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Seasonal variation of soil respiration under different land use/land cover in arid region

机译:干旱区不同土地利用/土地覆盖下土壤呼吸的季节变化

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Through combining the soil respiration with the main environmental factors under the planting shelterbelt (Populus woodland) and the natural desert vegetation (Tamarix ramosissima+Phragmites communis community and Haloxylon ammodendron community) in the western Junngar Basin, the difference in soil respiration under different land use/land cover types and the responses of soil respiration to temperature and soil moisture were analyzed. Results showed that the rate of soil respiration increased with temperature. During the daytime, the maximum soil respiration rate occurred at 18:00 for the Populus woodland, 12:00 for T. ramosissima+Ph. communis community, and 14:00 for H. ammodendron community, while the minimum rate all occurred at 8:00. The soil respiration, with the maximum rate in June and July and then declining from August, exhibited a similar trend to the near-surface temperature from May to October. During the growing season, the mean soil respiration rates and seasonal variation differed among the land use/land cover types, and followed the order of Populus woodland > T. ramosissima+Ph. communis community > H. ammodendron community. The difference in the soil respiration rate among different land use/land cover types was significant. The soil respiration of Pouplus woodland was significantly correlated with the near-surface temperature and soil temperature at 10 cm depth (P < 0.01) in an exponential manner. The soil respiration of T. ramosissima+Ph. communis and H. ammodendron communities were all linearly correlated with the near-surface temperature and soil surface temperature (P < 0.01). Based on the near-surface temperature, the calculated Q_(10) of Populus woodland, T. ramosissima+Ph. communis community and H. ammodendron community were 1.48, 1.59 and 1.63, respectively. The integrated soil respiration of the three land use/land cover types showed a significant correlation with the soil moisture at 0—5 cm, 5— 15 cm and 0—15 cm depths (P < 0.01). The quadratic model could best describe the relationship between soil respiration and soil moisture at 0—5 cm depth (P < 0.01).
机译:通过将准shelter尔盆地西部种植防护林带(杨林)和天然荒漠植被(Ta柳+芦苇群落和梭梭群落)下的土壤呼吸与主要环境因子相结合,不同土地利用下土壤呼吸的差异分析了土壤/土地覆盖类型以及土壤呼吸对温度和土壤湿度的响应。结果表明,土壤呼吸速率随温度的升高而增加。在白天,最大的土壤呼吸速率发生在胡杨林地的18:00,T。ramosissima + Ph。的12:00。 communis社区,而H. ammodendron社区则为14:00,而最低比率都在8:00发生。土壤呼吸在6月和7月达到最高速率,然后从8月开始下降,与5月至10月的近地表温度表现出相似的趋势。在生长季节,不同土地利用/土地覆盖类型的平均土壤呼吸速率和季节变化有所不同,并且遵循胡杨林地> T. ramosissima + Ph。社区> H. ammodendron社区。不同土地利用/土地覆盖类型之间的土壤呼吸速率差异显着。 Pouplus林地的土壤呼吸与近地表温度和10 cm深度的土壤温度呈指数相关(P <0.01)。 T. ramosissima + Ph。的土壤呼吸群落和梭菌群落均与近地表温度和土壤表面温度呈线性相关(P <0.01)。根据近地表温度,计算得出的胡杨林T. ramosissima + Ph的Q_(10)。 communis社区和H. ammodendron社区分别为1.48、1.59和1.63。三种土地利用/土地覆盖类型的综合土壤呼吸与0-5 cm,5-15 cm和0-15 cm深度处的土壤湿度显着相关(P <0.01)。二次模型可以最好地描述0-5 cm深度土壤呼吸与土壤水分之间的关​​系(P <0.01)。

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