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基于血紫质的改性碳糊电极生物传感器的伏安法检测三价砷。

Voltammetric detection of As(III) with Porphyridium cruentum based modified carbon paste electrode biosensor.

机构信息

Food and Biotechnology Research Centre, PCSIR Laboratories Complex, Ferozepur Road Lahore 54600, Pakistan; Institute of Chemistry, University of the Punjab, Lahore 54590, Pakistan.

Food and Biotechnology Research Centre, PCSIR Laboratories Complex, Ferozepur Road Lahore 54600, Pakistan.

出版信息

Biosens Bioelectron. 2014 Dec 15;62:242-8. doi: 10.1016/j.bios.2014.06.055. Epub 2014 Jul 1.

Abstract

A novel biosensor based on carbon paste electrode modified with Porphyridium cruentum biomass was developed for the determination of As(III) in contaminated water. As(III) was first biosorbed-accumulated on the electrode surface at open circuit potential and then stripped off by applying anodic scan range of -0.8 to +0.8 V using differential pulse anodic stripping voltammetric technique. The best result was obtained at pH 6.0 with 0.1M HNO3 solution as stripping medium, allowing biosorption-accumulation time of 8 min using 5% P. cruentum biomass in graphite-mineral oil paste. Linear range for As(III) detection with the modified electrode-biosensor was observed between 2.5 and 20 µg L(-1). The FTIR spectrum of P. cruentum biomass confirmed the presence of active functional groups that participate in the binding of As(III). Scanning Electron Microscopy (SEM) indulged the surface morphology of modified electrode-biosensor before and after As(III) adsorption. Similarly, Atomic Force Microscopy (AFM) showed that the average roughness of the modified electrode decreased indicating the successful incorporation of P. cruentum biomass. Efficiency of the biosensor in the presence of different interfering metal (Na(+), K(+), Ca(2+), and Mg(2+)) ions were also evaluated. The application of P. cruentum modified biosensor was successfully used for the detection of As(III) in the binary metal (Fe(3+), Mn(2+), Cd(2+), Cu(2+), Ni(2+), Hg(2+), and Pb(2+)) contaminated system. The accuracy of application of biosorption based biosensor for the detection of As(III) is as low as 2.5 µg L(-1).

摘要

基于十字角藻生物质修饰的碳糊电极,研制了一种用于测定受污染水中砷(III)的新型生物传感器。在开路电位下,砷(III)首先在电极表面上被生物吸附-累积,然后通过施加-0.8 至+0.8 V 的阳极扫描范围,使用差分脉冲阳极溶出伏安法技术将其洗脱。在 pH 6.0 时,使用 0.1M HNO3 溶液作为洗脱介质,获得最佳结果,允许在石墨-矿物油糊中使用 5%的十字角藻生物质进行生物吸附-累积 8 分钟。用修饰后的电极-生物传感器检测砷(III)的线性范围为 2.5 至 20 µg L(-1)。十字角藻生物质的傅里叶变换红外光谱(FTIR)证实了存在参与结合砷(III)的活性官能团。扫描电子显微镜(SEM)显示了修饰电极-生物传感器在吸附砷(III)前后的表面形貌。同样,原子力显微镜(AFM)表明修饰电极的平均粗糙度降低,表明十字角藻生物质的成功结合。还评估了生物传感器在存在不同干扰金属(Na(+), K(+), Ca(2+), 和 Mg(2+))离子时的效率。成功地将十字角藻修饰的生物传感器应用于二元金属(Fe(3+), Mn(2+), Cd(2+), Cu(2+), Ni(2+), Hg(2+), 和 Pb(2+))污染系统中砷(III)的检测。基于生物吸附的生物传感器检测砷(III)的准确度低至 2.5 µg L(-1)。

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