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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >The carbon footprint of desalination An input-output analysis of seawater reverse osmosis desalination in Australia for 2005-2015
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The carbon footprint of desalination An input-output analysis of seawater reverse osmosis desalination in Australia for 2005-2015

机译:脱盐碳足占地面积2005 - 2015年澳大利亚海水反渗透脱落的投入输出分析

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摘要

This study examines greenhouse gas emissions for 2005-2015 from seawater desalination in Australia, using conventional energies. We developed a tailor-made multi-regional input-output-model. We complemented macroeconomic top-down data with plant-specific desalination data of the largest 20 desalination plants in Australia. The analysed capacity cumulates to 95% of Australia's overall seawater desalination capacity. We considered the construction and the operation of desalination plants. We measure not only direct effects, but also indirect effects throughout the entire value chain. Our results show the following: We identify the state of Victoria with the highest emissions due to capital and operational expenditures (capex and opex). The contribution of the upstream value chain to total greenhouse gas emissions increases for capex and decreases for opex. For capex, the construction of intake and outfall is the driving factor for carbon emissions. For opex, electricity consumption is the decisive input factor. Both in construction and operation, we identify the critical role of the electricity sector for carbon emissions throughout the supply chain effects. The sector contributes 69% during the zenith of the construction phase and 96% during the operating phase to the entire emissions. We estimate the total emissions for 2015 at 1193 kt CO(2)e.
机译:本研究审查了澳大利亚海水淡化2005 - 2015年的温室气体排放,使用常规能量。我们开发了量身定制的多区域输入输出模型。我们与澳大利亚最大的20个海水淡化厂的植物特异性脱盐数据相结合了宏观经济自上而下数据。分析的能力累计占澳大利亚整体海水淡化能力的95%。我们考虑了淡化植物的建设和运作。我们不仅测量直接效果,还测量整个价值链中的间接影响。我们的结果表明:由于资本和业务支出(CAPEX和OPEX),我们识别维多利亚州的最高排放状态。上游价值链对总温室气体排放的贡献增加了支出和OPEX的降低。对于CAPEX,摄入量和排出的构造是碳排放的驱动因素。对于OPEX,电力消耗是决定性的输入因素。无论是在建设和运营中,我们都确定了在整个供应链效应中碳排放的电力部门的关键作用。该部门在施工阶段的天顶期间贡献69%,在经营阶段到整个排放期间96%。我们估计2015年的1193 KT CO(2)e的总排放量。

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