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Comparison of Public Health Risks from Routine Operation of Energy Systems

机译:能源系统常规运作公共卫生风险的比较

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Based on the results of the ExtcrnE Project we have compared the public health risks from the routine operation of energy systems, in terms of YOLL (years of life lost). Generally the loss of life expectancy per kWh of electricity is much higher for fossil fuels than for modern nuclear plants and for most renewables, and among fossil fuels it is much higher for coal than for gas. However, for each energy source there is much variation between different installations of a given energy source; for example, the emission of harmful pollutants from coal power plants built after January 2000 will be an order of magnitude lower than typical emissions from existing plants in the USA and EU during the nineties. The health effects of PV (photovoltaics) and wind arise from the production of the materials rather than during operation of the plant. Among the renewables only biomass combustion entails relatively large health risks, due to the emission of PM, SO2 and NOx. The health risks from the routine operation of the nuclear fuel chain are very small, even though they have been summed over a time horizon of 100,000 years. Since the meaning of risks imposed over thousands of years is difficult to comprehend, we illustrate them by considering a scenario where the entire electricity of the world for 100 years is produced by nuclear: the incremental collective dose is only one percent of the cosmic radiation background. Even though the uncertainties are large (the numbers could be about 4 times smaller or larger [10]), they have relatively little effect on the comparison between energy systems, except for nuclear, because they affect the impacts of the air pollutants in more or less the same way.
机译:基于该ExtcrnE项目的结果,我们比较了来自能源系统的日常运行的公共健康风险,YOLL(减寿年数)的条款。一般每千瓦时平均电力的生命损失是化石燃料比现代核电厂和可再生能源大部分高得多,而且化石燃料中它是煤比煤气要高得多。然而,对于每个能量源有一个给定的能量源的不同安装之间太多变化;例如,从2000年1月以后建造燃煤电厂的有害污染物排放将是一个数量级低于在90年代从美国和欧盟现有工厂典型的排放。从生产的材料的,而不是植物的操作过程中出现的PV(光伏)和风力对健康的影响。其中唯一的可再生能源生物质燃烧需要相当大的健康风险,由于PM,二氧化硫和氮氧化物的排放。从核燃料链的日常操作的健康风险是非常小的,即使他们已经总结出了10万多年的时间跨度。由于实行了几千年的风险的含义很难理解,我们说明他们考虑在全球的100年,整个电力是由核能产生的一个场景:增量集体剂量仅仅是宇宙辐射背景的百分比的一种。虽然不确定性很大(数字可能是约小了4倍以上[10]),它们对能源系统之间的比较影响较小,除核,因为它们会影响更多的空气中的污染物的影响,或大致相同的方式。

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