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An ISE-based On-Site Soil Nitrate Nitrogen Detection System

机译:基于ISE的现场土壤硝态氮检测系统

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摘要

Soil nitrate–nitrogen (NO -N) is one of the primary factors used to control nitrogen topdressing application during the crop growth period. The ion-selective electrode (ISE) is a promising method for rapid lower-cost in-field detection. Due to the simplification of sample preparation, the accuracy and stability of ISE-based in-field detection is doubted. In this paper, a self-designed prototype system for on-site soil NO -N detection was developed. The procedure of spinning centrifugation was used to avoid interference from soil slurry suspension. A modified Nernstian prediction model was quantitatively characterized with outputs from both the ISE and the soil moisture sensor. The measurement accuracy of the sensor fusion model was comparable with the laboratory ISE detections with standard sample pretreatment. Compared with the standard spectrometric method, the average absolute error (AE) and root-mean-square error (RMSE) were found to be less than 4.7 and 6.1 mg/L, respectively. The on-site soil testing efficiency was 4–5 min/sample, which reduced the operation time by 60% compared with manual sample preparation. The on-site soil NO -N status was dynamically monitored for 42 consecutive days. The declining peak of NO -N was observed. In all, the designed ISE-based detection system demonstrated a promising capability for the dynamic on-site monitoring of soil macronutrients.
机译:土壤硝态氮(NO -N)是在作物生长期控制氮素追施的主要因素之一。离子选择电极(ISE)是一种快速低成本的现场检测方法。由于样品制备的简化,人们怀疑基于ISE的现场检测的准确性和稳定性。本文开发了一套自行设计的用于土壤NO-N现场检测的原型系统。使用旋转离心程序以避免土壤浆液悬浮液的干扰。改进的Nernstian预测模型通过ISE和土壤湿度传感器的输出进行了定量表征。传感器融合模型的测量精度与采用标准样品预处理的实验室ISE检测相当。与标准光谱法相比,平均绝对误差(AE)和均方根误差(RMSE)分别小于4.7和6.1 mg / L。现场土壤测试效率为4–5分钟/样品,与手动样品制备相比,可将操作时间减少60%。连续42天动态监测现场土壤NO-N的状态。观察到NO -N的下降峰。总之,设计的基于ISE的检测系统展示了对土壤大量养分进行动态现场监测的有前途的功能。

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