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Soil C and N response to changes in winter precipitation in a subalpine forest ecosystem, NW Italy

机译:意大利西北部亚高山森林生态系统中土壤碳和氮对冬季降水变化的响应

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Among the potential effects of climate change on subalpine forest ecosystems during the winter season, the shift in snowline towards higher altitudes and the increase in frequency of rain events on the snowpack are of particular interest. Here, we present the results of a 2-year field experiment conducted in a forest stand () in NW Italy at 2020 m a.s.l. From 2009 to 2011, we monitored soil physical characteristics (temperature and moisture), and soil and soil solution chemistry, in particular carbon (C) and nitrogen (N) forms and their change in time, as affected by simulated late snowpack accumulation and rain on snow events. Late snowpack accumulation determined a stronger effect on soil thermal and moisture regimes than rain on snow events. Also soil chemistry was significantly affected by late snowfall simulation. Although microbial biomass C and N were not reduced by soil freezing, soil contents of the more labile dissolved organic carbon and inorganic N increased when the soil was affected by mild/hard freezing. Variations in the soil solution were shifted with respect to those observed in soil, with an increase in N-NO concentrations occurring during spring and summer. This study highlights the potential N loss in subalpine soils under changing environmental conditions driven by a changing climate. Copyright © 2013 John Wiley & Sons, Ltd.
机译:在冬季气候变化对亚高山森林生态系统的潜在影响中,特别关注的是雪线向更高海拔的转移以及降雨在雪堆上的频率增加。在这里,我们介绍了在2020 m a.s.l在意大利西北部森林林中进行的为期2年的野外试验结果。从2009年到2011年,我们监测了土壤的特征(温度和湿度)以及土壤和土壤溶液的化学性质,特别是碳(C)和氮(N)的形态及其随时间的变化,这些变化受模拟的后期积雪和降雨的影响在雪上活动。晚积雪的积聚决定了雨雪比积雪对土壤热量和水分状况的影响更大。另外,后期降雪模拟也显着影响了土壤化学性质。尽管土壤冻结不会使微生物生物量碳和氮减少,但是当土壤受到轻度/硬度冻结影响时,较不稳定的溶解性有机碳和无机氮的土壤含量会增加。土壤溶液的变化相对于土壤中观察到的变化有所变化,春季和夏季N-NO浓度增加。这项研究强调了在气候变化引起的环境条件变化下,亚高山土壤中潜在的氮损失。版权所有©2013 John Wiley&Sons,Ltd.

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