...
首页> 外文期刊>Global change biology >A free-air enrichment system for exposing tall forest vegetation to elevated atmospheric CO2
【24h】

A free-air enrichment system for exposing tall forest vegetation to elevated atmospheric CO2

机译:自由空气浓缩系统,用于将高大的森林植被暴露于升高的大气CO2中

获取原文
获取原文并翻译 | 示例
           

摘要

A free-air CO2 enrichment (FACE) system was designed to permit the experimental exposure of tall vegetation such as stands of forest trees to elevated atmospheric CO2 concentrations ([CO2](a)) without enclosures that alter tree microenvironment. We describe a prototype FACE system currently in operation in forest plots in a maturing loblolly pine(Pinus taeda L.) stand in North Carolina, USA. The system uses feedback control technology to control [CO2] in a 26 m diameter forest plot that is over 10 m tall, while monitoring the 3D plot volume to characterize the whole-stand CO2 regime achieved during enrichment. in the second summer season of operation of the FACE system, atmospheric CO2 enrichment was conducted in the forest during all daylight hours for 96.7% of the scheduled running time from 23 May to 14 October with a preset target [CO2] of 550 mu mol mol(-1), approximate to 200 mu mol mol(-1) above ambient [CO2]. The system provided spatial and temporal control of [CO2] similar to that reported for open-top chambers over trees, but without enclosing the vegetation. The daily average daytime [CO2] within the upper forest canopy at the centre of the FACE plot was 552 +/- 9 mu mol mol-l (mean +/- SD). The FACE system maintained I-minute average [CO2] to within +/- 110 mu mol mol(-1) of the target [CO2] for 92% of the operating time. Deviations of [CO2] outside of this range were short-lived (most lasting < 60 s) and rare, with fewer than 4 excursion events of a minute or longer per day. Acceptable spatial control of [CO2] by the system was achieved,,with over 90% of the entire canopy volume within +/- 10% of the target [CO2] over the exposure season. CO2 consumption by the FACE system was much higher than for open-top chambers on an absolute basis, but similar to that of open-top chambers and branch bag chambers on a per unit volume basis. CO2 consumption by the FACE system was strongly related to windspeed, averaging 50 g CO2 m(-3) h(-1) for thestand for an average windspeed of 1.5 m s(-1) during summer. The [CO2] control results show that the free-air approach is a tractable way to study long-term and short-term alterations in trace gases, even within entire tall forest ecosystems. The FACE approach permits the study of a wide range of forest stand and ecosystem processes under manipulated [CO2](a) that were previously impossible or intractable to study in true forest ecosystems. [References: 49]
机译:设计了一种自由空气CO2浓缩(FACE)系统,以允许高大的植被(如林木林)实验暴露于升高的大气CO2浓度([CO2](a)),而无需改变树木微环境的围栏。我们描述了在美国北卡罗来纳州成熟的火炬松(Pinus taeda L.)林地中目前正在运行的FACE系统原型。该系统使用反馈控制技术来控制直径超过10 m的26 m直径林地中的[CO2],同时监控3D地块的体积以表征富集过程中实现的整个林分CO2状况。在FACE系统运行的第二个夏季,在5月23日至10月14日的全天时间内,在森林中进行了大气CO2浓缩,占计划运行时间的96.7%,预设目标[CO2]为550μmol mol。 (-1),大约比环境[CO2]高200 mol mol(-1)。该系统提供了对[CO2]的时空控制,类似于对树木上的开放式室所报告的控制,但没有封闭植被。 FACE图中心的上层林冠层内的日平均日间[CO2]为552 +/- 9μmol mol-l(平均+/- SD)。 FACE系统在92%的工作时间内将I分钟的平均[CO2]维持在目标[CO2]的+/- 110μmol mol(-1)范围内。超出此范围的[CO2]偏差是短暂的(最持续<60 s)并且很少,每天少于一分钟或更长的4次偏移事件。通过该系统,可以实现对[CO2]的可接受的空间控制,在暴露季节中,超过90%的整个冠层体积在目标[CO2]的+/- 10%范围内。绝对而言,FACE系统的CO2消耗量远远高于顶开式室,但与单位体积的开顶式室和分支袋式室的CO2消耗量相似。 FACE系统消耗的CO2与风速密切相关,夏季平均风速为1.5 m s(-1),平均风速为50 g CO2 m(-3)h(-1)。 [CO2]的控制结果表明,即使在整个高大的森林生态系统中,自由空气方法也是研究痕量气体长期和短期变化的一种简便方法。 FACE方法允许在受控的[CO2](a)下研究广泛的林分和生态系统过程,而这在以前无法或难于在真正的森林生态系统中进行研究。 [参考:49]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号