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A high-altitude balloon platform for determining exchange of carbon dioxide over agricultural landscapes

机译:用于确定农业景观上二氧化碳交换的高空气球平台

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The exchange of carbon dioxide between the terrestrial biosphere and the atmosphere is a key process in the global carbon cycle. Given emissions from fossil fuel combustion and the appropriation of net primary productivity by human activities, understanding the carbon dioxide exchange of cropland agroecosystems is critical for evaluating future trajectories of climate change. In addition, human manipulation of agroecosystems has been proposed as a technique of removing carbon dioxide from the atmosphere via practices such as no-tillage and cover crops. We propose a novel method of measuring the exchange of carbon dioxide over croplands using a high-altitude balloon (HAB) platform. The HAB methodology measures two sequential vertical profiles of carbon dioxide mixing ratio, and the surface exchange is calculated using a fixed-mass column approach. This methodology is relatively inexpensive, does not rely on any assumptions besides spatial homogeneity (no horizontal advection) and provides data over a spatial scale between stationary flux towers and satellite-based inversion calculations. The HAB methodology was employed during the 2014 and 2015 growing seasons in central Illinois, and the results are compared to satellite-based NDVI values and a flux tower located relatively near the launch site in Bondville, Illinois. These initial favorable results demonstrate the utility of the methodology for providing carbon dioxide exchange data over a large (10-100 km) spatial area. One drawback is its relatively limited temporal coverage. While recruiting citizen scientists to perform the launches could provide a more extensive dataset, the HAB methodology is not appropriate for providing estimates of net annual carbon dioxide exchange. Instead, a HAB dataset could provide an important check for upscaling flux tower results and verifying satellite-derived exchange estimates.
机译:陆地生物圈与大气之间的二氧化碳交换是全球碳循环的关键过程。考虑到化石燃料燃烧产生的排放以及人类活动对净初级生产力的占用,了解农田农业生态系统的二氧化碳交换对于评估未来的气候变化轨迹至关重要。另外,已经提出了人类对农业生态系统的操纵作为通过诸如免耕和覆盖作物之类的方法从大气中除去二氧化碳的技术。我们提出了一种使用高空气球(HAB)平台测量农田上二氧化碳交换的新方法。 HAB方法可测量二氧化碳混合比的两个连续的垂直剖面,并使用固定质量色谱柱方法计算表面交换。这种方法相对便宜,除了空间均匀性(无水平对流)外,不依赖任何假设,并且在固定通量塔和基于卫星的反演计算之间的空间范围内提供数据。在2014年和2015年伊利诺伊州中部生长季节采用了HAB方法,并将结果与​​基于卫星的NDVI值和位于伊利诺伊州邦德维尔发射场附近的通量塔进行了比较。这些最初的有利结果表明,该方法可用于在较大的(10-100 km)空间区域上提供二氧化碳交换数据。一个缺点是其相对有限的时间覆盖范围。虽然招募公民科学家进行发射可以提供更广泛的数据集,但HAB方法不适用于提供年度净二氧化碳交换量的估算。取而代之的是,HAB数据集可以为升级磁通塔结果和验证卫星衍生的交换估计值提供重要检查。

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