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Role of natural gas in meeting an electric sector emissions reduction strategy and effects on greenhouse gas emissions

机译:天然气在实现电力部门减排战略中的作用及其对温室气体排放的影响

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With advances in natural gas extraction technologies, there is an increase in the availability of domestic natural gas, and, natural gas is gaining a larger share of use as a fuel in electricity production. At the power plant, natural gas is a cleaner burning fuel than coal, but uncertainties exist in the amount of methane leakage occurring upstream in the extraction and production of natural gas. At higher leakage levels, the additional methane emissions could offset the carbon dioxide emissions reduction benefit of switching from coal to natural gas. This analysis uses the MARKAL linear optimization model to compare the carbon emissions profiles and system-wide global warming potential of the U.S. energy system over a series of model runs in which the power sector is required to meet a specific carbon dioxide reduction target across a number of scenarios in which the availability of natural gas changes. Scenarios are run with carbon dioxide emissions and a range of upstream methane emission leakage rates from natural gas production along with upstream methane and carbon dioxide emissions associated with production of coal and oil. While the system carbon dioxide emissions are reduced in most scenarios, total carbon dioxide equivalent emissions show an increase in scenarios in which natural gas prices remain low and, simultaneously, methane emissions from natural gas production are higher. Published by Elsevier B.V.
机译:随着天然气提取技术的进步,家用天然气的供应量增加了,天然气在电力生产中作为燃料使用的份额越来越大。在发电厂,天然气比煤燃烧的燃料更清洁,但是在天然气的开采和生产过程中上游发生的甲烷泄漏量尚不确定。在更高的泄漏水平下,额外的甲烷排放量可能会抵消从煤炭转换为天然气所带来的二氧化碳减排收益。该分析使用MARKAL线性优化模型在一系列模型运行中比较了美国能源系统的碳排放曲线和全系统的全球变暖潜力,在这些模型运行中,电力部门需要满足多个特定的二氧化碳减排目标天然气可用性发生变化的场景。场景以二氧化碳排放和天然气生产中上游甲烷排放泄漏率的范围以及与煤炭和石油生产相关的上游甲烷和二氧化碳排放为例。尽管在大多数情况下减少了系统的二氧化碳排放量,但在天然气价格仍然较低且同时天然气生产产生的甲烷排放量较高的情况下,二氧化碳当量的总排放量却有所增加。由Elsevier B.V.发布

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