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Initial effects of thinning on soil carbon storage and base cations in a naturally regenerated Quercus spp. forest in Hongcheon, Korea

机译:稀疏化对天然再生栎属植物土壤碳储量和碱性阳离子的初步影响。韩国洪川市的森林

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Thinning can affect soil carbon (C) and base cation balances by reducing tree density and altering microclimate and organic matter budget; however, the subsequent changes in soil C and base cation contents after thinning are not well elucidated. Thus, this study investigated the effects of thinning on C storages in soil (at 0–10 cm, 10–20 cm, and 20–30 cm depths) and forest floor and concentrations of soil exchangeable base cations (Ca~(2+), Mg~(2+), K~(+), and Na~(+)). Thinning treatments of different intensities based on the removed basal area (no thinning: control, 15% thinning: T15, and 30% thinning: T30) were applied to a naturally regenerated 31 to 40-year-old Quercus spp. forest. Soil C concentrations at 10–20 cm and 20–30 cm depths were significantly higher in T15 and T30 than in the control after 39 months, but not after 4 months. T15 and T30 treatments seemed to increase soil C storage at 0–30 cm after 39 months, but did not significantly change forest floor C storage after 4 and 39 months. Concentrations of exchangeable K~(+) of T15 and exchangeable base cations except for Ca~(2+) of T30 depth were significantly lower than those of the control at 0–10 cm after 4 months, but not after 39 months. This study shows that thinning treatments on a naturally regenerated Quercus spp. forest could increase soil C concentration after a few years but temporally decrease concentrations of soil exchangeable base cations.
机译:间伐会通过降低树木密度和改变小气候和有机物质的收支而影响土壤碳(C)和碱阳离子的平衡;然而,稀疏后土壤C和碱金属阳离子含量的后续变化尚不能很好地阐明。因此,本研究调查了间伐对土壤中碳储量(0-10 cm,10-20 cm和20-30 cm深度)和森林地面的影响以及土壤可交换基础阳离子浓度(Ca〜(2+))的影响。 ,Mg〜(2 +),K〜(+)和Na〜(+))。基于去除的基底面积对不同强度的稀疏处理(不稀疏:对照,稀疏15%:T15,稀疏30%:T30)应用于天然再生的31至40岁的栎属。森林。 39个月后,T15和T30在10–20 cm和20–30 cm深度处的土壤C浓度显着高于对照,但在4个月后没有升高。 T15和T30处理似乎在39个月后增加了0–30 cm处的土壤C储量,但在4和39个月后并未显着改变林地C的储量。 T15深度的Ca〜(2+)除外,T15的可交换K〜(+)和可交换的碱性阳离子的浓度在4个月后(0〜10 cm)显着低于对照,但在39个月后没有。这项研究表明,对天然再生的栎属植物进行稀疏处理。几年后,森林可以增加土壤碳的浓度,但会暂时降低土壤中可交换的碱性阳离子的浓度。

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