...
首页> 外文期刊>Journal of Materials Science >Molecularly imprinted nanoparticles (nanoMIPs): an efficient new adsorbent for removal of arsenic from water
【24h】

Molecularly imprinted nanoparticles (nanoMIPs): an efficient new adsorbent for removal of arsenic from water

机译:分子印迹纳米颗粒(NanoMIPS):一种有效的新吸附剂,用于从水中除去砷

获取原文
获取原文并翻译 | 示例

摘要

Geogenic contamination of arsenic in the groundwater of the Indian subcontinent and other parts of the world has been reported. Many methods have been developed to remove arsenic species from water. The most promising technology is adsorption for its merits such as simple in operation, low cost, and considerably insignificant by-product formation. In this study, a new polymer-based nano-adsorbent for As(V) has been prepared using a synergistic approach of molecular imprinting and metal-organic ligand chemistry. The nano-adsorbent was formulated with cost-effective polymethacrylate imprinted with fluorescein and As(V) complex. After polymerization, As(V) in the polymer matrix was removed from the polymer to create cavities with a specific affinity for As(V). The imprinted polymer with nanopores (nanoMIP) has shown high adsorption capacity, i.e., 49 +/- 7 mg L-1; and the adsorption phenomena were studied by using theoretical Langmuir and Freundlich isotherms. The adsorption kinetics data were well fitted with the pseudo-second-order rate equation. The analyte As(V) was effectively adsorbed onto nanoMIP from real environmental samples. Infrared spectra of nanoMIP have shown that electrostatic interaction between surface functionalities (such as, -COOH and -C=O) of nanoMIP with As(V) would be responsible for high adsorption capacity of As(V). The mode of binding of As(V) onto the nanoMIP was further justified by molecular modeling. About 98% of adsorbed As(V) was removed from nanoMIP by washing with 0.1 M HNO3 solution, and the regenerated nanoMIP showed re-adsorption for ten cycles. The leachate of spent nanoMIP contains as low as 0.9 mu g L-1 of As(V), which is lower compared with commercially used iron and aluminum oxide-based adsorbents.
机译:据报道,印度次大陆地下水和世界其他地区的地下水造成砷的造环污染。已经开发出许多方法以从水中除去砷物种。最有前途的技术是吸附的,以其操作性,低成本,副产品的显着微不足道。在该研究中,使用分子印迹和金属 - 有机配体化学的协同方法制备了一种新的基于聚合物基纳米吸附剂。用与荧光素和(V)复合物印记的经济高效的聚甲基丙烯酸酯配制纳米吸附剂。聚合后,从聚合物中除去聚合物基质中的(v),以产生具有特定亲和力的空腔,例如(v)。具有纳米孔(NanoMIP)的印迹聚合物显示出高吸附能力,即49 +/- 7mg L-1;通过使用理论朗米尔和Freundlich等温线研究了吸附现象。吸附动力学数据充分配合伪二阶速率方程。分析物作为(v)从真实环境样品有效地吸附在NanoMip上。 NanoMIP的红外光谱表明,具有(V)的纳米普以(v)的纳米芯片之间的表面官能团(例如-COOH和-C = O)的静电相互作用将负责高吸附能力为(v)。通过分子建模的分子建模,如(v)上的结合模式进一步证明。通过用0.1M HNO 3溶液洗涤,从纳米芯片中除去约98%的吸附剂(V),再生的纳米液显示再吸附10个循环。花纳米液的渗滤液含有低至0.9μg1-1的含量为(v),与商业用钢和基于氧化铝的吸附剂相比,其较低。

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