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Evidence-based indicator approach to guide preliminary environmental impact assessments of hydropower development

机译:基于证据的指导方法指导水电开发的初步环境影响评估

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Global expansion of hydropower resources has increased in recent years to meet growing energy demands and fill worldwide gaps in electricity supply. However, hydropower induces significant environmental impacts on river ecosystems - impacts that are addressed through environmental impact assessment (EIA) processes. The need for effective EIA processes is increasing as environmental regulations are either stressed in developing countries undertaking rapid expansion of hydropower capacity or time- and resource-intensive in developed countries. Part of the challenge in implementing EIAs lies in reaching a consensus among stakeholders regarding the most important environmental factors as the focus of impact studies. To help address this gap, we developed a weight-of-evidence approach (and toolkit) as a preliminary and coarse assessment of the most relevant impacts of hydropower on primary components of the river ecosystem, as identified using river function indicators. Through a science-based questionnaire and predictive model, users identify which environmental indicators may be impacted during hydropower development as well as those indicators that have the highest levels of uncertainty and require further investigation. Furthermore, an assessment tool visualizes inter-dependent indicator relationships, which help formulate hypotheses about causal relationships explored through environmental studies. We apply these tools to four existing hydropower projects and one hypothetical new hydropower project of varying sizes and environmental contexts. We observed consistencies between the output of our tools and the Federal Energy Regulatory Commission licensing process (inclusive of EIAs) but also important differences arising from holistic scientific evaluations (our toolkit) versus regulatory policies. The tools presented herein are aimed at increasing the efficiency of the EIA processes that engender environmental studies without loss of rigor or transparency of rationale necessary for understanding, considering, and mitigating the environmental consequences of hydropower.
机译:近年来,水电资源的全球扩张已增加,以满足日益增长的能源需求,并填补全球电力供应差距。然而,水电会对河流生态系统产生重大的环境影响 - 通过环境影响评估(EIA)流程解决的影响。随着环境法规在发展中国家的快速扩张的发展中国家的快速扩张,在发达国家的时间和资源密集型的发展中国家都强调,对有效的环境影响评估进程的需求正在增加。实施联盟的一部分挑战在于将利益攸关方之间达成共识,了解最重要的环境因素作为影响研究的重点。为了帮助解决这一差距,我们开发了一种权重的方法(和工具包)作为利用河流功能指标识别的河流生态系统主要成分对水电最相关的初步和粗略评估。通过科学研究问卷和预测模型,用户确定水电开发期间可能会影响哪些环境指标以及具有最高不确定性和需要进一步调查的指标。此外,评估工具可视化依赖性指标关系,这有助于制定通过环境研究探索的因果关系的假设。我们将这些工具应用于四个现有的水电项目和一个不同尺寸和环境背景的一个假设新的水电项目。我们观察了我们的工具和联邦能源监管委员会许可进程(包括EIAS)的产出之间的一致性,而且来自整体科学评估(我们的工具包)与监管政策产生的重要差异。本文提出的工具旨在提高EIA过程的效率,即在不损失的情况下,在不损失的情况下,理解,考虑和减轻水电环境后果所需的理由透明度或透明度。

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