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A novel approach based on ferricyanide-mediator immobilized in an ion-exchangeable biosensing film for the determination of biochemical oxygen demand

机译:一种基于铁氰化物介质固定在离子交换生物传感膜中的新方法,用于测定生化需氧量

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摘要

A novel biochemical oxygen demand (BOD) sensing method employing a femcyanide (FC) mediator immobilized in an ion-exchangeable polysiloxane was developed. The ion-exchangeable polysiloxane containing alkylammonium groups (PAPS-Cl) was synthesized by sol-gel reaction of 3-(aminopropyl)trimethoxysilane (APTMOS) catalyzed by hydrochloric acid. FC was combined in PAPS-Cl via ion-association and the product was labeled as PAPS-FC, which was employed for a modified glassy carbon electrode. The apparent diffusion coefficient (D_(app) of FC on the modified glassy carbon electrode was 9.8 x 10~(-11) cm~2 s~(-1). In a three-electrode system, a linear relationship between the anodic current responses and glucose/glutamate (GGA) concentration was obtained up to 40mgO2 L~(-1) (r=0.994} when the reaction mixture was incubated for 30 min. Single sensor and piece-to-piece reproducibility were less than 3.8 and 7.7%, respectively. The effects of dissolved oxygen, pH, temperature and co-existing substances on the BOD responses were studied. The sensor responses to nine pure organic substances were compared with the conventional BOD5 method and other biosensor methods. Detection results of seawater samples were compared with those obtained from the BOD5 method and showed a good correlation (r=0.988).
机译:开发了一种新颖的生化需氧量(BOD)传感方法,该方法采用了固定在离子可交换聚硅氧烷中的二氧化氰(FC)介体。通过盐酸催化的3-(氨基丙基)三甲氧基硅烷(APTMOS)的溶胶-凝胶反应合成了含有烷基铵基的离子可交换的聚硅氧烷(PAPS-Cl)。通过离子缔合将FC结合在PAPS-Cl中,并将产物标记为PAPS-FC,将其用于修饰的玻碳电极。修饰玻碳电极上FC的表观扩散系数(D_(app)为9.8 x 10〜(-11)cm〜2 s〜(-1)。在三电极系统中,阳极电流之间的线性关系将反应混合物孵育30分钟后,响应值最高可达40mgO2 L〜(-1)(r = 0.994},葡萄糖/谷氨酸(GGA)浓度,单个传感器和部件之间的重复性分别小于3.8和7.7研究了溶解氧,pH,温度和共存物质对BOD响应的影响,并与传统的BOD5方法和其他生物传感器方法比较了对9种纯有机物的传感器响应。与从BOD5方法获得的结果进行比较,并显示出良好的相关性(r = 0.988)。

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