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Application of FTIR spectroscopy for evaluation of hydrophobic/hydrophilic organic components in arable soil

机译:FTIR光谱法在可耕土壤中疏水/亲水有机成分评估中的应用

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The main aim of this study was to determine the intensity of hydrophobic/hydrophilic components of the soil's organic matter as well as its hydrophobicity. Non-destructive Fourier Transform Infrared (FTIR) spectroscopy was used for the diagnosis and characterization of the basic classes of the chemical groups (hydrophilic and hydrophobic components) from which the organic matter in the soils is formed. Soil samples (depth 0-30 cm) were taken from the topsoil of the 70 sampling sites from the experimental field at Prague-Ruzyne (Czech Republic) during 2007-2009, where a conventional soil tillage technology was used. It was found that the variability of the intensity of the hydrophobic components is greater (27.6%) than that of the intensity of the hydrophilic components (6.2%), which correlated significantly with the C-org (r = 0.58; P < 0.05) and N-t (r = 0.65; P < 0.05) in the soil. It was proven that the soil samples with a higher proportion of coarse grains are more hydrophobic than those with higher proportions of clay. Data about soil hydrophobicity can help to evaluate the soil quality parameters as well as the soil fertility.
机译:这项研究的主要目的是确定土壤有机物的疏水/亲水成分的强度及其疏水性。无损傅里叶变换红外(FTIR)光谱用于诊断和表征土壤中形成有机物的化学基团(亲水和疏水成分)的基本类别。在2007-2009年期间,从布拉格-鲁泽尼(捷克共和国)实验田的70个采样点的表层土壤中抽取了土壤样品(深度0-30厘米),并使用了传统的土壤耕作技术。发现疏水组分的强度的变异性(27.6%)大于亲水组分的强度的变异性(6.2%),与C-org显着相关(r = 0.58; P <0.05)土壤中的Nt(r = 0.65; P <0.05)。事实证明,粗粒含量较高的土壤样品比粘土含量较高的土壤样品疏水性更高。有关土壤疏水性的数据可以帮助评估土壤质量参数以及土壤肥力。

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