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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >Comparison of the effects of rainfall and snowmelt on the carbon discharge of a small, steep, forested watershed in Hokkaido, northern Japan
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Comparison of the effects of rainfall and snowmelt on the carbon discharge of a small, steep, forested watershed in Hokkaido, northern Japan

机译:降雨和融雪对日本北部北海道一个小而陡峭的森林流域碳排放的影响比较

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摘要

We measured the carbon discharge from a small, forested watershed that is covered with deep snow in winter. Snowmelt and rainfall both cause high flows, and we compared their effect on carbon discharge characteristics. The particulate organic carbon (POC) concentration was stable (around 5 mgC/l) at times of low flow and increased rapidly during high flow periods. The maximum POC concentration exceeded 80 mgC/l during rainfall, but it did not exceed 20 mgC/l during snowmelt, even though the rate of water discharge was high for both events. The dissolved organic carbon (DOC) and dissolved inorganic carbon (DIC) concentrations fluctuated seasonally, and also temporarily during high flow events. The DIC concentration decreased from 4·0 to 1·4 mgC/l as the spring thaw progressed. It increased progressively to a high of 7 mg/l in August and September, and then gradually decreased again. The DOC increased rapidly from 2 to 4 mg/l at the beginning of the thaw, then plunged to 2 mg/l when the snowpack disappeared. It increased from July until October (>5 mgC/l) and then decreased once more. The DOC and DIC concentrations were not clearly synchronized during the snowmelt. During rainfall, the DIC concentration decreased in rising limbs of the hydrograph and increased in falling limbs, whereas the reverse was the case for the DOC concentration. In late November, however, both the DOC and DIC concentrations decreased with increasing water discharge. Values for the annual transport of water, POC, DIC, and DOC were 925 mm, 21 kgC/ha, 19 kgC/ha, and 33 kgC/ha, respectively. The fractions transported during the snowmelt, which spanned 62 days, were 69% for water, 54% for POC, 58% for DIC, and 65% for DOC. Excluding the snowmelt period, the fractions transported in the peak 15 days were 38% for water, 63% for POC, 30% for DIC and 46% for DOC. We discuss the effects of snowpack and of respiration by roots and heterotrophs on the carbon discharge patterns of the watershed. Copyright © 1999 John Wiley & Sons, Ltd.
机译:我们测量了一个小森林小流域的碳排放,该小流域在冬天被深雪覆盖。融雪和降雨都会引起高流量,我们比较了它们对碳排放特征的影响。低流量时颗粒有机碳(POC)浓度稳定(约5 mgC / l),高流量时迅速增加。降雨期间最大POC浓度超过80 mgC / l,但融雪期间最大POC浓度不超过20 mgC / l,即使两次事件的排水速率都很高。溶解的有机碳(DOC)和溶解的无机碳(DIC)的浓度会季节性波动,在高流量事件中也会暂时波动。随着弹簧解冻的进行,DIC浓度从4·0降至1·4 mgC / l。它在8月和9月逐渐增加到7 mg / l的高点,然后又逐渐下降。融化开始时,DOC从2 mg / l迅速增加到4 mg / l,然后当积雪消失时降至2 mg / l。它从7月到10月增加(> 5 mgC / l),然后再次下降。在融雪期间,DOC和DIC浓度没有明显同步。在降雨期间,DIC浓度在水文测量仪的上升肢中下降,而在下降肢中上升,而DOC浓度则相反。然而,在11月下旬,DOC和DIC浓度均随着排水量的增加而下降。水,POC,DIC和DOC的年运输量分别为925 mm,21 kgC / ha,19 kgC / ha和33 kgC / ha。融雪期间(共62天)运输的水分量为69%,POC 54%,DIC 58%和DOC 65%。除融雪期外,高峰15天的运输分数为:水38%,POC 63%,DIC 30%和DOC 46%。我们讨论了积雪和根与异养生物呼吸对流域碳排放模式的影响。版权所有©1999 John Wiley&Sons,Ltd.

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    Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyohira‐ku Sapporo 062‐8516 Japan. Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyahira‐ku Sapporo 062‐8516 Japan.;

    Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyohira‐ku Sapporo 062‐8516 Japan;

    Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyohira‐ku Sapporo 062‐8516 Japan;

    Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyohira‐ku Sapporo 062‐8516 Japan;

    Hokkaido Research Center Forestry and Forest Products Research Institute Hitsujigaoka‐7 Toyohira‐ku Sapporo 062‐8516 Japan;

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  • 正文语种 eng
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  • 关键词

    dissolved inorganic carbon (DIC); dissolved organic carbon (DOC); particulate organic carbon (POC); snowmelt; forested watershed;

    机译:溶解无机碳(DIC);溶解有机碳(DOC);颗粒有机碳(POC);融雪;森林分水岭;

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