广州化工
廣州化工
엄주화공
GUANGZHOU CHEMICAL INDUSTRY AND TECHNOLOGY
2015年
1期
70-72
,共3页
电化学%振荡%正负反馈
電化學%振盪%正負反饋
전화학%진탕%정부반궤
electrochemistry%oscillation%positive and negative feedbacks
采用旋转圆盘电极研究了硫化钠电化学氧化动力学行为,并通过同步摄像装置监测了电极表面的硫沉积斑图。研究发现,旋转电极能削弱电极表面活性物种的浓度梯度,弱化N-NDR振荡的负反馈,从而使得N-NDR振荡转变为稳态;然而电极表面沉积硫增多,抑制硫离子的电化学氧化,增强了吸附负反馈,有利于HN-NDR振荡的产生。
採用鏇轉圓盤電極研究瞭硫化鈉電化學氧化動力學行為,併通過同步攝像裝置鑑測瞭電極錶麵的硫沉積斑圖。研究髮現,鏇轉電極能削弱電極錶麵活性物種的濃度梯度,弱化N-NDR振盪的負反饋,從而使得N-NDR振盪轉變為穩態;然而電極錶麵沉積硫增多,抑製硫離子的電化學氧化,增彊瞭吸附負反饋,有利于HN-NDR振盪的產生。
채용선전원반전겁연구료류화납전화학양화동역학행위,병통과동보섭상장치감측료전겁표면적류침적반도。연구발현,선전전겁능삭약전겁표면활성물충적농도제도,약화N-NDR진탕적부반궤,종이사득N-NDR진탕전변위은태;연이전겁표면침적류증다,억제류리자적전화학양화,증강료흡부부반궤,유리우HN-NDR진탕적산생。
The dynamical behavior of electrochemical oxidation of sodium sulfide was investigated by using rotating disk electrode. Pattern formation of sulfur deposition on the disk was simultaneously monitored with a camera device. The results indicated that the active species concentration gradient at the surface of electrode was weakened as the disk rotating as well as the negative feedback for the N-NDR oscillations, which as a result made the N-NDR oscillations into the steady state. However, with the disk rotating the sulfur depositing on the electrode surface increased, as a result the electrochemicaloxidation of sulfide was suppressed and the adsorption negative feedback was enhanced, which consequently was beneficial to the HN-NDR oscillations.