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Performance characteristics of an area distributed free air carbon dioxide enrichment (FACE) system

机译:区域分布式空气中二氧化碳浓缩(FACE)系统的性能特征

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Free air carbon dioxide enrichment (FACE) systems rely primarily on wind to distribute CO2 across treatment plots. Most current FACE designs inject CO2 at the perimeter of the plot, and low wind speeds can result in large horizontal gradients of CO2 concentration. These gradients can be reduced by using blowers to inject CO2 or a mixture of CO2 and air into the plot, but this process can alter the microclimate enough to affect plant growth. This report describes a new FACE system in which CO2 emitters are evenly distributed across a plot in a square array to provide an area-source of CO2. A variable mixture of CO2 and air is supplied continuously to each emitter at a constant low total volume flow. Tests in 13 m(2) plots of grassland and maize using set points of 1.4 times the ambient concentration showed good horizontal uniformity of CO2 concentration except for a small radius around each emitter. Temporal variation in CO2 concentration in the daytime at canopy height at the center of the plot was similar to that of other FACE designs, with 1 min average CO2 concentrations within 10% of the target 86% of the time. At night, the CO2 concentration achieved was more variable, but 1 min averages of CO2 concentration were within 20% of the target 83% of the time. The frequency distribution of instantaneous measurements made with an open path CO2 analyzer indicated a distribution strongly skewed toward low concentrations compared with the 1 min averages, which literature suggests may be a general characteristic of FACE systems. Canopy air temperatures on nights with low wind differed by less than 0.1 degrees C in plots with and without flow to the emitters, indicating minimal disturbance of the canopy microclimate. A square array FACE system could be scaled to any horizontal dimension without compromising the horizontal uniformity of CO2 concentration, and could be useful in large-scale screening of germplasm for CO2 responsiveness under field conditions
机译:自由空气中的二氧化碳富集(FACE)系统主要依靠风在整个处理区分配二氧化碳。当前大多数FACE设计都在图的周边注入CO2,低风速会导致CO2浓度的大水平梯度。这些梯度可以通过使用鼓风机向地块中注入二氧化碳或二氧化碳和空气的混合物来降低,但是此过程可以改变微气候,足以影响植物的生长。该报告介绍了一种新的FACE系统,其中,CO2排放源均匀分布在正方形阵列中的地块上,以提供CO2的面源。将二氧化碳和空气的可变混合物以恒定的低总体积流量连续地提供给每个排放器。在13 m(2)的草原和玉米田中,使用1.4倍环境浓度的设定值进行的测试显示,除​​了每个发射器周围的半径较小之外,CO2浓度的水平均匀性良好。日间在图中心的树冠高度处的CO2浓度随时间的变化与其他FACE设计相似,平均1分钟内的CO2浓度在目标时间的86%的10%内。到了晚上,二氧化碳的浓度变化更大,但平均83分钟的1分钟内平均二氧化碳浓度在目标值的20%之内。用开放式CO2分析仪进行的瞬时测量的频率分布表明,与1分钟平均值相比,其分布严重偏向低浓度,这表明文献可能是FACE系统的一般特征。在有或没有流向排放源的地块中,低风夜晚的冠层空气温度相差不到0.1摄氏度,这表明对冠层微气候的干扰最小。方阵FACE系统可缩放至任何水平尺寸,而不会损害CO2浓度的水平均匀性,并且可用于大规模筛选种质,以适应田间条件下的CO2响应能力

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