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Technical Note: Field experiences using UV/VIS sensors for high-resolution monitoring of nitrate in groundwater

机译:技术说明:使用UV / VIS传感器进行地下水硝酸盐高分辨率监测的现场经验

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Two different in situ spectrophotometers are compared that were used in the field to determine nitrate-nitrogen (NO3-N) concentrations at two distinct spring discharge sites. One sensor was a double wavelength spectrophotometer (DWS) and the other a multiple wavelength spectrophotometer (MWS). The objective of the study was to review the hardware options, determine ease of calibration, accuracy, influence of additional substances and to assess positive and negative aspects of the two sensors as well as troubleshooting and trade-offs. Both sensors are sufficient to monitor highly time-resolved NO3-N concentrations in emergent groundwater. However, the chosen path length of the sensors had a significant influence on the sensitivity and the range of detectable NO3-N. The accuracy of the calculated NO3-N concentrations of the sensors can be affected if the content of additional substances such as turbidity, organic matter, nitrite or hydrogen carbonate significantly varies after the sensors have been calibrated to a particular water matrix. The MWS offers more possibilities for calibration and error detection but requires more expertise compared with the DWS.
机译:比较了两种不同的原位分光光度计,这些分光光度计在现场用于确定两个不同的弹簧放电部位的硝酸盐氮(NO3-N)浓度。一个传感器是双波长分光光度计(DWS),另一个是多波长分光光度计(MWS)。该研究的目的是审查硬件选项,确定校准的难易程度,准确性,其他物质的影响并评估两个传感器的正面和负面方面以及故障排除和权衡取舍。两个传感器都足以监测地下水中高分辨的NO3-N浓度。但是,传感器的选择路径长度对灵敏度和可检测NO3-N的范围有重大影响。如果在将传感器校准到特定的水基质后,其他物质(例如浊度,有机物,亚硝酸盐或碳酸氢盐)的含量发生显着变化,则可能会影响传感器计算出的NO3-N浓度的准确性。 MWS提供了更多的校准和错误检测功能,但与DWS相比需要更多的专业知识。

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