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Net greenhouse gas emissions savings from natural gas substitutions in vehicles, furnaces, and power plants

机译:车辆,熔炉和发电厂中天然气替代产生的温室气体净排放节省

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We compare the net greenhouse gas emissions impact of substituting natural gas for other fossil fuels for five purposes: light-duty vehicles, transit buses, residential heating, electricity generation, and export for electricity generation overseas. Emissions are evaluated on a fuel cycle basis, from production and transport of each fuel through end use combustion, based on recent conditions in the USA. To compare across sectors, the emissions difference between natural gas and its alternative is normalised by natural gas consumption to compute the net reduction in CO(2)e per MJ of natural gas used. Greatest emission reductions can be achieved by replacing existing coal-fired power plants (78gCO(2)-e/MJ natural gas) or fuel oil furnaces (66gCO(2)e/MJNG). Compressed natural gas in vehicles yields no significant reductions. Uncertainties arising from upstream emission rates for natural gas and the global warming potential of methane are quantified. The study demonstrates the critical role of deployment choice on the net climate impact of natural gas.
机译:我们比较了将天然气替代其他化石燃料用于五个目的的净温室气体排放影响:轻型车辆,公交车,住宅供暖,发电以及向海外发电的出口。根据美国的最新情况,从每种燃料的生产和运输到最终用途燃烧,以燃料循环为基础评估排放。为了进行跨部门比较,将天然气与其替代品之间的排放差异通过天然气消耗进行归一化,以计算每使用的MJ天然气的CO(2)e净减少量。通过更换现有的燃煤电厂(78gCO(2)-e / MJ天然气)或燃油炉(66gCO(2)e / MJNG),可以实现最大程度的减排。车辆中的压缩天然气没有明显减少。量化了上游天然气排放率和甲烷全球变暖潜能带来的不确定性。该研究表明,部署选择对天然气对气候的净影响至关重要。

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