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Monitoring water content dynamics of biological soil crusts

机译:监测生物土壤结皮的水分动态

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Biological soil crusts (hereafter, "biocrusts") dominate soil surfaces in nearly all dryland environments. To better understand the influence of water content on carbon (C) exchange, we assessed the ability of dual probe heat-pulse (DPHP) sensors, installed vertically and angled, to measure changes in near-surface water content. Four DPHP sensors were installed in each of two research plots (eight sensors total) that differed by temperature treatment (control and heated). Responses were compared to horizontally installed water content measurements made with three frequency-domain reflectometry (FDR) sensors in each plot at 5-cm depth. The study was conducted near Moab, Utah, from April through September 2009. Results showed significant differences between sensor technologies: peak water content differences from the DPHP sensors were approximately three times higher than those from the FDR sensors; some of the differences can be explained by the targeted monitoring of biocrust material in the shorter DPHP sensor and by potential signal loss from horizontally installed FDR sensors, or by an oversampling of deeper soil. C-exchange estimates using the DPHP sensors showed a net C loss of 69 and 76 g C m(-2) in control and heated plots, respectively. The study illustrates the potential for using the more sensitive data from shallow installations for estimating C exchange in biocrusts. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在几乎所有的旱地环境中,生物土壤结皮(以下简称“生物结皮”)都占据着土壤表层。为了更好地了解水含量对碳(C)交换的影响,我们评估了垂直和倾斜安装的双探头热脉冲(DPHP)传感器测量近地表水含量变化的能力。在两个研究区(总共八个传感器)的每一个中都安装了四个DPHP传感器(总共八个传感器),它们的温度处理(控制和加热)有所不同。将响应与在5 cm深度的每个图中使用三个频域反射法(FDR)传感器进行水平安装的水含量测量进行比较。这项研究于2009年4月至9月在犹他州的摩押附近进行。结果表明,传感器技术之间存在显着差异:DPHP传感器的峰值水含量差异约为FDR传感器的三倍;一些差异可以通过对较短的DPHP传感器中的生物结皮材料进行有针对性的监测,水平安装的FDR传感器中的潜在信号损失或对较深土壤的过采样来解释。使用DPHP传感器进行的C交换估算显示,在控制区和加热区中的净C损失分别为69和76 g C m(-2)。这项研究说明了利用浅层装置中的更敏感数据估算生物结壳中碳交换的潜力。 (C)2017 Elsevier Ltd.保留所有权利。

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