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Tri-generation power plant and conventional boilers: pollutant flow rate and atmospheric impact of stack emissions

机译:三代发电厂和常规锅炉:污染物流速和烟囱排放物对大气的影响

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摘要

The atmospheric impact of stack emissions from a power plant (tri-generator and boilers) that will be installed in an urban area in the central Po valley (Northern Italy), characterized by calm wind events, is studied and compared with the impact of the existing plant (conventional boilers). Both the plants are supplied by methane gas. The atmospheric dispersion of NOx emitted is simulated, both in the current and future scenario, by the software package ARIA INDUSTRY. The NOx emission rates are set equal to the regulatory emission limits for existing and future boilers, while the tri-generation system emission rates are set equal to the emission limits certified by the system manufacturer. The simulation periods focus over the 2010 winter season. The simulation estimates the impact of NOx emissions on air quality (vertical concentration profiles and concentration maps at the ground) in the urban area close to the plant. The future power plant impact on air quality results lower than the impact of the existing plant, even if the yearly total mass of pollutants emitted in atmosphere from the new power plant is higher than from the existing plant. The emissions of conventional boilers result the main responsible of the air pollution at the ground in the future scenario.
机译:研究将安装在波谷(意大利北部)中部城市地区的发电厂(三轮发电机和锅炉)烟囱排放对大气的影响,其特点是风向平稳,并将其与现有工厂(常规锅炉)。两个工厂都由甲烷气供应。在当前和将来的情况下,都可以使用ARIA INDUSTRY软件包对排放的NOx的大气弥散进行模拟。 NOx排放率设置为等于现有和未来锅炉的法规排放限值,而三代系统排放率设置为等于系统制造商认证的排放限值。模拟期集中在2010年冬季。该模拟估算了靠近工厂的市区中NOx排放对空气质量的影响(地面上的垂直浓度分布图和浓度图)。即使新电厂每年在大气中排放的污染物总量高于现有电厂,未来电厂对空气质量的影响也会低于现有电厂的影响。传统锅炉的排放导致未来情景中地面空气污染的主要原因。

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