首页> 外文期刊>European Journal of Soil Biology >Soil temperature is an important regulatory control on dissolved organic carbon supply and uptake of soil solution nitrate.
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Soil temperature is an important regulatory control on dissolved organic carbon supply and uptake of soil solution nitrate.

机译:土壤温度是对溶解有机碳供应和土壤溶液硝酸盐吸收的重要调控措施。

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摘要

The role of abiotic processes on dissolved organic matter (DOM) production is often underappreciated. However, abiotic processes appear to be especially important in subsoils where, with increasing depth, microbial activity declines and soil organic matter (SOM) becomes a progressively more important contributor to DOM. Within three soil depths (20, 40, and 60 cm) in a temperate forest, soil temperature was positively associated with dissolved organic carbon (DOC) concentration (R2=0.23-0.77) and the DOM humification index (R2=0.35-0.72) for soil solutions in slow and fast flowpaths. With increasing soil temperature from 5 to 24 degrees C, average DOC concentrations increased by 86% at 20 cm, 12% at 40 cm and 12% at 60 cm soil depths. Our data suggest that DOM supply, especially in subsoils, is temperature dependent. We attribute this to the influence of temperature on DOM replenishment through direct processes such as SOM dissolution, diffusion and exchange reactions as well as indirect processes such as rhizodeposition and exoenzyme activity. In contrast, negative relationships (R2=0.71-0.88) between temperature and nitrate concentrations in subsoil suggested that the temperature-dependent supply of DOM drives microbial processes such as dissimilatory and assimilatory nitrate consumption.
机译:非生物过程对溶解性有机物(DOM)产生的作用通常未被充分认识。然而,非生物过程在底土中显得尤为重要,随着深度的增加,微生物活性下降,土壤有机质(SOM)逐渐成为DOM的重要贡献者。在温带森林的三个土壤深度(20、40和60 cm)中,土壤温度与溶解有机碳(DOC)浓度(R 2 = 0.23-0.77)和DOM腐殖化呈正相关慢速和快速流动路径中的土壤溶液指数(R 2 = 0.35-0.72)。随着土壤温度从5摄氏度增加到24摄氏度,平均DOC浓度在20厘米处增加了86%,在40厘米处增加了12%,在60厘米深度处增加了12%。我们的数据表明,DOM的供应,尤其是在地下土壤中,是取决于温度的。我们将其归因于温度通过直接过程(例如SOM溶解,扩散和交换反应)以及间接过程(例如根状沉积和外切酶活性)对DOM补给的影响。相比之下,地下土壤温度与硝酸盐浓度之间的负相关关系(R 2 = 0.71-0.88)表明DOM的温度依赖性供给驱动微生物过程,例如异化和同化硝酸盐的消耗。

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