...
首页> 外文期刊>Environmental Science and Pollution Research >Enhanced removal performance of Cr(VI) by the core-shell zeolites/layered double hydroxides (LDHs) synthesized from different metal compounds in constructed rapid infiltration systems
【24h】

Enhanced removal performance of Cr(VI) by the core-shell zeolites/layered double hydroxides (LDHs) synthesized from different metal compounds in constructed rapid infiltration systems

机译:通过在构造的快速渗透系统中由不同金属化合物合成的核 - 壳沸石/层状双氢氧化物(LDH)增强Cr(VI)的去除性能

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Nine kinds of LDHs were synthesized by the co-precipitation method under alkaline conditions with different combinations of trivalent metal compounds (FeCl~(3), AlCl~(3), CoCl~(3)) and divalent metal compounds (CaCl~(2), MgCl~(2), ZnCl~(2)), which were then coated in situ on the surface of zeolites to synthesize core-shell zeolites/LDHs composites. The zeolites before and after modification were characterized by SEM and X-ray fluorescence spectrometry. Using the different core-shell zeolites/LDHs and original zeolite substrates, the constructed rapid infiltration systems (CRIS) simulated test columns were set to treat the municipal sewage containing hexavalent chromium, Cr(VI). Isothermal adsorption tests were subsequently performed. The average removal efficiencies of the small-sized zeolites were much higher than those of the large-sized zeolites. For the small-sized zeolites, the Cr(VI) removal performances of the Mg-LDHs- and Al-LDHs-modified zeolite substrates were efficiently enhanced in particular, which could reach over 90%. And the removal rate of core-shell zeolites/ZnAl-LDHs reached 94.5%. Meanwhile, the maximum adsorption capacity of ZnAl-LDHs-modified zeolites could reach 51.0?mg/kg, indicating that the adsorption properties could be enhanced by ZnAl-LDHs coating. During the purification experiments, most of the LDHs-modified zeolites maintained their predominant chemical adsorption ability for the removal of Cr(VI). Therefore, the small-sized core-shell zeolites/ZnAl-LDHs composites could be used as potential substrates for the efficient removal of Cr(VI) in CRIS.
机译:通过具有不同组合的三价金属化合物(FECL〜(3),AlCl〜(3),COCl〜(3))和二价金属化合物(CaCl〜(2)的碱性条件下合成了九种LDH。(CaCl〜(2 ),MgCl〜(2),ZnCl〜(2)),然后在沸石表面原位涂覆以合成核 - 壳沸石/ LDHS复合材料。通过SEM和X射线荧光光谱法表征了修饰前后的沸石。使用不同的核心 - 壳沸石/水滑石和沸石原底物,所述人工快速渗滤系统(CRIS)模拟测试柱设定为处理含有六价铬,铬(VI)的城市污水。随后进行等温吸附试验。小尺寸沸石的平均去除效率远高于大尺寸沸石的沸石。对于小尺寸的沸石,特别是Mg-LDH-和Al-LDH-改性的沸石基材的Cr(VI)去除性能特别地增强,其可达到90%以上。核 - 壳沸石/ ZNAL-LDH的去除率达到94.5%。同时,ZNAL-LDH改性沸石的最大吸附能力可以达到51.0×mg / kg,表明Znal -LDHS涂层可以增强吸附性能。在纯化实验期间,大多数LDH改性的沸石保持其优势化学吸附能力,用于去除Cr(VI)。因此,小尺寸的核 - 壳沸石/ ZNAL-LDHS复合材料可以用作潜在基板,以便在CRIS中有效地去除Cr(VI)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号