Diagnosis with an ex-vivo gold sensor was done using a modified fluorine-doping sensor, and cyclic voltammetry (CV) redox potentials of 0.4 V anodic and -0.2 V cathodic were obtained. Both peak currents were optimized using square-wave (SW) stripping voltammetry, and an analytical working range of 10-80 ug/L SW was attained. The precision of the 10-mg/L Au was 0.765 (n=8) RSD under the optimum conditions, and the analytical detection limit approached 0.006 ug/L (S/N=3) with only a 60 sec accumulation time. The developed method was used to examine the mouse droppings for medicinal diagnosis.
Threelectrodes systems were used in stripping voltammetry (SW) and cyclic voltammetry (CV) instead of the expensive platinum and Ag/AgCl reference electrodes. Moreover, the electrolyte solution was used with deep seawater, which can reduce water pollution, is more eco-friendly, and has a lower cost. The analytical optimum parameters measured via CV and SW and with working ranges were obtained from 10 to 80 ug/L using fluorine immobilized on a graphite pencil electrode (FE). Under the optimum conditions, the analytical detection limit of 6.30 ug/LAu was obtained. The results of the study can be applied to diagnostic assay for natural minerals and human finger tissue.
본 연구 목적은 비-가시성 금 형태로 산출되는 황화광물 정광을 마이크로웨이브-질산용출하여 황화광물을 효과적으로 용해시키고자 하였고, 고체-잔류물을 납-시금법을 적용하여 금을 회수하고자 하였다. 따라서 질산농도, 용출시간 그리고 시료 첨가량 효과에 대하여 마이크로웨이브-용출실험을 각각 수행하였다. 고체-잔류물의 무게 감소율은 질산농도가 증가할수록 그리고 용출시간이 증가할수록 증가 하였지만 시료 첨가량이 증가하면 무게 감소율이 감소하였다. 마이크로웨이브-질산용출을 수행한 결과 질산농도 6 M에서, 마이크로웨이브 용출시간 18분에서 황철석이 완전히 사라진 것을 XRD 분석에서 확인하였다. 고체-잔류물에 대하여 납-시금법을 수행한 결과, 질산농도가 증가할수록 그리고 용출시간이 증가할수록 함량이 증가된 금 입자들을 회수하였다. 반면에 시료 첨가량이 증가할수록 금 함량이 감소하는 입자들을 회수하였다.