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Simultaneous detection and removal of cobalt ions from aqueous solution by modified chitosan beads

机译:通过改性壳聚糖珠与水溶液同时检测和除去钴离子

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In this paper, we modified chitosan beads in order to simultaneously detect and adsorb Co2+ from aqueous solution. Firstly, 4-(5-chloro-2-pyridylazo)-1,3-phenylenediamine (5-Cl-PADAB) was used as selective probe for Co2+ with color changing from yellow to pink, and the UV-Vis spectra showed that the lambda(max) changed from 439 to 504 nm. Then a novel biomaterial was synthesized with 5-Cl-PADAB (metal indicator), chitosan (biosorbent) and EDTA anhydride (cross-linker and chelating agent). The analysis of Fourier transform infrared and energy-dispersive X-ray spectra proved that 5-Cl-PADAB and EDTA were successfully connected to chitosan. The modified chitosan bead was selective probe for Co2+ with a remarkable color change from white to pink, and the UV-Vis spectra showed that the lambda(max) changed from 441 to 459 nm. The adsorption of cobalt ions onto the modified chitosan beads followed pseudo-second-order (R (2) = 0.99) kinetics and the Langmuir isotherm model (R-2 = 0.80). Comparing with chitosan beads, the q(e) of the modified one increased from 2.00 to 7.97 mg/g. The modified chitosan beads are promising biomaterial for simultaneous detection and removal of Co2+ from aqueous solution.
机译:在本文中,我们改性壳聚糖珠子以同时检测和吸附来自水溶液的CO 2 +。首先,使用4-(5-氯-2-吡啶胺)-1,3-苯二胺(5-CL-PACAB)作为CO2 +的选择性探针,用黄色到粉红色的颜色变化,并且UV-Vis光谱显示Lambda(Max)从439变为504纳米。然后用5-Cl-padab(金属指示剂),壳聚糖(生物吸附)和EDTA酸酐(交联剂和螯合剂)合成一种新的生物材料。傅里叶变换红外和能量分散X射线光谱分析证明,5-Cl-PACAB和EDTA成功地连接到壳聚糖。改性的壳聚糖珠珠剂是CO2 +的选择性探针,从白色到粉红色的显着变化,UV-Vis光谱显示λ(最大)从441变为459nm。将钴离子的吸附在改性的壳聚糖珠旁跟随伪二阶(R(2)= 0.99)动力学和Langmuir等温模型(R-2 = 0.80)。与壳聚糖珠子相比,改性的Q(e)从2.00增加到7.97 mg / g。改性的壳聚糖珠子是有前途的生物材料,用于同时检测和除去来自水溶液的CO 2 +。

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