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首页> 外文期刊>International journal of remote sensing >Analysing the effects of applying agricultural lime to soils by VNIR spectral sensing: a quantitative and quick method
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Analysing the effects of applying agricultural lime to soils by VNIR spectral sensing: a quantitative and quick method

机译:通过VNIR光谱传感分析将农用石灰施用于土壤的效果:定量和快速的方法

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摘要

The potential of visible and near-infrared (VNIR) diffuse reflectance spectra to predict the chemical properties of Ferralsols and Arenosols cultivated with maize during four crop cycles were evaluated. The study was carried out in a greenhouse and aimed to (ⅰ) evaluate soil chemistry variation induced by plants and the application of lime with different degrees of reactivity using conventional methods and proximal soil-sensing techniques, (ⅱ) identify the wavelength ranges related to soil chemistry changes, and (ⅲ) construct models that predict soil chemistry attributes using soil VNIR spectra. Treatments used were three lime rates applied to raise the base saturation to 40%, 60% and 80% and one control. Partial least squares regression with cross-validation was used to establish relationships between the VNIR spectra and the reference data from chemical analyses. The predicted results were evaluated based on the values of coefficient of determination (R~2), the ratio of the standard deviation of the validation set to the root mean square error of cross-validation (RPD), and the root mean square of prediction. The predicted results were excellent (R~2 > 0.90 and RPD > 3) for potassium and for the lime requirement calculation. Good predictions (0.81 < R~2 < 0.90 and 2.5 < RPD < 3) were also obtained for pH and sum of bases. The resulting models for exchangeable calcium, cation exchangeable capacity, and base saturation had moderate predictive power (0.66 < R~2 < 0.80 and 2.0 < RPD < 2.5). Our findings suggest that VNIR reflectance spectroscopy could be used as a rapid, inexpensive, and non-destructive technique to predict some soil chemistry properties for these soil types. As this methodology evolves, it may eventually permit real-time analyses of soil variability and real-time management responses via sensors installed on tractors.
机译:评估了可见光和近红外(VNIR)漫反射光谱预测玉米在四个作物周期中种植的Ferralsols和Arenosols的化学特性的潜力。这项研究是在温室中进行的,旨在(ⅰ)使用常规方法和近端土壤传感技术评估植物诱导的土壤化学变化以及不同反应度的石灰的应用,(ⅱ)确定与土壤化学变化,以及(ⅲ)使用土壤VNIR光谱构建预测土壤化学属性的模型。所使用的处理方法是采用三种石灰用量以将碱饱和度提高至40%,60%和80%,并采用一种对照。使用带有交叉验证的偏最小二乘回归来建立VNIR光谱和化学分析的参考数据之间的关系。根据确定系数(R〜2)的值,验证集的标准偏差与交叉验证的均方根误差(RPD)的比率以及预测的均方根来评估预测结果。对于钾和石灰需求量的计算,预测结果非常好(R〜2> 0.90,RPD> 3)。对于pH和碱的总和也获得了良好的预测(0.81

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  • 来源
    《International journal of remote sensing 》 |2013年第14期| 4570-4584| 共15页
  • 作者单位

    Escola Superior de Agricultura 'Luiz de Queiroz' - Soil Science Department, University of Sao Paulo, Piracicaba, Sao Paulo State, Brazil;

    Escola Superior de Agricultura 'Luiz de Queiroz' - Soil Science Department, University of Sao Paulo, Piracicaba, Sao Paulo State, Brazil;

    Secretary of Agriculture of Sao Paulo State, Coordenadoria de Assistencia Tecnica Integral (CATI), Piracicaba, Sao Paulo State, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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