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Mineralization of organic sulfur delays recovery from anthropogenic acidification

机译:有机硫的矿化延迟了人为酸化的恢复

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While SO42- concentrations in runoff are decreasing in many catchments in Europe, present day S output still exceeds the S input for most forested catchments in Europe and North America. Here we report that a large part of the observed SO42- in the runoff at a large-scale catchment study site (the Gardsjon roof experiment in southwestern Sweden) originates from the organic S pool in the 0 horizon. Budget estimates comparing soil S pools showed reductions in the S pool of 57 mmol of S m(-2) in the 0 horizon and 26 mmol Of SO42- m(-2) in the mineral Bs horizon after excluding anthropogenic deposition for four years. There was an increase of about 1 parts per thousand in the delta(34)S(SO4) value of the mineral Soil SO42- between 1990 and 1995 (average and 95% confidence interval of 6.2 +/- 0.6 and 7.7 +/- 0.6 parts per thousand, respectively), but the delta 34S(SO4) values in the E horizon are still much lower than the sprinkler water input of +19.7 parts per thousand, although the horizon has only a small extractable SO42- pool. After nine years (1991-2000) of artificially supplying S inputs comparable with those amounts supplied by preindustrial rain, the amount of S in runoff still exceeded the input by 30%. This extra 30% corresponds to a loss of 3 mmol of S m(-2) year(-1), compared to the soil S organic 0 horizon pool of 1098 mmol m(-2) in 1990, suggesting that recovery is delayed for decades, at least.
机译:尽管在欧洲许多流域,径流中的SO42-浓度正在下降,但当今欧洲和北美大多数森林流域的S产量仍超过S的输入。在这里,我们报告说,在大型集水研究站点(瑞典西南部的Gardsjon屋顶实验)的径流中观察到的SO42-的很大一部分来自于0层的有机S池。对比土壤S池的预算估算显示,在排除人为沉积4年后,0层S池中S池减少了57 mmol S m(-2),而Bs矿物中S池中的SO42- m(-2)降低了26 mmol。在1990年至1995年之间,土壤土壤SO42-的delta(34)S(SO4)值增加了约千分之1(平均值和95%置信区间为6.2 +/- 0.6和7.7 +/- 0.6千分之三),但E层中的增量34S(SO4)值仍远低于喷洒水输入量+19.7千分之一,尽管该层只有少量可提取的SO42-池。经过九年(1991-2000年)人为提供的S投入与工业化前雨水提供的投入相当后,径流中的S量仍超过投入30%。与1990年1098 mmol m(-2)的土壤S有机0水平池相比,这额外的30%相当于损失了3 mmol S m(-2)年(-1),这表明恢复工作延迟了至少几十年

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