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Use of microdialysis to assess short-term soil soluble N dynamics with biochar additions

机译:使用MicrodiaLysis评估Biochar添加的短期土壤可溶性N动态

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To date there has been little effort to assess fine-scale soil solution nitrogen (N) dynamics over time and space in response to biochar application within days. Herein we applied microdialysis to investigate the spatial and temporal dynamics of free amino acids (AA), ammonium (NH4+), and nitrate (NO3-) following biochar application to a column containing sandy loam forest soil. Wood biochar (diameter = 5 mm) was applied either at surface or mixed through the entire soil column. Biochar stimulated localized soluble N diffusive fluxes, and the vertical distribution of AA and NH4+ hotspots gradually matched the distribution of biochar particles in the soil matrix over time. Increases in soil AA and NH4+ concentrations were more homogeneous along soil profile when biochar was mixed through the soil core and were more concentrated at the surface when biochar was surface applied. Increases in NO3- concentrations were only observed at surface soil layers following biochar addition regardless of the application strategy and generally exhibited a high degree of variation over the course of the experiment. Microdialysis sampling allowed for quantification of 'hotspots' of soil soluble N in association with the "charosphere" across time and space.
机译:迄今为止,在几天内,几乎没有努力通过时间和空间评估细小的土壤溶液氮(n)动力学和空间。在本文中,我们应用MicrodiaLysis以研究BioChar应用于含有含沙壤土森林土壤的柱后的自由氨基酸(AA),铵(NH 4 +)和硝酸铵(NO 3-)的空间和时间动态。木质生物炭(直径& = 5 mm)在表面上施加或通过整个土壤柱混合。 Biochar刺激局部可溶性N扩散助熔剂,AA和NH4 +热点的垂直分布逐渐匹配土壤基质中BioChix颗粒的分布随时间。当生物炭通过土芯混合时​​,土壤AA和NH 4 +浓度的增加沿土壤曲线更均匀,并且当BioChOR表面施加时,在表面浓缩。在BioChar的表面土层中仅观察到NO 3浓度的增加,无论应用策略如何,在实验过程中一般表现出高度的变化。 MicrodiaLysis采样允许在时间和空间中与“Charlyshe”结合的土壤可溶性N的“热点”量化。

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