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Spatial variability structure of soil CO2 emission and soil attributes in a sugarcane area

机译:甘蔗区土壤CO2排放量空间变异结构及土壤属性

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Soil CO2 emission (F-CO2) is influenced by chemical, physical and biological factors that affect the production of CO2 in the soil and its transport to the atmosphere. F-CO2 varies in time and space depending on environmental conditions, including the management of the agricultural area. The aim of this study was to investigate the spatial variability structure of F-CO2 and soil attributes in a mechanically harvested sugarcane area (green harvest) using fractal dimension (D-F) derived from isotropic variograms at different scales (fractograms). F-CO2 showed an overall average of 1.51 mu mol CO2 m(-2) s(-1) and correlated significantly (P < 0.05) with soil physical attributes, such as soil bulk density, air-filled pore space, macroporosity and microporosity. Topologically significant DF values were obtained from the characterization of F-CO2 at medium and large scales (above 20 m), with values of 2.92 and 2.90, respectively. The variations in D-F with scales indicate that the spatial variability structure of F-CO2 was similar to that observed for soil temperature and total pore volume and was the inverse of that observed for other soil attributes, such as soil moisture, soil bulk density, microporosity, air-filled pore space, silt and clay content, pH, available phosphorus and the sum of bases. Thus, the spatial variability structure of F-CO2 presented a significant relationship with the spatial variability structure for most soil attributes, indicating the possibility of using fractograms as a tool to better describe the spatial dependence of variables along the scale.
机译:土壤CO2排放量(F-CO2)受化学,物理和生物因素的影响,这些因素会影响土壤中CO2的产生及其向大气的传输。 F-CO2的时空变化取决于环境条件,包括对农业区域的管理。这项研究的目的是使用从不同尺度(分形图)的各向同性方差图得出的分形维数(D-F)研究机械收割的甘蔗区(绿色收成)中F-CO2的空间变异结构和土壤属性。 F-CO2的总体平均值为1.51μmol CO2 m(-2)s(-1),与土壤的物理属性(如土壤容重,空气填充的孔隙空间,大孔隙度和微孔隙度)显着相关(P <0.05) 。从中型和大型(20 m以上)F-CO2的表征获得了具有拓扑学意义的DF值,分别为2.92和2.90。 DF随尺度的变化表明F-CO2的空间变异性结构与在土壤温度和总孔隙体积中观察到的相似,并且与在其他土壤属性(如土壤水分,土壤容重,微孔率)中观察到的相反,空气填充的孔隙空间,淤泥和粘土含量,pH,有效磷和碱的总和。因此,F-CO2的空间变异性结构与大多数土壤属性的空间变异性结构之间存在显着的关系,这表明使用分形图作为更好地描述尺度上变量空间依赖性的工具的可能性。

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