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Comparison of two sensors ECH 2 O EC-5 and SM200 for measuring soil water content

机译:两种用于测量土壤含水量的传感器ECH 2 O EC-5和SM200的比较

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The goal of this study was calibration of the ECH20 soil moisture sensor EC-5 and the sensor SM200 for selected soils of the Czech Republic. Based on the soil maps of the Czech Republic and various climatic conditions, five humic horizons of different soil types were selected: Stagnic Chernozem Siltic, Haplic Chernozem, Chernozem Arenic, Haplic Luvisol, and Haplic Cambisol. Soil properties (pHKCl, pHH2O, exchangeable acidity, cation exchange capacity, hydrolytic acidity, basic cation saturation, sorption complex saturation, oxidable organic carbon content, CaCO3 content, salinity, sand, silt, and clay content, soil particle density, bulk density) were determined using the standard laboratory techniques. Six ECH20 EC-5 sensors permanently installed in six 606 cm3 repacked soil samples of each soil were calibrated. Four calibrated SM200 sensors were inserted into the same soil samples only when measuring sensor signal. Soil water contents were determined gravimetrically. Linear equation was used to find parameters of the calibration equations relating sensor signals or evaluated dielectric constants and soil water contents. The multiple linear analyses showed that the parameters of the calibration equations for the EC-5 depended on the bulk density, fraction of sand particles, and salinity. Parameters a and b of the SM200 depended on the initial soil salinity, sand fraction and CaCO3 content, and on the sand fraction, respectively. The impact of KBr solute (concentrations of 0.01, 0.05 and 0.1M Br) on calibration equations was studied as well. It was found that ECH20 EC-5 sensor measurements were more influenced by KBr solution than SM200 measurements. In the case of the ECH20 EC-5 sensor, impact of KBr was lower in soils of higher initial salinity. SM200 measurements were noticeably influenced only when 0.1M Br solution was applied.
机译:这项研究的目标是校准ECH 2 0土壤湿度传感器EC-5和捷克共和国特定土壤的SM200传感器。根据捷克共和国的土壤图和各种气候条件,选择了五种不同土壤类型的腐殖质层:Stagnic Chernozem Siltic,Haplic Chernozem,Chernozem Arenic,Haplic Luvisol和Haplic Cambisol。土壤特性(pH KCl ,pH H2O ,可交换酸度,阳离子交换容量,水解酸度,碱性阳离子饱和度,吸附复合物饱和度,可氧化有机碳含量,CaCO 使用标准实验室技术测定3 的含量,盐度,沙子,淤泥和粘土含量,土壤颗粒密度,堆积密度)。校准了在每个土壤的六个606 cm 3 重新包装的土壤样品中永久安装的六个ECH 2 0 EC-5传感器。仅在测量传感器信号时,将四个经过校准的SM200传感器插入相同的土壤样品中。用重量分析法测定土壤含水量。使用线性方程式来找到与传感器信号或评估的介电常数和土壤含水量有关的校准方程式的参数。多重线性分析表明,EC-5校准方程的参数取决于堆密度,沙粒分数和盐度。 SM200的参数a和b分别取决于初始土壤盐度,沙含量和CaCO 3 含量以及沙含量。还研究了KBr溶质(0.01、0.05和0.1M Br的浓度)对校准方程的影响。结果发现,KBr溶液对ECH 2 0 EC-5传感器的测量比对SM200的测量影响更大。对于ECH 2 0 EC-5传感器,KBr在初始盐度较高的土壤中的影响较小。仅当使用0.1M Br溶液时,SM200的测量才会受到显着影响。

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