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机构地区:[1]甘肃农业大学林学院,甘肃兰州730070 [2]甘肃省水土保持科学研究所,甘肃兰州730070
出 处:《西南农业学报》2016年第3期641-646,共6页Southwest China Journal of Agricultural Sciences
基 金:水利部"948"项目-多通道土壤碳通量自动测量系统-[2015]22号;甘肃省科技支撑计划项目-黄土丘陵沟壑区坡耕地;梯田土壤呼吸特征研究(1204FKCA069);甘肃省水利重点科研计划项目-陇中坡改梯土壤呼吸特征及水土保持优化技术研究-2012[255]
摘 要:利用LI-8100开路式土壤呼吸仪对陇西县现有梯田和自然坡耕地温室气体CO2通量进行观测。结果表明,土壤温度,梯田低于坡地1℃左右,土壤呼吸速率,梯田低于坡地0.67μmol·m^-2·s^-1,土壤呼吸速率存在明显差异(P=0.00)。土壤水分在温度最高时,梯田土壤含有较高的体积含水量达0.224%,而坡地处在较低的0.153%,差值为0.071%。土壤呼吸速率在单因子模型下拟合程度不高(R^2=0.1-0.5),但是双因子模拟下R2达到0.9以上,表明该区土壤呼吸速率受到这2个因子的共同影响;梯田的土壤呼吸特征更适应于黄土丘陵沟壑区的气候变化。In this paper, the greenhouse gas CO2 flux of open terrace and natural slope in Longxi country by Li-8100A automated soil CO2 flux system were studied. The results showed that the soil temperature of terraced field was 1 ℃ below slope laud at the same time, the soil respiration rate was 0.67 μmol·m^-2·s^-1 below slope, and the soil respiration rates had a obvious difference ( P = 0.00). When the soil water was in the highest temperature,the terraced field soll contained 0.224 % higher volumetric water,while the slope land was 0. 153 %, and the difference was 0.071%. Under single factor analysis model,the soli respiration rate' s fitting degree was not high(R^2 = 0.1 - 0.5), but under the double factor analysis,R^2 over 0.9. The result indicated that the soil respiration rate was the mutual effects of two factors;The characteristics of soil respiration on terraced was more adaptable to the change of climate on loess hilly and gully region.
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