用于监测水溶液中离子浓度的同轴微波谐振传感器设计

Subhanwit Roy, N. Neihart, N. Bowler
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引用次数: 4

摘要

农田流出的硝酸盐与地表水流混合,对人类健康和水生生物都产生不利影响。目前,缺乏低成本、有效、实时的离子浓度监测系统。在这项工作中,采用开放式同轴传输线设计了微波谐振传感器,该传输线可被液体样品瞬时扰动,并采用合适的耦合结构进行传输测量。该传感器在农业相关浓度下具有高灵敏度,制造成本低,尺寸小,可以在现场部署。利用ANSYS HFSS对不同浓度硝酸盐、硫酸盐和氯离子水溶液样品的复介电常数数据进行了有限元模拟。确定了合适的函数来模拟谐振频率与离子浓度之间的关系,并讨论了传感器在现场部署的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coaxial microwave resonant sensor design for monitoring ionic concentration in aqueous solutions
Nitrate efflux from agricultural lands mixes with surface streams and adversely affects both human health as well as aquatic life. Currently, there is a lack of low-cost, effective, real-time systems for monitoring ion concentration. In this work, a microwave resonant sensor is designed using an open-ended coaxial transmission line, which can be evanescently perturbed by a liquid sample, and a suitable coupling structure which allows transmission measurements. The sensor is developed to have high sensitivity at agriculturally relevant concentrations, low manufacturing costs, and small dimensions to be potentially field deployable. Finite Element Analysis simulations are carried out using ANSYS HFSS, employing complex permittivity data of aqueous solution samples with varying concentrations of nitrate, sulfate, and chloride ions. Appropriate functions are determined that model the correlations between resonant frequency and ion concentration, and discussion on the feasibility of the sensor for field deployment is presented.
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