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首页> 外文期刊>Canadian Journal of Soil Science >Harvesting and slash piling affect soil respiration, soil temperature, and soil moisture regimes in Newfoundland boreal forests
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Harvesting and slash piling affect soil respiration, soil temperature, and soil moisture regimes in Newfoundland boreal forests

机译:砍伐和砍伐成堆会影响纽芬兰北方森林的土壤呼吸,土壤温度和土壤水分状况

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Moroni M. T., Carter, P. Q and Ryan, D. A. J. 2009. Harvesting and slash piling affects soil respiration, soil temperature, and soil moisture regimes in Newfoundland boreal forests. Can. J. Soil Sci. 89: 343-355. The effect of harvesting and slash piling on soil respiration, temperature and moisture was examined in a balsam fir (Abies balsamea) and a black spruce (Picea marinara) forest located in western Newfoundland, Canada, 2 mo to 2.5 yr following harvesting. Within 4 mo of harvesting, soil temperature, moisture, and soil respiration rates were affected by harvesting and slash piling. Clearcut areas without slash (CC-S) had significantly lower soil respiration rates than uncut forests (F). However, clearcut areas with slash cover (CC+S) had significantly higher soil respiration rates than CC-S. When harvested areas with and without slash were combined, harvesting decreased soil respiration in the black spruce forest but had no effect oil soil respiration in the balsam fir forest. Harvesting increased soil temperatures at 10 cm, however CC+S temperatures were cooler than CC-S temperatures. Harvested areas tended to dry faster than F, although soil moisture levels at > 3.5 cm were not significantly depleted. However, there was evidence of soil drying at <3.5 cm. Soil temperature (at 10 cm) at the time of measurement was most strongly correlated to rates of soil respiration. Temporal variability and treatment effects (harvesting and slash piling) played a minor role in explaining soil respiration rates when variations in soil respiration were adjusted for 10-cm soil temperature,. Soil Moisture levels (3.5-9.5 cm depth), which did not vary widely, also played a minor role in explaining soil respiration rates.
机译:Moroni M. T.,Carter,P. Q和Ryan,D.A.J.2009。收割和砍桩会影响纽芬兰北方森林的土壤呼吸,土壤温度和土壤水分状况。能够。 J.土壤科学。 89:343-355。在收获后2个月至2.5年后,在加拿大纽芬兰西部的苦瓜冷杉(Abies balsamea)和黑云杉(Picea marinara)森林中,研究了砍伐和砍桩对土壤呼吸,温度和湿度的影响。在收获的4个月内,土壤温度,湿度和土壤呼吸速率会受到收获和斜线堆放的影响。与未砍伐的森林(F)相比,无砍伐的未砍伐区域(CC-S)的土壤呼吸速率明显较低。但是,带有斜线盖(CC + S)的明确区域的土壤呼吸速率明显高于CC-S。当合并有和没有砍伐的采伐区时,黑云杉林的采伐减少了土壤呼吸,而苦瓜冷杉的采伐对油土呼吸没有影响。收获时土壤温度升高了10厘米,但是CC + S温度低于CC-S温度。尽管> 3.5 cm的土壤水分水平并未显着减少,但收获区域的干燥速度往往快于F。但是,有证据表明土壤在<3.5 cm处干燥。测量时的土壤温度(10厘米处)与土壤呼吸速率密切相关。当针对10厘米土壤温度调整土壤呼吸变化时,时间变化和处理效果(收割和斜线堆放)在解释土壤呼吸速率中起次要作用。土壤水分含量(3.5-9.5厘米深)没有广泛变化,在解释土壤呼吸速率方面也起着较小的作用。

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