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건식제련용 동 함유 슬러지 펠렛 제조 및 물리적 특성평가
김수윤,김영진,김승현,이재령,Kim, Suyun,Kim, Youngjin,Kim, Seunghyun,Lee, Jaeryeong 한국자원리싸이클링학회 2019 資源 리싸이클링 Vol.28 No.2
The pelletizing of printed circuit board (PCB) sludge was researched for copper recovery in pyrometallurgical process. This pelletizing was carried out by using self-manufactured compression-type apparatus after pre-treatments (drying, water scrubbing, size classification) were proceeded. The physical properties (compression strength and drop-breakage test) were tested with a change of sludge sizing and the number of compression. In the case of using the undersized sludge of #140, its properties were improved to 0.6 MPa and 9.3 times. Moreover, they increased to 0.82 MPa and 19.0 times by using the #140 ~ 325 sludge. These imply that the packing density increases due to the elimination of large-sized sludge (#140), and also the weight of required binder decreases by the removal of fine-sized sludge (#325).
자기조립단층과 농축 기술을 이용한 저농도 내분비계 장애물질 검출용 미소유체채널 기반 전기화학 센서
김수윤(Suyun Kim),한지훈(Ji-Hoon Han),박정호(James Jungho Pak) 대한전기학회 2016 전기학회논문지 Vol.65 No.4
This paper demonstrates a microfluidic electrochemical sensor for detecting endocrine disruptor such as estradiol at a very low concentration by using preconcentration technique. In addition, self-assembled monolayer(SAM) was also employed on the working electrode of the electrochemical sensor in order to increase the estradiol capture efficiency of the sensor. SAM treatment on the working electrode enhanced the specific binding between the surface of the working electrode and the estradiol antibody. The estradiol antibody was applied on the working electrode at different concentrations(10, 20, 50, 100, 200 pg/ml) for observing the concentration dependency. The measured electrochemical redox current changed with the amount of the bound estradiol on the Au working electrode surface and the sensor can detect all the target material when the immobilized antibody amount is more than the estradiol amount in the water. The elecrochemical estradiol sensor without SAM treatment showed a low current of 7.79 nA, while the sensor treated with SAM resulted in 339 nA at 200 pg/ml, which is more than 40 fold higher output current. When combining the preconcentration technique and the SAM-treated electrode, the measured current became more than 100 fold higher than that of the sensor without neither SAM treatment nor preconcentration technique. The combination of these two techniques can would enable the proposed microfluidic electrochemical sensor to detect a very low concentration endocrine disruptor.
고강도 혼합분쇄 처리에 의한 인운모로부터 리튬의 수 침출 특성
김병진,김수윤,이재령,Kim, Byoungjin,Kim, Suyun,Lee, Jaeryeong 한국자원리싸이클링학회 2017 資源 리싸이클링 Vol.26 No.3
중액선별(HMS, heavy medium separation)을 통해 회수된 인운모(lepidolite) 정광(Li: 2.3%)으로부터 리튬을 수 침출하기 위해 황산칼슘 반수화염(CSH, calcium sulfate hemihydrate, $CaSO_4{\cdot}1/2H_2O$)과 혼합분쇄하여 기계화학적 효과를 연구하였다. 인운모를 CSH와 함께 고강도 분쇄한 결과, 리튬의 침출율이 4.48%에서 93.5%로 급격히 증가하였다. 이는 고강도 혼합분쇄 과정 중 발생되는 기계화학적 효과로 인해 결정구조가 파괴되면서 인운모와 CSH의 혼합물이 새로운 화합물로 형성되어 나타난 결과로 판단된다. 결과적으로 인운모로부터 상온에서 리튬의 수 침출이 가능함을 확인하였다. The concentrate of lepidolite, being treated by heavy medium separation (HMS), was ground with calcium sulphate hemihydrate (CSH, $CaSO_4{\cdot}1/2H_2O$) to investigate the mechanochemical effect for the Li leachability in water. This leachability increased, dramatically through the intensive grinding for the mixture, concentrate and CSH. The leachability of Li was improved from 4.48% to 93.5%. The grinding of the mixture destructed the crystal structure of the concentrate, and it might be formed to new compounds. As the result, Li in the concentrate can be extracted by water leaching at room temperature.
