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A Bacillus sphaericus Based Biosensor for Monitoring Nickel Ions in Industrial Effluents and Foods

机译:基于球形芽孢杆菌的生物传感器用于监测工业废水和食品中的镍离子

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摘要

A microbial-based biosensor has been developed based on enzyme inhibition bioassay for monitoring the presence of Ni(II) in real-time samples. The sensing element is immobilized Bacillus sphaericus MTCC 5100 yielding urease enzyme. The transducer is an NH 4 + ion selective electrode in conjunction with a potentiometer. Heavy metals are potentially toxic to human beings. Nickel is associated with causing adverse health effects such as dermatitis and vertigo, in humans. Toxicity is manifested by affecting T-cell system and suppressing the activity of natural killer cells. Nickel finds applications in electroplating, coinage, electrodes, jewellery, alloys. The foods rich in Ni(II) are nuts, beans, oats, and wheat. The range of Ni(II) detection by the developed biosensor is 0.03–0.68 nM (0.002–0.04 ppb) with a response time of 1.5 minutes. For application, the Ni(II) effluent was procured from an electroplating industrial unit and was found to have a concentration of 100.0 ppm Ni(II). In foods, wheat flour sample was acid digested and Ni(II) was specifically complexed in the presence of other cations, and had an Ni(II) concentration of 0.044 ppm. The developed system has a reliability of 91.5% and 90.6%, respectively, for the samples and could possibly replace the existing conventional techniques of analysis.
机译:基于酶抑制生物测定法开发了一种基于微生物的生物传感器,用于监测实时样品中Ni(II)的存在。传感元件是固定的球形芽孢杆菌MTCC 5100,可产生脲酶。传感器是 NH 4 + 离子选择电极结合电位计。重金属对人类有潜在的毒性。镍与对人类造成不良健康影响,如皮炎和眩晕有关。毒性通过影响T细胞系统并抑制自然杀伤细胞的活性而表现出来。镍可用于电镀,造币,电极,珠宝,合金。富含Ni(II)的食物是坚果,豆类,燕麦和小麦。研发的生物传感器对Ni(II)的检测范围为0.03-0.68 nM(0.002-0.04 ppb),响应时间为1.5分钟。为了进行应用,从电镀工业单元采购了Ni(II)流出物,发现其浓度为100.0 ppm Ni(II)。在食品中,小麦粉样品经过酸消化,并且在存在其他阳离子的情况下将Ni(II)专门络合,并且Ni(II)的浓度为0.044 ppm。所开发的系统对样品的可靠性分别为91.5%和90.6%,并且可能取代现有的常规分析技术。

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