渔业科学进展
漁業科學進展
어업과학진전
Progress In Fishery Sciences
2015年
5期
151-157
,共7页
张旭志%刘文文%丁东生%郭萌萌%赵俊%曲克明
張旭誌%劉文文%丁東生%郭萌萌%趙俊%麯剋明
장욱지%류문문%정동생%곽맹맹%조준%곡극명
强力霉素%伏安行为%表面活性剂%电分析%渔业环境监测
彊力黴素%伏安行為%錶麵活性劑%電分析%漁業環境鑑測
강력매소%복안행위%표면활성제%전분석%어업배경감측
Doxycycline%Voltammetric behavior%Surfactant%Electroanalysis%Fishery environmental monitoring
研究了表面活性效应对强力霉素(DOC)伏安行为的影响及表面活性剂存在下该分子的伏安检测方法。以B-R缓冲溶液(pH=2.0)为支持电解质,2.0×10?4 mol/L十二烷基苯磺酸钠(SDBS)的存在将明显有助于DOC的富集。在该实验条件下,DOC在导电碳黑糊电极上发生1质子、2电子转移的不可逆氧化,过程受扩散控制。对表面活性剂种类及其浓度、缓冲液种类及pH值、富集电位及时间等影响伏安分析的因素进行了研究。优化条件下, DOC 的氧化峰电流与其浓度在1.0×10?7?2.3×10?5 mol/L范围内呈良好的线性关系,检测限为4.5×10?8 mol/L(S/N=3)。将该电化学方法应用于淡水渔业水样中痕量 DOC 的检测,得到了较满意的结果(平均回收率为97.44%?105.28%)。
研究瞭錶麵活性效應對彊力黴素(DOC)伏安行為的影響及錶麵活性劑存在下該分子的伏安檢測方法。以B-R緩遲溶液(pH=2.0)為支持電解質,2.0×10?4 mol/L十二烷基苯磺痠鈉(SDBS)的存在將明顯有助于DOC的富集。在該實驗條件下,DOC在導電碳黑糊電極上髮生1質子、2電子轉移的不可逆氧化,過程受擴散控製。對錶麵活性劑種類及其濃度、緩遲液種類及pH值、富集電位及時間等影響伏安分析的因素進行瞭研究。優化條件下, DOC 的氧化峰電流與其濃度在1.0×10?7?2.3×10?5 mol/L範圍內呈良好的線性關繫,檢測限為4.5×10?8 mol/L(S/N=3)。將該電化學方法應用于淡水漁業水樣中痕量 DOC 的檢測,得到瞭較滿意的結果(平均迴收率為97.44%?105.28%)。
연구료표면활성효응대강력매소(DOC)복안행위적영향급표면활성제존재하해분자적복안검측방법。이B-R완충용액(pH=2.0)위지지전해질,2.0×10?4 mol/L십이완기분광산납(SDBS)적존재장명현유조우DOC적부집。재해실험조건하,DOC재도전탄흑호전겁상발생1질자、2전자전이적불가역양화,과정수확산공제。대표면활성제충류급기농도、완충액충류급pH치、부집전위급시간등영향복안분석적인소진행료연구。우화조건하, DOC 적양화봉전류여기농도재1.0×10?7?2.3×10?5 mol/L범위내정량호적선성관계,검측한위4.5×10?8 mol/L(S/N=3)。장해전화학방법응용우담수어업수양중흔량 DOC 적검측,득도료교만의적결과(평균회수솔위97.44%?105.28%)。
The effects of surfactant on the voltammetric behavior of doxycycline (DOC) were investigated using conductive carbon black paste electrode (CCBPE) as working electrode. A new electrochemical method for determining DOC in aqueous solution was developed with the help of surfactant. The electrostatic interaction between the DOC molecules and the sodium dodecyl benzene sulfonate (SDBS) by self-assembled on the surface of CCBPE promoted the accumulation of the analyte. In B-R buffer solution of pH 2.0, the presence of 2.0×10–4 mol/L SDBS significantly improved the sensitivity of detection of DOC. In the presence of SDBS, the voltammetric behavior of DOC was investigated by cyclic voltammetry. An irreversible and adsorption-controlled electrode reaction occurs with 1 proton and 2 electrons participation. Under the optimum conditions, the anodic peak current of DOC is proportional to its concentration in the range of 1.0×10–7?2.3×10–5 mol/L with a detection limit of 4.5×10–8 mol/L (S/N=3). Inorganic ions do not have negative effects on the determination, while organic molecules have positive effects probably due to the competitive adsorption function. The average recoveries in the range of 97.44%?105.28% were obtained. Thus, the developed method for the determination of DOC possesses advantages such as simple operation, fast response, low detection limitation, good recovery, and repeatability.