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Design and performance of a new FACE (free air carbon dioxide enrichment) system for crop and short vegetation exposure

机译:一种用于农作物和短生植物暴露的新型FACE(空气中二氧化碳富集)系统的设计和性能

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Current atmospheric CO2 levels are unprecedented for the last 800,000 years and require assessments of their potential effects. Free Air Carbon dioxide Enrichment (FACE) is regarded as the most appropriate exposure system for experimental field investigations. While the early FACE technology involved fans for pre-dilution of CO2, now systems both with fans and without fans operating with pure CO2 are employed. The most often used construction in FACE technology involves peripheral injection from a circular or octagonal plenum with CO2 release pipes and jet holes surrounding the experimental plot which can create [CO2] gradientsacross the plot. Here, we present a new FACE design for short vegetation (crops and grassland) that does not involve peripheral injection but distributes CO2 directly within the plot canopy. The system involves numerous CO2 release holes in porous tubes that hang down from the upper canopy surface and stretch into the canopy. They can be adjusted in height according to crop growth. Plot size was 2 m x 2 m which allows for a high number of replicates at low CO2 consumption costs (6.5 tons CO2 in one season at five replicate plots = 3.5 kg CO2 per m(2) usable plot area and day during 24hr operation). System performance in terms of CO2 control was very good both in time and space, with 93% of all instantaneous readings during daylight hours matching 20% deviation from the set point, and low variation of [CO2] at a given moment within the exposed canopy. Some shading (c. 4% at full canopy development) resulted from the FACE structure at the plots but hardly any other microclimatic artifacts were observed. The FACE system is of modular construction and highly flexible and adaptable to various types of short vegetation. (C) 2 016 Elsevier B.V. All rights reserved.
机译:在过去的80万年中,当前大气中的二氧化碳水平是空前的,需要对其潜在影响进行评估。自由空气二氧化碳富集(FACE)被认为是用于实验现场研究的最合适的暴露系统。尽管早期的FACE技术将风扇用于二氧化碳的预稀释,但现在使用的系统既有风扇,也有不使用纯CO2的风扇。 FACE技术中最常用的构造涉及从圆形或八边形气室进行外围注入,并在实验区周围注入CO2释放管和喷孔,从而在整个区上产生[CO2]梯度。在这里,我们提出了一种针对短植被(农作物和草地)的新FACE设计,该设计不涉及外围注入,而是直接在样地冠层内分配CO2。该系统在多孔管中包括大量的CO2释放孔,这些孔从上层顶篷表面垂下并延伸到顶篷中。可以根据作物生长情况调节高度。样地大小为2 m x 2 m,可在低CO2消耗成本下进行大量重复试验(五个重复样地在一个季节中排放6.5吨CO2 = 24小时运行期间每m(2)可用样地面积和每天3.5 kg CO2)。就CO2控制而言,系统性能在时间和空间上都非常好,白天的所有瞬时读数的93%与设定点的偏差相匹配20%,并且在暴露的树冠内给定时刻[CO2]的变化小。该地块的FACE结构造成了一些阴影(在完全树冠发育时约为4%),但几乎未观察到其他微气候伪影。 FACE系统采用模块化结构,高度灵活,可适应各种类型的短草。 (C)2016 Elsevier B.V.保留所有权利。

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