn。合成的羟基 - 钠钠和羟基钠/甲状腺石复合材料的比较研究显示,后者在从水中除去重金属的高效效率为16-24%。将这些沸石的金属摄取效率顺序测定为Pb> Cu> Zn> Ni。这些结果表明,由天然方解石高岭土材料合成的沸石复合材料可以代表利用水资源短缺区域中使用水处理装置的重金属去除的有效和低成本的吸附剂。

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