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Energy sector water use implications of a 2 °C climate policy

机译:2°C气候政策对能源部门用水的影响

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Quantifying water implications of energy transitions is important for assessing long-term freshwater sustainability since large volumes of water are currently used throughout the energy sector. In this paper, we assess direct global energy sector water use and thermal water pollution across a broad range of energy system transformation pathways to assess water impacts of a 2 °C climate policy. A global integrated assessment model is equipped with the capabilities to account for the water impacts of technologies located throughout the energy supply chain. The model framework is applied across a broad range of 2 °C scenarios to highlight long-term water impact uncertainties over the 21st century. We find that water implications vary significantly across scenarios, and that adaptation in power plant cooling technology can considerably reduce global freshwater withdrawals and thermal pollution. Global freshwater consumption increases across all of the investigated 2 °C scenarios as a result of rapidly expanding electricity demand in developing regions and the prevalence of freshwater-cooled thermal power generation. Reducing energy demand emerges as a robust strategy for water conservation, and enables increased technological flexibility on the supply side to fulfill ambitious climate objectives. The results underscore the importance of an integrated approach when developing water, energy, and climate policy, especially in regions where rapid growth in both energy and water demands is anticipated.
机译:量化能源转换对水的影响对于评估长期的淡水可持续性非常重要,因为当前整个能源行业都使用大量的水。在本文中,我们评估了广泛的能源系统转换途径中全球能源部门的直接用水和热水污染,以评估2°C气候政策对水的影响。全球综合评估模型配备了解决整个能源供应链中的技术对水的影响的功能。该模型框架适用于广泛的2°C情景,以突显21世纪长期的水影响不确定性。我们发现,不同情况下对水的影响差异很大,对电厂冷却技术的适应可以大大减少全球淡水抽取量和热污染。由于发展中地区电力需求的迅速增长以及淡水冷却火力发电的普及,在所有调查的2°C情景中,全球淡水消耗量均增加。减少能源需求已成为一种强有力的节水战略,并可以提高供应方的技术灵活性,以实现雄心勃勃的气候目标。结果强调了制定水,能源和气候政策时采取综合方法的重要性,尤其是在预计能源和水需求都将快速增长的地区。

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