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A paradox of warming in a deep peri-Alpine lake (Lake Lugano, Switzerland and Italy)

机译:深围羊水湖(卢加诺湖,瑞士和意大利)的悖论

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We investigated the effects of seasonal air temperature on the north basin of Lake Lugano (Switzerland and Italy), a deep peri-Alpine lake that is recovering from eutrophication. A priori ideas concerning the effects of temperature on key ecosystem responses were formalized in a conceptual model, which was tested against observed responses (from 28years of monitoring data) using structural equation modeling. The results broadly supported our model, and indicated that air temperature had pervasive effects on the lake's ecosystem. Warmer-than-usual winters restricted the depth of vertical mixing during turnovers and, as a result, reduced the associated replenishment of phosphorus (P) to surface waters. Moreover, although the reduction of P increased the potential for nutrient limitation, warmer winters and summers led to increases in summer chlorophyll a content (an index of phytoplankton biomass) through complex direct and indirect (food-web) effects. This apparently paradoxical effect on chlorophyll mimics a symptom of eutrophication, and suggests that climate warming might impede the recovery of the lake from eutrophication or increase the management interventions that will be required to meet the restoration targets.
机译:我们调查了卢加诺湖(瑞士和意大利)的北盆季节性气温的影响,这是一种从富营养化中恢复的深层恒生湖。关于温度对关键生态系统响应的影响的先验思想在概念模型中正式化,这是使用结构方程建模的观察到的响应(从监测数据的28年)进行测试。结果广泛支持我们的模型,并表明空气温度对湖泊生态系统具有普遍性的影响。较温暖的冬季冬季限制在失误期间的垂直混合深度,结果减少了磷(P)与表面水的相关补充。此外,虽然P的降低增加了营养素限制的可能性,但升温冬季和夏季导致夏季叶绿素的含量(浮游植物生物量的指数)通过复杂的直接和间接(食品纤维网)效应增加。这显然对叶绿素模仿富营养化的症状,并表明气候变暖可能会阻碍湖泊的恢复,或者增加了符合恢复目标所需的管理干预措施。

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