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Changes in monoterpene mixing ratios during summer storms in rural New Hampshire (USA)

机译:新罕布什尔州农村夏季风暴中单萜混合比的变化(美国)

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Monoterpenes are an important class of biogenic hydrocarbons that influence ambient air quality and are a principle source of secondary organic aerosol (SOA). Emitted from vegetation, monoterpenes are a product of photosynthesis and act as a response to a variety of environmental factors. Most parameterizations of monoterpene emissions are based on clear weather models that do not take into account episodic conditions that can drastically change production and release rates into the atmosphere. Here, the monoterpene dataset from the rural Thompson Farm measurement site in Durham, New Hampshire is examined in the context of a set of known severe storm events. While some storm systems had a negligible influence on ambient monoterpene mixing ratios, the average storm event increased mixing ratios by 0.59 ± 0.21 ppbv, a factor of 93% above pre-storm levels. In some events, mixing ratios reached the 10's of ppbv range and persisted overnight. These mixing ratios correspond to increases in the monoterpene emission rate, ranging from 120 to 1240 g km?2 h?1 compared to an estimated clear weather rate of 116 to 193 g km2 h?1. Considering the regularity of storm events over most forested areas, this could be an important factor to consider when modeling global monoterpene emissions and their resulting influence on the formation of organic aerosols.
机译:单波通是一种重要的生物碳氢化合物,影响环境空气质量,是二次有机气溶胶(SOA)的原理来源。从植被发出,单调位是光合作用的产物,并作为对各种环境因素的反应。 MonoterPene排放的大多数参数都是基于清晰的天气模型,这些模型不考虑可能会彻底改变生产和释放速率进入大气层的焦点条件。这里,在达勒姆农村汤普森农场测量网站的单点数据集在一套已知的严重风暴事件的背景下进行了审查的新罕布什尔州。虽然某些风暴系统对环境单萜混合比的影响可忽略不计,但平均风暴事件将混合比率增加0.59±0.21ppbv,占暴风雨前水平的93%。在一些事件中,混合比率达到了PPBV范围的10分,并持续过夜。这些混合比对应于单萜发射率的增加,从120-1240克km?2 h = 1,与估计的透明天气速率相比为116至193g km 2 h?1。考虑到大多数森林地区的风暴事件的规律性,这可能是在建模全球单点排放时考虑的重要因素及其对有机气溶胶形成的影响。

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