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Evaluation of the Analytical Capabilities of Some Bacterial and Hybrid Sensors for Environmental Pollutants Determination

机译:某些细菌和混合传感器测定环境污染物的分析能力的评估

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Some bacterial and hybrid (bacterial/enzymatic) electrochemical sensors were evaluated for potential in situ metal ions and organophosphorus pesticides determinations. The analytical performances of the Acidithiobacillus ferrooxidans and Leptospirillum ferrooxidans based sensors for ferrous iron and of the Arthrobacter globiformis/acetylcholinesterase based one for chlorofos quantification were estimated throughout comparative studies. It was found that the two Fe~(2+) sensors provide better LOD (0.9 μmol L~(-1) and 2.4 μmol L~(-1) respectively) than that developed by Mandl et al. (60 μmol L~(-1)) earlier. The hybrid (bacterial/enzymatic) sensor for chlorofos provides the same LOD but much longer lifetime at ambient temperature than the enzymatic ones. Reproducibility and high detection sensitivity of the determinations were achieved applying an original bacteria immobilization strategy, improved transducer design, and noise suppression technique.
机译:评估了一些细菌和混合(细菌/酶)电化学传感器的潜在原位金属离子和有机磷农药的测定。在整个比较研究中,对基于酸性铁硫杆菌和氧化亚铁螺旋体的铁氧体和基于球形双节杆菌/乙酰胆碱酯酶的传感器的分析性能进行了评估。已经发现,两个Fe〜(2+)传感器提供的LOD(分别为0.9μmolL〜(-1)和2.4μmolL〜(-1))比Mandl等人开发的要好。 (60μmolL〜(-1))之前。用于氯仿的混合(细菌/酶促)传感器与酶促酶联传感器在环境温度下具有相同的LOD,但寿命更长。使用原始细菌固定策略,改进的换能器设计和噪声抑制技术,可实现测定的重现性和高检测灵敏度。

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