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首页> 外文期刊>Journal of integrative environmental sciences >The potential of blue energy for reducing emissions of CO2 and non-CO2 greenhouse gases
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The potential of blue energy for reducing emissions of CO2 and non-CO2 greenhouse gases

机译:蓝色能源减少二氧化碳和非二氧化碳温室气体排放的潜力

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摘要

Salinity gradient power (or blue energy ) is a renewable energy source mentioned in the literature since the 1950s. It refers to the production of electricity by mixing of two solutions with different salt concentrations, for example river and sea water. The global potential of salinity power has been estimated in the 1970s as substantial, but the state of membrane technology at that time – crucial for energy recovery – did not permit the practical use of this resource. More recently, the interest in salinity power has been growing because of the need for carbon neutral, renewable sources of electricity. This study aims to assess the potential of salinity-gradient power for reducing emissions of CO_(2) and non-CO_(2) greenhouse gases. First, we discuss the global technical potential for blue energy, i.e. the maximum amount of energy that could be retrieved at the current state of technology. We focus on rivers as source of fresh water and seas as source of saline water. The analysis is based on global datasets of annual river discharges for more than 5000 world rivers. The resulting estimates of global and regional potentials for salinity gradient power are used to estimate the potential for reducing greenhouse gases, assuming that salinity power would reduce the need for fossil fuels. The results are shown for global totals, regional totals and selected rivers.
机译:自1950年代以来,盐度梯度功率(或蓝色能量)是文献中提到的可再生能源。它是指通过混合两种盐浓度不同的溶液(例如河水和海水)来发电。在1970年代,全球盐分发电的潜力被认为是巨大的,但是当时膜技术的状态(对于能量回收至关重要)不允许实际使用这种资源。最近,由于对碳中和的可再生能源的需求,对盐度发电的兴趣一直在增长。这项研究旨在评估盐度梯度发电潜力,以减少CO_(2)和非CO_(2)温室气体的排放。首先,我们讨论蓝色能源的全球技术潜力,即在当前技术状态下可以回收的最大能源量。我们专注于河流作为淡水水源和海洋作为咸水水源。该分析基于5000多个世界河流的年度河流流量的全球数据集。假设盐度功率会减少对化石燃料的需求,那么对盐度梯度功率的全球和区域潜力的最终估算结果将用于估算减少温室气体的潜力。显示了全球总数,区域总数和部分河流的结果。

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