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Forest ecosystem services affected by natural disturbances, climate and land-use changes in the Tatra Mountains

机译:塔特拉山自然干扰,气候和土地利用变化影响的森林生态系统服务

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The consequences of large-scale disturbances magnified by climate extremes and land-use changes in Norway spruce forests in the Tatra Mountains (Slovakia) are assessed in this study. The study area is part of the territory of Tatra National Park (TANAP). The driver-pressure-state-impact-response (DPSIR) framework was applied to evaluate how the ecosystem and its services are affected. The state of the ecosystem and its potential for provisioning ecosystem services before and after disturbances is expressed by a set of indicators derived mostly from long-term ecological research conducted in TANAP. The differences are classified by a standardised change index (CI). Ten years after the major windthrow disturbance in 2004, all ecosystem services were still below the pre-disturbance state. The most pronounced declines were found in cultural (average CI = 0.69) and provisioning (average CI = 0.86) ecosystem services. Regulating services are recovering faster (average CI = 0.97), with some indicators exceeding the state before the disturbances. Significant changes took place at the tree line, which is a new phenomenon not known from previous disturbances. Despite a gradual recovery of the ecosystem state and functioning, this analysis confirms that there is a serious risk of decline in forest ecosystem benefits according to regional climate change projections. It also indicates the increasing importance of sustainable forest management for safeguarding ecosystem services under changing conditions.
机译:在这项研究中,评估了极端气候和土地利用变化对塔特拉山(斯洛伐克)挪威云杉林造成的大规模干扰的后果。研究区域是塔特拉国家公园(TANAP)领土的一部分。驱动程序压力状态影响响应(DPSIR)框架用于评估生态系统及其服务受到的影响。一系列指标主要是由TANAP进行的长期生态研究得出的,表示了生态系统的状态及其在干扰前后提供生态系统服务的潜力。差异通过标准化变更指数(CI)进行分类。在2004年发生重大风灾扰动十年后,所有生态系统服务仍低于扰动前状态。在文化(平均CI = 0.69)和供应(平均CI = 0.86)生态系统服务中,下降最为明显。调节服务的恢复速度更快(平均CI = 0.97),一些指标超过了干扰之前的状态。林线发生了重大变化,这是以前的干扰还不知道的新现象。尽管生态系统状态和功能逐渐恢复,但该分析证实,根据区域气候变化预测,森林生态系统效益存在严重降低的风险。这也表明,在不断变化的条件下,可持续森林管理对于保障生态系统服务的重要性日益提高。

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