...
首页> 外文期刊>Revue roumaine de chimie >PREPARATION AND CARACTERISATION OF MONTMORILLONITE-Fe~(3+)(MMT-Fe(3+)) NANOCLAY MINERAL FOR CRYSTAL VIOLET (CV) REMOVAL FROM AQUEOUS SOLUTIONS
【24h】

PREPARATION AND CARACTERISATION OF MONTMORILLONITE-Fe~(3+)(MMT-Fe(3+)) NANOCLAY MINERAL FOR CRYSTAL VIOLET (CV) REMOVAL FROM AQUEOUS SOLUTIONS

机译:蒙脱石-FE〜(3 +)(MMT-FE(3+))纳米粘土矿物的制备和梳状乳液(CV)从水溶液中除去

获取原文
获取原文并翻译 | 示例

摘要

Montmorillonite-Fe~(3+) (MMT-Fe~(3+)) nanoclay mineral was successfully prepared using a ferric chloride precursor. The prepared sample was characterized using IR, XRD, BET and SEM-EDX. We have explored the highly efficient and environmentally benign MMT-Fe~(3+) for adsorption of Crystal Violet (CV) dye from aqueous solution under ambient conditions. The MMT-Fe~(3+) was interacted with CV dye solution at different pH, temperature and solid-to-liquid ratio. The concentration of CV dye removal was estimated from its optical density at λ_(max) = 590 nm using UV-Vis spectrophotometer. The CV dye removal was rapid at basic pH and increases with temperature ud to 40 °C. A comolete reduction (100%) was occurred in about 7 min at pH 7 and 10 while at pH 3 in about 10 min. The time taken for complete reduction at 0, 30 and 40 °C are 10, 7 and 5 min respectively. The removal followed by adsorption of dye molecules on the spent nanoclay mineral was evident from SEM/EDX analysis. More importantly, MMT-Fe~(3+) could be separated and retrieved easily after the reaction by centrifugation from the degraded CV dye solution. The experimental results of CV dye removal from MMT-Fe~(3+) follows the pseudo first order kinetics. This study reveals that MMT-Fe~(3+) has the potential to be used as reductant/adsorbant to remove cationic pollutants effectively and rapidly from drinking water and large scale of industrial wastewater.
机译:使用氯化铁前体成功制备Montmorillonite-Fe〜(3+)(MMT-Fe〜(3+))纳米粘土矿物。使用IR,XRD,BET和SEM-EDX表征制备的样品。我们已经探索了高效且环境良性的MMT-Fe〜(3+),用于在环境条件下从水溶液中吸附晶体紫(CV)染料。 MMT-Fe〜(3+)以不同的pH,温度和固 - 液比用CV染料溶液相互作用。使用UV-VIS分光光度计从其光学密度估计CV染料去除浓度估计λ_(MAX)= 590nm。 CV染料去除在碱性pH下快速,并随温度UD至40℃的增加。在pH7和10的约7分钟内发生旋转掺杂剂(100%),而在约10分钟的pH 3时发生在10小时。在0,30和40℃下完全减少所需的时间分别为10,7和5分钟。从SEM / EDX分析中明显明显去除纳米粘土矿物质上的染料分子的去除。更重要的是,通过从降解的CV染料溶液离心,可以在反应后分离和检出MMT-Fe〜(3+)。来自MMT-Fe〜(3+)的CV染料去除的实验结果跟随伪第一阶动力学。该研究表明,MMT-Fe〜(3+)具有用作还原剂/吸附剂的可能性,以便从饮用水和大规模的工业废水中有效且迅速去除阳离子污染物。

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