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旱地酸性溪流中溶解性有机碳的组成是否在发生变化?

Is the composition of dissolved organic carbon changing in upland acidic streams?

机构信息

Northern Rivers Institute, School of Geosciences, University of Aberdeen, Aberdeen, UK.

出版信息

Environ Sci Technol. 2009 Oct 15;43(20):7748-53. doi: 10.1021/es901649b.

Abstract

The quantity and composition of dissolved organic carbon (DOC) exported from upland soils to surface waters is a key link in the global carbon cycle and economically important for treating potable waters. The relationship between ultraviolet (UV) absorbance and DOC concentrations can be used to infer changes in the proportion of hydrophobic (aromatic, recalcitrant) carbon and hence biodegradability of DOC. This study describes a significant change in the relationship between UV absorbance and DOC over 22 years at two upland moorland catchments in Scotland, UK. Despite increases in long-term DOC concentrations, analysis suggests that the proportion of hydrophobic material has declined. A statistical mixed-effect modeling approach was used to examine the likely mechanisms that could explain these observations. Annual nonmarine sulfate load was the only significant forcing factor that could explain the observed long-term trend in the UV absorbance-DOC relationship at both sites. It is hypothesized that enhanced heterotrophic decomposition of organic matter and increased solubility of carbon compounds in soils where sulfate driven acidification is being reversed are the dominant mechanisms behind this change in DOC composition. These trends will impact on carbon substrate dynamics by potentially increasing biodegradability of exported organic matter, influencing carbon cycling in terrestrial and aquatic ecosystems.

摘要

从旱地土壤向地表水中输出的溶解有机碳 (DOC) 的数量和组成是全球碳循环的关键环节,对于处理饮用水具有重要的经济意义。紫外 (UV) 吸收率与 DOC 浓度之间的关系可用于推断疏水性(芳香族、难降解)碳的比例变化,从而推断 DOC 的生物降解性。本研究描述了英国苏格兰两个旱地沼泽流域 22 年来 UV 吸收率与 DOC 之间关系的显著变化。尽管长期 DOC 浓度增加,但分析表明疏水性物质的比例已经下降。统计混合效应模型方法用于检验可能的机制来解释这些观察结果。每年的非海洋硫酸盐负荷是唯一能够解释两个站点 UV 吸收-DOC 关系长期趋势的重要驱动因素。据推测,在硫酸盐驱动的酸化得到逆转的土壤中,有机质的异养分解增强以及碳化合物的溶解度增加,是导致 DOC 组成变化的主要机制。这些趋势将通过潜在增加输出有机物质的生物降解性来影响碳底物动态,从而影响陆地和水生生态系统的碳循环。

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