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首页> 外文期刊>Oecologia >Web-FACE: a new canopy free-air CO2 enrichment system for tall trees in mature forests
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Web-FACE: a new canopy free-air CO2 enrichment system for tall trees in mature forests

机译:Web-FACE:一种用于成熟森林中高大树木的新型冠层无空气二氧化碳富集系统

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摘要

The long-term responses of forests to atmospheric CO2 enrichment have been difficult to determine experimentally given the large scale and complex structure of their canopy. We have developed a CO2 exposure system that uses the free-air CO2 enrichment (FACE) approach but was designed for tall canopy trees. The system consists of a CO2-release system installed within the crown of adult trees using a 45-m tower crane, a CO2 monitoring system and an automated regulation system. Pure CO2 gas is released from a network of small tubes woven into the forest canopy (web-FACE), and CO2 is emitted from small laser-punched holes. The set point CO2 concentration ([CO2]) of 500 µmol mol–1 is controlled by a pulse-width modulation routine that adjusts the rate of CO2 injection as a function of measured [CO2] in the canopy. CO2 consumption for the enrichment of 14 tall canopy trees was about 2 tons per day over the whole growing season. The seasonal daytime mean CO2 concentration was 520 µmol mol–1. One-minute averages of CO2 measurements conducted at canopy height in the center of the CO2-enriched zone were within ±20% and ±10% of the target concentration for 76% and 47% of the exposure time, respectively. Despite the size of the canopy and the windy site conditions, performance values correspond to about 75% of that reported for conventional forest FACE with the added advantage of a much simpler and less intrusive infrastructure. Stable carbon isotope signals captured by 80 Bermuda grass (Cynodon dactylon) seedlings distributed within the canopy of treated and control tree districts showed a clearly delineated area, with some nearby individuals having been exposed to a gradient of [CO2], which is seen as added value. Time-integrated values of [CO2] derived from the C isotope composition of C. dactylon leaves indicated a mean (±SD) concentration of 513±63 µmol mol–1 in the web-FACE canopy area. In view of the size of the forest and the rough natural canopy, web-FACE is a most promising avenue towards natural forest experiments, which are greatly needed.
机译:由于林冠的规模庞大且结构复杂,因此很难通过实验确定森林对大气CO2浓集的长期响应。我们已经开发了使用自由空气CO2浓集(FACE)方法的CO2 暴露系统,但该系统是为高大的冠层树木设计的。该系统由使用45米塔式起重机安装在成年树冠内的CO2释放系统,CO2监测系统和自动调节系统组成。纯净的CO2 气体从编织到森林冠层的小管网(web-FACE)中释放出来,而CO2 从小的激光打孔中释放出来。设定点CO2 浓度([CO2 ])为500 µmol mol–1 ,由脉冲宽度调制程序控制,该例程将CO2 的注入速率调整为测得的[CO2 ]在树冠中的功能在整个生长季节中,用于富集14棵高大冠层树的CO2 消耗量约为每天2吨。白天的季节平均CO2 浓度为520 µmol mol–1 。在76%和47%的暴露量下,在富含CO2 区域中心的树冠高度进行的一分钟平均CO2 测量值在目标浓度的±20%和±10%之内时间分别。尽管树冠的大小和多风的工地条件,性能值仍相当于传统森林FACE报道的性能值的75%,其附加优点是基础设施更简单,侵入性更小。由分布在经处理和对照树区冠层内的80株百慕大草(Cynodon dactylon)幼苗捕获的稳定碳同位素信号显示出清晰划定的区域,附近的一些个体暴露于[CO2 ]梯度中,被视为附加值。从齿状。的C同位素组成得出的[CO2 ]的时间积分值表明,网状FACE冠层区的平均浓度(±SD)为513±63 µmol mol–1 。考虑到森林的大小和粗糙的自然冠层,web-FACE是进行天然森林实验的最有希望的途径,这是非常需要的。

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