Acknowledgement
Supported by : 교육부 기초과학연구소
The new chelating resins, XAD-2, 4, 16-TAC and XAD-2, 4, 16-TAO were synthesized by Amberlite XAD-2, XAD-4, and XAD-16 macroreticular resins with 2-(2-thiazolylazo)-p-cresol(TAC) and 4-(2-thiazolylazo)orcinol(TAO) as functional groups and were characterized by elemental analysis and FT-IR spectrometry. It was found that the content of functional group in chelating resin was 0.60mmol/g in XAD-16-TAC and 0.68mmol/g in XAD-16-TAO respectively. The chelating resins were stable in acidic and alkaline solution and can be reused over 10 times. The sorption behavior of some metalions to two chelating resins was investigated by batch method, which included batch equilibrium, effect of pH, coexisting ions and masking agent. For the optimum condition of sorption, the time required for equilibrium was about 1 hour and optimum pH was 5. In the presence of anions such as
미량 금속이온을 선택적으로 분리, 농축 및 회수하기 위해 물리적 특성이 서로 다른 XAD-2, 4 및 16 다공성 수지에 2-(2-thiazolylazo)-p-cresol(TAC) alc 4-(2-thiazolylazo)orcinol(TAO)을 화학적으로 결합시켜 킬레이트 수지를 합성하고 뱃치법으로 U(VI) 등 10개 금속이온들의 흡착 특성을 조사 비교하였다. 킬레이트 수지의 합성률은 XAD-16-TAC형 수지는 0.60 mmol/g이었고 XAD-16-TAO형은 0.68mmol/g으로서 수지의 표면적이 큰 XAD-16형 수지가 XAD-2, 4형 수지보다 높은 합성률을 나타내었다. XAD-16-TAC와 XAD-16-TAO 킬레이트 수지는 1~5M 의
Supported by : 교육부 기초과학연구소