알칼리 용융 및 수 침출을 이용한 탄화텅스텐으로부터 텅스텐 회수
김병진,김수윤,이재령,Kim, Byoungjin,Kim, Suyun,Lee, Jaeryeong 한국자원리싸이클링학회 2017 資源 리싸이클링 Vol.26 No.6
Tungsten (W) recovery from tungsten carbide (WC) was researched by alkali melt followed by water leaching. The experiments of alkali melt were carried out with the change of the sort of alkali material, heating temperature, and the heating duration. Water leaching of W was performed in the fixed conditions ($25^{\circ}C$, 2 hr., slurry density: 10 g/L). From the mixture of WC and sodium nitrate ($NaNO_3$) in the molar ratio of 1:2, treated at $400^{\circ}C$ for 6 hours, only 63.3% of W might be leached by water leaching. With the increase of sodium hydroxide (NaOH) as a melting additive, the leachability increased. Finally it reached to 97.8 % with the melted mixture of ($WC:NaNO_3:NaOH$) in the ratio of (1:2:2). This imply that NaOH may play a role as a reaction catalyst by lowering Gibb's free energy for alkali melt reaction for WC. 알칼리 용융법과 수 침출을 이용하여 탄화텅스텐(WC)으로부터 텅스텐(W) 회수에 관한 연구를 실시하였다. 알칼리 용융 처리는 알칼리염의 종류, 용융온도 및 용융시간을 변화시키면서 실시하였으며, 수 침출은 $25^{\circ}C$, 2시간 및 슬러리 농도 10 g/L로 고정하여 실시하였다. 알칼리염으로 질산나트륨($NaNO_3$)만 단독으로 사용한 경우, W의 수 침출율은 63.3%이었지만, 용융 첨가제인 수산화나트륨(NaOH) 혼합량이 증가할수록 침출율은 증가하였으며, 몰비 $WC:NaNO_3:NaOH=1:2:2$로 혼합한 용융물에서는 97.8%까지 증가하였다. NaOH는 용융 반응의 반응열 증가로 인한 반응 촉진제 역할을 한 것으로 판단된다.
알칼리화합물과 텅스텐/바나듐산화물의 기계화학반응을 이용한 수 침출 연구
김병진,김수윤,이재령,Kim, Byoungjin,Kim, Suyun,Lee, Jaeryeong 한국자원리싸이클링학회 2018 資源 리싸이클링 Vol.27 No.4
Water leaching of tungsten(W) and vanadium(V) was researched from their oxides through mechanochemical (MC) reaction with alkali compounds. Intensive grinding for the mixture of tungsten/vanadium oxide and alkali compounds (NaOH, $Na2CO_3$) was carried out with change of their mixing ratios and grinding duration. Water soluble compounds, $Na_2WO_4$ and $NaVO_3$, were synthesized through MC reaction and their solubilities increased in proportion to the mixing ratio of sodium compound and grinding times. Whereas vanadium leachability was less affected by the mixting ratio and grinding times. The leachabilities of 99.0% were accomplished by a short period of MC treatment, W (30 min.) and V (5 min.). This process enable us to extract W and V from their oxides via a water leaching, and can be applied to the selective recovery of W and V from $DeNO_x$ spent catalysts.
네모파 전압전류법 측정을 위한 블루투스 기반 휴대형 포텐쇼스탯
심원식(Wonsik Shim),한지훈(Ji-Hoon Han),김수윤(Suyun Kim),권현정(Hyun Jeong Kwon),박정호(Jungho Pak) 대한전기학회 2016 전기학회논문지 Vol.65 No.4
This paper describes the development of a portable potentiostat which can perform square wave voltammetry on electrochemical sensors and wireless transmission of the measured data to a smartphone using Bluetooth. The potentiostat consists of a square wave potential pulse generation circuit for applying the potential pulse to the electrochemical sensor, a reduction/oxidation (or redox) current measurement circuit, and Bluetooth for wireless data transmission to an Android-based smartphone. The measured data are then processed to show the output graph on the smart phone screen in real time. This data transformation into a graph is carried out by developing and installing a simple transformation application software in the Android-based smartphone. This application software also enables the user to set and change the measurement parameters such as the applied voltage range and measured current range at user’s convenience. The square voltammetry output data measured with the developed portable potentiostat were almost same as the data of the commercial potentiostat. The measured oxidation peak current with the commercial potentiostat was 11.35 μA at 0.26 V and the measured oxidation peak current with the developed system was 12.38 μA at 0.25 V. This proves that performance of the developed portable measurement system is comparable to the commercial one.