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Energy, Industry and Nitrogen: Strategies for Decreasing Reactive Nitrogen Emissions

机译:能源,工业和氮:减少反应性氮排放的策略

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Nitrogen oxides are released during atmospheric combustion of fossil fuels and biomass, and during the production of certain chemicals and products. They can react with natural or man-made volatile organic compounds to produce smog, or else can be further oxidized to produce particulate haze, or acid rain that can eutrophy land and water. The reactive nitrogen that begins in the energy sector thus cascades through the atmosphere, the hydrosphere and soils before being eventually partially denitrifed to the global warming and stratospheric ozone-depleting gas nitrous oxide or molecular nitrogen. This paper will suggest how an economic analysis of the nitrogen cycle can identify the most cost-effective places to intervene. Nitrogen oxides released during fossil-fuel combustion in vehicles, power plants and heating boilers can either be controlled by add-on emission control technology, or can be eliminated by many of the same technical options that lead to carbon dioxide reduction. These integrated strategies also address sustainability, economic development and national security issues. Similarly in industrial production, it is more effective to focus on redesigning industrial processes rather than on nitrogen oxide pollution elimination from the current system. This paper will suggest which strategies might be utilized to address multiple benefits rather than focusing on single pollutants.
机译:氮氧化物在化石燃料和生物质的大气燃烧过程中以及某些化学品和产品的生产过程中释放。它们可以与天然或人造的挥发性有机化合物发生反应以产生烟雾,或者可以进一步氧化以产生颗粒状的雾霾或酸雨,从而使土地和水富营养化。因此,从能源部门开始的反应性氮会在大气,水圈和土壤中级联,然后最终部分脱氮为全球变暖和平流层中消耗臭氧的一氧化二氮或分子氮。本文将建议对氮循环进行经济分析如何确定最经济有效的干预地点。在车辆,发电厂和供暖锅炉中化石燃料燃烧过程中释放的氮氧化物可以通过附加的排放控制技术进行控制,或者可以通过许多可减少二氧化碳的相同技术来消除。这些综合战略还涉及可持续性,经济发展和国家安全问题。同样,在工业生产中,将重点放在重新设计工业流程上比从当前系统中消除氮氧化物污染更为有效。本文将建议可以采用哪些策略来解决多种利益,而不是着眼于单一污染物。

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