Department of Chemistry, Himachal Pradesh University , Summer Hill, Shimla, Himachal Pradesh 171005, India.
ACS Appl Mater Interfaces. 2014 Apr 23;6(8):5908-17. doi: 10.1021/am500820n. Epub 2014 Apr 8.
Mercury is a highly toxic environmental pollutant; thus, there is an urgent need to develop new materials for its simultaneous detection and removal from water. In the present study, new oxidized cellulose-based materials, including their Schiff bases, were synthesized and investigated as a sensor-adsorbent for simple, rapid, highly selective, and simultaneous detection and removal of mercury [Hg(II)] ions. Cellulose was extracted from the pine needles, etherified, oxidized, and modified to Schiff base by reaction with l-lysine. The well-characterized cellulose Schiff base materials were used as a sensor-adsorbent for Hg(II) from aqueous solution. Hg(II) sensing was analysed with naked-eye detection and fluorescence spectroscopy. Schiff base having a decyl chain, C10-O-cell-HC═N-Lys, was observed to be an efficient adsorbent with a very high maximum adsorption capacity of 258.75 mg g(-1). The data were analyzed on the basis of various kinetic and isotherm models, and pseudo-second-order kinetics and Langmuir isotherm were followed for Hg(II) adsorption.
汞是一种高毒性的环境污染物;因此,迫切需要开发新材料来同时检测和去除水中的汞。本研究合成了新型氧化纤维素基材料,包括它们的席夫碱,作为传感器-吸附剂,用于简单、快速、高选择性和同时检测和去除汞[Hg(II)]离子。纤维素从松针中提取,经醚化、氧化和与赖氨酸反应修饰成席夫碱。将表征良好的纤维素席夫碱材料用作从水溶液中检测 Hg(II)的传感器-吸附剂。通过肉眼检测和荧光光谱分析进行 Hg(II)传感。具有癸基链的席夫碱 C10-O-cell-HC═N-Lys 被观察到是一种高效的吸附剂,具有非常高的最大吸附容量 258.75mg g(-1)。根据各种动力学和等温线模型对数据进行了分析,Hg(II)吸附遵循伪二级动力学和朗缪尔等温线。