首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >On-line flow injection analysis using gold particle modified carbon electrode amperometric detection for real-time determination of glucose in immobilized enzyme hydrolysate of waste bamboo chopsticks
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On-line flow injection analysis using gold particle modified carbon electrode amperometric detection for real-time determination of glucose in immobilized enzyme hydrolysate of waste bamboo chopsticks

机译:使用金粒子修饰碳电极安培检测在线流动注射分析实时测定废竹筷子固定化酶水解物中的葡萄糖

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摘要

Dual on-line flow injection analysis (FIA) systems were coupled to an immobilized enzyme reactor. The primary system was detected by amperometric enzyme electrode through a specifically designed three-electrode flow cell and a stopped-flow sampling and injection device to perform the successive real-time determination of glucose in the enzyme hydrolysate of waste bamboo chopsticks fibers. The secondary system was established via high-performance liquid chromatography-refract ive index detection for com-parison purpose. The novel enzyme electrode was made by chemically bonding both the redox mediator ferrocenecarboxaldehyde and glucose oxidase to a gold-particles modified pencil lead carbon electrode that possessed the widest linear standard calibration concentration range of 0-39.0 mM (r~2 = 0.9956), a limit of detection of 7.8 μM, fast response time of 5 s, and a detection sensitivity of 2212 nA mM~(-1). The electrode was usable more than 50 days. The greatest amount of glucose produced from hydrolysis was 0.46 mM at 32 h. Interference from mannose and galactose was 7% and 5%, respectively, that was neglected by their small concentration in hydrolysate. The on-line FIA of amperometric enzyme electrode detection has good analytical precision (RSD 2.2-4.5%) and accuracy (94.4-97.7%) for the real-time glucose determination. The statistical analysis shows that no systematic error exists between the quantitative results of two FIA systems.
机译:双在线流动注射分析(FIA)系统与固定化酶反应器耦合。用安培酶电极通过专门设计的三电极流通池和停流采样和注射装置检测一次系统,以进行实时实时测定废竹筷子纤维酶水解物中的葡萄糖。为了进行比较,通过高效液相色谱-折光指数检测法建立了辅助系统。新型酶电极是通过将氧化还原介体二茂铁甲醛和葡萄糖氧化酶化学键合到金颗粒修饰的铅笔状铅碳电极上而得到的,该电极的线性标准校准浓度范围为0-39.0 mM(r〜2 = 0.9956),检测极限为7.8μM,快速响应时间为5 s,检测灵敏度为2212 nA mM〜(-1)。电极可以使用超过50天。水解产生的最大葡萄糖量在32 h为0.46 mM。甘露糖和半乳糖的干扰分别为7%和5%,这被它们在水解产物中的小浓度所忽略。安培酶电极在线FIA具有良好的分析精度(RSD 2.2-4.5%)和实时葡萄糖测定的准确性(94.4-97.7%)。统计分析表明,两个FIA系统的定量结果之间不存在系统误差。

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