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首页> 外文期刊>Frontiers of environmental science & eng >PM_(2.5)-related health impacts of utilizing ammonia-hydrogen energy in Kanto Region, Japan
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PM_(2.5)-related health impacts of utilizing ammonia-hydrogen energy in Kanto Region, Japan

机译:日本关东地区利用氨氢能对PM_(2.5)相关的健康影响

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AbstractAmmonia has emerged as a promising hydrogen carrier with applications as an energy source in recent years. However, in addition to being toxic, gaseous ammonia is a precursor of secondary inorganic aerosols. The concentration of ambient fine particulate matter (PM2.5) is intrinsically connected to public health. In this study, PM2.5-related health impacts of utilizing ammonia-hydrogen energy in Kanto Region, Japan, were investigated. It was assumed that 20% of the electricity consumption in Kanto Region, the most populated area in Japan, was supplied by ammonia-hydrogen energy. The PM2.5resulted from incomplete ammonia decomposition was simulated by a chemical transport model: ADMER-PRO (modified version). Based on the incremental PM2.5concentration, health impacts on the elderly (individuals over 65 years old) were quantitatively evaluated. The ammonia emission in this scenario increased PM2.5by 11.7% (0.16 μg·m–3·y–1) in winter and 3.5% (0.08 μg ·m–3·y–1) in summer, resulting in 351 premature deaths per year. This study suggests that costeffective emissions control or treatment and appropriate land planning should be considered to reduce the associated health impacts of this type of energy generation. In addition, further in-depth research, including cost-benefit analysis and security standards, is needed.
机译:摘要 氨已成为一种有前途的氢载体,近年来已成为一种能源。然而,除了有毒之外,气态氨还是第二无机气雾剂的前体。周围细颗粒物(PM 2.5 )的浓度与公共卫生有着内在的联系。在这项研究中,调查了日本关东地区利用氨氢能对PM 2.5 的健康影响。据推测,关东地区(日本人口最多的地区)的用电量中有20%由氨氢能提供。通过化学迁移模型ADMER-PRO(修改版)模拟了氨分解不完全导致的PM 2.5 。根据PM 2.5 的增加浓度,定量评估对老年人(65岁以上的老年人)的健康影响。在这种情况下,冬季的氨气排放使PM 2.5 增加了11.7%(0.16μg·m –3 ·y -1 ),提高了3.5%夏季(0.08μg·m -3 ·y <上标> -1 ),每年导致351例过早死亡。这项研究表明,应考虑采用具有成本效益的排放控制或处理方法以及适当的土地规划,以减少此类能源产生的相关健康影响。此外,还需要进行进一步的深入研究,包括成本效益分析和安全标准。

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