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Comparative study for the impedimetric detection and quantification of adulterants in different bio-consumables

机译:不同生物耗材中掺假物的阻抗测定和定量比较研究

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Electrical Impedance Spectroscopy (EIS) technique is found to be an excellent candidate for bio-sensing and food quality monitoring applications due to its rapid, robust, cost-effective and point-of-care approach. The present research work investigates the implementation of EIS technique supported by several optical spectroscopic techniques such as Ultraviolet-Visible (UV-Vis) and Fourier Transform Mid Infrared (FT-MIR) to detect and quantify several toxic adulterants in foods and bio-consumables. In the current work, the technique is applied to adulterated saccharides, honey, turmeric and milk samples. EIS study exhibited a steady variation of the electrical impedance with increasing adulterant percentage in the solution. Variation of such properties due to adulteration provides a systematic sensor plot through which one can determine their percentage of adulteration in unknown adulterated samples. Alternatively, extensive justification of UV-Vis and FT-MIR results have been enclosed in this study and has been corroborated with the EIS results, wherever applicable. Focus has been given on the process of design and fabrication of bio-sensor devices for detection and quantification of a variety of adulterants in milk samples.
机译:电阻抗谱(EIS)技术因其快速,强大,经济高效且即时的方法而成为生物传感和食品质量监测应用的极佳候选者。本研究工作调查了EIS技术的实施,该技术由几种光学光谱技术(例如紫外可见光(UV-Vis)和傅立叶变换中红外(FT-MIR))支持,以检测和量化食品和生物消耗品中的几种有毒掺假物。在当前的工作中,该技术已应用于掺假糖,蜂蜜,姜黄和牛奶样品。 EIS研究表明,随着溶液中掺假百分比的增加,电阻抗会不断变化。由于掺假导致的此类特性变化提供了系统的传感器图,通过该图可以确定未知掺假样品中掺假的百分比。另外,本研究包括对UV-Vis和FT-MIR结果的广泛论证,并在适用的情况下得到EIS结果的证实。重点已经放在设计和制造用于检测和定量牛奶样品中各种掺杂物的生物传感器装置的过程中。

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