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Evaluation of an on-the-go technology for soil pH mapping

机译:评估土壤pH测绘的实时技术

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Since conventional sampling and laboratory soil analysis do not provide a cost effective capability for obtaining geo-referenced measurements with adequate frequency, different on-the-go sensing techniques have been attempted. One such recently commercialized sensing system combines mapping of soil electrical conductivity and pH. The concept of direct measurement of soil pH has allowed for a substantial increase in measurement density. In this publication, soil pH maps, developed using on-the-go technology and obtained for eight production fields in six US states, were compared with corresponding maps derived from grid sampling. It was shown that with certain field conditions, on-the-go mapping can significantly increase the accuracy of soil pH maps and therefore increase the potential profitability of variable rate liming. However, in many instances, these on-the-go measurements need to be calibrated to account for a field-specific bias. After calibration, the overall error estimate for soil pH maps produced using on-the-go measurements was less than 0.3 pH, while non-calibrated on-the-go and conventional field average and grid-sampling maps produced errors greater than 0.4 pH.
机译:由于常规采样和实验室土壤分析无法提供具有成本效益的功能,因此无法获得具有足够频率的地理参考测量值,因此尝试了各种移动感应技术。一种这样的最近商业化的感测系统结合了土壤电导率和pH的绘图。直接测量土壤pH值的概念已使测量密度大大提高。在该出版物中,将使用移动技术开发并从美国六个州的八个生产田获得的土壤pH值图与源自网格采样的相应图进行了比较。结果表明,在某些野外条件下,移动地图可以显着提高土壤pH图的准确性,因此可以提高可变速率石灰的潜在获利能力。但是,在许多情况下,这些行进中的测量需要进行校准以解决特定于现场的偏差。校准后,使用移动测量产生的土壤pH值图的总体误差估计小于0.3 pH,而未经校准的移动和常规场均和网格采样图产生的误差大于0.4 pH。

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