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New non-external field inductive conductivity sensor (NXIC) for long term deployments in biologically active regions

机译:新的非外部场感应电导率传感器(有毒),用于在生物活动区域的长期部署

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FSI a leader in innovative inductive (noncontacting type) conductivity sensors has been developing a sensor for enhanced long-term deployments in biologically active ocean regions. Long-term deployment of conductivity sensors in such areas normally results in poor conductivity data due to volumetric changes in cell geometry from biological fouling. Traditional inductive sensors allow antifoulants to coat the entire sensor; this technique is highly successful when using newly developed materials, which have high mechanical stability. Alternately, some success has been achieved using internal field electrode sensors with the ends protected using anti-foulant impregnated tubes. These conductivity sensors have had limited success due to the basic instability of the sensor to fouling, biological or mineral, of the electrodes. This problem is further hampered by the very small internal geometry, which has enhanced sensitivity to fouling with combined poor natural flushing characteristics. However, in some applications, pumps have been applied to correct sensor aspiration. Pumps dramatically increase the power requirements, complexity, and cost of the system. FSI has developed a new inductive conductivity sensor with no external electrical/magnetic field-the Non-External Field Inductive Conductivity Sensor (NXIC). The NXIC sensor allows for the use of end tube leaching protection without the disadvantages of a conductivity sensor that does not flush freely or has an unstable calibration due to degradation of electrodes from fouling. The NXIC sensor has been fully developed and is now undergoing extensive laboratory and field-testing.
机译:FSI创新归纳(非接触式)电导率传感器的领导者已经开发了一种传感器,用于增强生物活跃的海洋区域的长期部署。由于生物结垢的细胞几何体积变化,在这些区域中的电导率传感器的长期部署通常导致导电性差。传统的电感传感器允许防污涂层整个传感器;使用具有高机械稳定性的新开发的材料时,这种技术非常成功。或者,使用内部场电极传感器实现了一些成功,其中端部电极传感器采用防污染浸渍管保护。由于传感器的基本不稳定,这些电导率传感器的成功是有限的,电极的污垢,生物或矿物质。这种问题是由非常小的内部几何形状进一步妨碍,这具有增强的敏感性与污垢的敏感性,具有较差的自然冲洗特性。但是,在某些应用中,泵已被应用于校正传感器的吸入。泵显着提高了系统的功率要求,复杂性和成本。 FSI开发了一种新的电感电导率传感器,没有外部电气/磁场 - 非外部场感电导传感器(有毒)。排毒传感器允许使用端管浸出保护,而没有导电传感器的缺点,该导电传感器由于来自污垢的电极的劣化而没有自由冲洗或具有不稳定的校准。排毒传感器已完全开发,现在正在进行广泛的实验室和现场测试。

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