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Improved land cover and emission factors for modeling biogenic volatile organic compounds emissions from Hong Kong

机译:改善土地覆盖率和排放因子,以模拟香港的生物挥发性有机化合物的排放

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摘要

This paper describes a study of local biogenic volatile organic compounds (BVOC) emissions from the Hong Kong Special Administrative Region (HKSAR). An improved land cover and emission factor database was developed to estimate Hong Kong emissions using MEGAN, a BVOC emission model developed by Guenther et al. (2006). Field surveys of plant species composition and laboratory measurements of emission factors were combined with other data to improve existing land cover and emission factor data. The BVOC emissions from Hong Kong were calculated for 12 consecutive years from 1995 to 2006. For the year 2006, the total annual BVOC emissions were determined to be 12,400 metric tons or 9.82 × 10~9 g C (BVOC carbon). Isoprene emission accounts for 72%, monoterpene emissions account for 8%, and other VOCs emissions account for the remaining 20%. As expected, seasonal variation results in a higher emission in the summer and a lower emission in the winter, with emission predominantly in day time. A high emission of isoprene occurs for regions, such as Lowest Forest-NT North, dominated by broadleaf trees. The spatial variation of total BVOC is similar to the isoprene spatial variation due to its high contribution. The year to year variability in emissions due to weather was small over the twelve-year period (-1.4%, 2006 to 1995 trendline), but an increasing trend in the annual variation due to an increase in forest land cover can be observed (+7%, 2006 to 1995 trendline). The results of this study demonstrate the importance of accurate land cover inputs for biogenic emission models and indicate that land cover change should be considered for these models.
机译:本文介绍了香港特别行政区(HKSAR)对当地生物成因挥发性有机化合物(BVOC)排放的研究。开发了改进的土地覆盖和排放因子数据库,以使用MEGAN(由Guenther等人开发的BVOC排放模型)估算香港的排放量。 (2006)。将植物物种组成的实地调查和排放因子的实验室测量结果与其他数据相结合,以改善现有的土地覆盖率和排放因子数据。从1995年到2006年,香港连续12年计算出BVOC排放量。2006年,年度BVOC排放总量确定为12,400公吨或9.82×10〜9 g C(BVOC碳)。异戊二烯排放占72%,单萜排放占8%,其他VOC排放占其余20%。不出所料,季节性变化会导致夏季的排放量增加,而冬季的排放量减少,而排放量主要集中在白天。异戊二烯的排放量很高,例如以阔叶树为主的北部最低森林北部。总BVOC的空间变化由于其高贡献而类似于异戊二烯空间变化。在十二年期间,由于天气造成的排放量年变化较小(2006年至1995年趋势线为-1.4%),但是由于林地覆盖面积的增加,年度变化量仍呈上升趋势(+ 7%,2006年至1995年的趋势线)。这项研究的结果证明了准确的土地覆盖量输入对于生物排放模型的重要性,并表明对于这些模型应考虑土地覆盖变化。

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  • 来源
    《Atmospheric environment》 |2010年第11期|p.1456-1468|共13页
  • 作者单位

    Department of Mechanical Engineering, the University of Hong Kong, Pokfulam Road, Hong Kong, China;

    rnAir Science Group, Environmental Protection Department, Hong Kong Special Administrative Region Government, Hong Kong, China;

    rnAir Science Group, Environmental Protection Department, Hong Kong Special Administrative Region Government, Hong Kong, China;

    rnNational Center for Atmospheric Research, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BVOC emission; isoprene; monoterpene; other VOCs;

    机译:BVOC排放;异戊二烯单萜其他VOC;

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