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Response of soil surface CO2 flux in a boreal forest to ecosystem warming

机译:北方森林土壤表面CO2通量对生态系统变暖的响应

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摘要

Soil surface carbon dioxide (CO2) flux (R-S) was measured for 2 years at the Boreal Soil and Air Warming Experiment site near Thompson, MB, Canada. The experimental design was a complete random block design that consisted of four replicate blocks, with each block containing a 15 m x 15 m control and heated plot. Black spruce [Picea mariana (Mill.) BSP] was the overstory species and Epilobium angustifolium was the dominant understory. Soil temperature was maintained (similar to 5 degrees C) above the control soil temperature using electric cables inside water filled polyethylene tubing for each heated plot. Air inside a 7.3-m-diameter chamber, centered in the soil warming plot, contained approximately nine black spruce trees was heated similar to 5 degrees C above control ambient air temperature allowing for the testing of soil-only warming and soil+air warming. Soil surface CO2 flux (R-S) was positively correlated (P < 0.0001) to soil temperature at 10 cm depth. Soil surface CO2 flux (R-S) was 24% greater in the soil-only warming than the control in 2004, but was only 11% greater in 2005, while R-S in the soil+air warming treatments was 31% less than the control in 2004 and 23% less in 2005. Live fine root mass (< 2 mm diameter) was less in the heated than control treatments in 2004 and statistically less (P < 0.01) in 2005. Similar root mass between the two heated treatments suggests that different heating methods (soil-only vs. soil+air warming) can affect the rate of decomposition.
机译:在加拿大MB的汤普森附近的北方土壤和空气变暖试验场测量了土壤表面二氧化碳(CO2)通量(R-S)了2年。实验设计是一个完整的随机块设计,包括四个重复块,每个块包含15 m x 15 m的对照和加热图。黑云杉[Picea mariana(Mill。)BSP]是上层树种,而桔梗上层是最主要的下层树种。对于每个加热的地块,使用装有水的聚乙烯管内的电缆将土壤温度保持在对照土壤温度以上(约5摄氏度)。在以土壤变暖区为中心的直径为7.3 m的室内,大约有9棵黑云杉树木被加热到比控制环境空气温度高出约5摄氏度,从而可以测试仅土壤变暖和土壤+空气变暖。在10 cm深度,土壤表面CO2通量(R-S)与土壤温度呈正相关(P <0.0001)。仅2004年,仅土壤变暖的土壤表面二氧化碳通量(RS)比对照高24%,但2005年仅增加11%,而土壤+空气变暖处理中的RS比2004年降低31%和2005年减少了23%。2004年加热处理后的活细根质量(直径小于2 mm)比对照处理少,2005年统计上也减少了(P <0.01)。两种加热处理之间相似的根质量表明不同的加热方法(仅土壤与土壤+空气变暖)会影响分解速率。

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