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Continuous monitoring of Zn in water with bismuth oxide thick-film using microwave and electric techniques

机译:微波和电技术连续监测氧化铋厚膜水中的锌

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Assuring a high quality of water and protecting it from chemical contamination is a major societal goal in the European Union and worldwide. Zinc is a metal, which when present in water in high concentrations, could cause adverse health effect with long-term exposure. Metal ion dispersion from abandoned mines is a global concern and one of the principle cause of metal pollution in water. Consequently, it is necessary to develop and deploy new sensing systems able to monitor continuously the water quality. In this work, the feasibility of using eight-pair interdigitated (IDE) sensors coated with bismuth oxide based film for continuous monitoring of zinc in water is assessed with microwave and electric techniques. The reaction between zinc in the concentration range 0-100 mg/l in deionised water and bismuth oxide based thick film screen-printed on planar IDE sensors starts after 30 seconds and the adsorption equilibrium was attained within 10 minutes; the response is faster during the initial stage and slows as equilibrium is reached. Furthermore, results show good linear correlations between C (capacitance) and S11 (reflected power) and zinc concentration, respectively about R2=0.99 and R2=0.97 at 5 and 10 minutes. In addition, the recovery time of sensors is evaluated to be 100-150 sec demonstrating the sensor reusability and potential for a continuous monitoring.
机译:确保高质量的水并保护其免受化学污染是欧盟和全球范围内的主要社会目标。锌是一种金属,当它以高浓度存在于水中时,长期接触会对健康造成不利影响。废弃矿山中的金属离子扩散是全球关注的问题,也是水中金属污染的主要原因之一。因此,有必要开发和部署能够连续监测水质的新传感系统。在这项工作中,通过微波和电子技术评估了使用涂有基于氧化铋的薄膜的八对叉指(IDE)传感器连续监测水中锌的可行性。在去离子水中浓度范围为0-100 mg / l的锌与丝网印刷在平面IDE传感器上的氧化铋基厚膜之间的反应在30秒后开始,并且在10分钟内达到吸附平衡。在初始阶段,响应速度更快,而在达到平衡时响应速度变慢。此外,结果表明C(电容)和S11(反射功率)与锌浓度之间具有良好的线性相关性,分别在5和5时分别约为R 2 = 0.99和R 2 = 0.97。 10分钟。此外,传感器的恢复时间估计为100-150秒,这证明了传感器的可重用性和连续监控的潜力。

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