Jia Bingrui, Zhou Guangsheng, Wang Fengyu, Wang Yuhui
Laboratory of Quantitative Vegetation Ecology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.
Ying Yong Sheng Tai Xue Bao. 2004 Sep;15(9):1611-5.
With enclosed chamber Method, this paper studied the soil respiration in grazing and fenced typical Leymus chinensis steppes, Inner Mongolia, and its relationships with environmental factors. The results showed that the daily pattern of soil respiration could be expressed as a one-humped curve, and the highest values appeared at 13:00-15:00 in the fenced and grazing plots. The diurnal dynamics of soil respiration mainly depended on the surface temperature at the fenced plots and the soil temperature at 5 cm depth at the grazing plots. In June and July, the average soil respiration rate was 2.7 times greater at the fenced plots than that at the grazing plots, while the difference was not distinct in August and September, which was similar with the change of the belowground biomass. The reason was probably that the plant was influenced differently in different phenological phases by grazing and the change of environmental factors. It showed that human activity may not result in the increase of soil respiration rate. The seasonal dynamics of soil respiration was closely correlated with soil water content at the 0-10 cm depth at the fenced and grazing sites, and the maximum R2 was 0.853 and 0.741, respectively. The difference was that the correlation of soil respiration seasonal dynamics with soil water content was larger at the fenced plots than at the grazing plots. The correlations of soil respiration diurnal and seasonal dynamics with temperature and soil water content at lower profiles were larger than those at deeper profiles at the fenced and grazing sites.
采用密闭气室法,研究了内蒙古典型羊草草原放牧区和围栏区的土壤呼吸及其与环境因子的关系。结果表明,土壤呼吸日变化呈单峰曲线,围栏区和放牧区的最高值均出现在13:00 - 15:00。围栏区土壤呼吸的昼夜动态主要取决于地表温度,放牧区则主要取决于5 cm深度处的土壤温度。6月和7月,围栏区的平均土壤呼吸速率比放牧区高2.7倍,而8月和9月差异不明显,这与地下生物量的变化相似。原因可能是不同物候期放牧和环境因子变化对植物的影响不同。结果表明,人类活动可能不会导致土壤呼吸速率增加。围栏区和放牧区土壤呼吸的季节动态与0 - 10 cm深度处的土壤含水量密切相关,R²最大值分别为0.853和0.741。不同的是,围栏区土壤呼吸季节动态与土壤含水量的相关性大于放牧区。围栏区和放牧区土壤呼吸昼夜和季节动态与较低土层温度和土壤含水量的相关性大于较深土层。