Liang Naishen, Inoue Gen, Fujinuma Yasumi
CGER, National Institute for Environmental Studies, Tsukuba, Ibaraki 305-8506, Japan.
Tree Physiol. 2003 Aug;23(12):825-32. doi: 10.1093/treephys/23.12.825.
We developed a fast-response multi-chamber system for measuring soil-surface CO2 efflux (Fc). The chambers (90 x 90 x 50 cm, L x W x H) had lids that opened and closed automatically, and were connected in parallel to a single CO2 analyzer equipped with a 16-channel gas sampler. Between measurements the chamber lids were raised to allow precipitation and leaf litter to reach the enclosed soil surface. When a chamber was closed, it was ventilated with well-buffered ambient air (125 l min-1) that entered by an inlet on one chamber sidewall and exited through a large vent on the opposite sidewall. The pressure difference between the inside and outside of the chamber was less than 0.22 Pa. Two additional mixing fans maintained an air speed of 0.3 +/- 0.1 m s-1 at 20 cm above the soil surface. Air was withdrawn continuously from the inlets and outlets of each chamber, and fed sequentially to an infrared CO2 analyzer. With this system, we measured Fc in a 40-year-old temperate Pinus densiflora Sieb. & Zucc. forest from February 8 to May 30, 2001. Mean Fc increased steadily from 0.9 micro mol m-2 s-1 at the beginning of February to 4.6 micro mol m-2 s-1 by the end of May. There was a statistically significant correlation between Fc and surface soil temperature (r = 0.896; P < 0.0001), and the Q10 value was 2.8. Spatial variation of Fc was higher in the non-growing season than in the growing season. Measurements were not interrupted by either rain or snow.
我们开发了一种用于测量土壤表面二氧化碳通量(Fc)的快速响应多室系统。这些室(90×90×50厘米,长×宽×高)有自动开合的盖子,并与配备16通道气体采样器的单一二氧化碳分析仪并联连接。在测量之间,室盖会升起,以便降水和落叶能够落到封闭的土壤表面。当一个室关闭时,会用缓冲良好的环境空气(125升/分钟)进行通风,空气从室一侧壁上的入口进入,通过相对侧壁上的一个大通风口排出。室内外的压差小于0.22帕。另外两个混合风扇在土壤表面上方20厘米处保持0.3±0.1米/秒的风速。空气从每个室的入口和出口持续抽出,并依次输送到红外二氧化碳分析仪。利用这个系统,我们于2001年2月8日至5月30日在一片40年树龄的温带赤松林中测量了Fc。平均Fc从2月初的0.9微摩尔/平方米·秒稳步增加到5月底的4.6微摩尔/平方米·秒。Fc与表层土壤温度之间存在统计学上的显著相关性(r = 0.896;P < 0.0001),Q10值为2.8。Fc的空间变异性在非生长季节高于生长季节。测量未因雨或雪而中断。