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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Soil chemical and physical properties after skidding by rubber-tired skidder in Hyrcanian forest, Iran
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Soil chemical and physical properties after skidding by rubber-tired skidder in Hyrcanian forest, Iran

机译:伊朗Hycanian森林中的橡胶轮胎打滑机打滑后的土壤化学和物理性质

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This study evaluates the effects of ground-skidding operations on the physical and chemical properties of soil at different levels of slope gradient and traffic frequency. Three levels of traffic (four, eight and 16 passes of a rubber tired slddder Timberjack 450 C), and two levels of slope gradients (gentle 20%, and steep >= 20%) were applied in three replicates consequently, 18 plots with 10 m long by 4 m wide were utilized in the study. In each sampling plot, three lines were set up perpendicular to the skidding direction. At three different points on each line (left track, between track and right track) one sample was taken from forest floor and the 0-10 cm soil layer. Soil bulk density, forest floor biomass, organic carbon (OC), nitrogen (N), phosphorus (P), potassium (K) and soil acidity (pH) were affected by traffic frequency and slope gradient. The soil class of our study area in soil classification according to WRB was Combisols. Soil texture was analyzed using the Bouyoucos hydrometer method and was determined to be clay loam along the trails. Soil bulk density was 60% higher in samples taken from skid trails compared with samples taken from an undisturbed area. The average forest floor biomass ranged from 2185 kg ha(-1) to 243 kg ha(-1) on the skid trails, while the respective value was 3335 kg ha(-1) for the undisturbed area. Skidding caused a decrease in the amount of soil OC (by 38%) and the concentrations of N (57%), P (25%), K (31%) and hydrogen ions (33%) compared with undisturbed areas. Increased soil disturbance occurred more markedly with fewer passes on the steeper trail. The dramatic increase in soil disturbance on the skid trail with a slope >20% is presumably associated with the difficulties of skidding on steep terrain. To minimize soil disturbance, skidding should be confined to areas with more gentle slopes and alternative harvesting methods should be used where slope gradients exceed 20%. We hypothesized that skidding can jeopardize the sustainability of forest ecosystems by creating unfavorable changes in soil characteristics and nutrient status. (C) 2015 Elsevier B.V. All rights reserved.
机译:本研究评估了在不同坡度和交通频率下,滑坡作业对土壤理化性质的影响。在三个重复试验中应用了三个流量级别(橡胶疲倦的slddder Timberjack 450 C,分别通过了四,八和十六遍)和两个级别的坡度(柔和度<20%,陡峭度== 20%),共进行了18个样地在研究中使用了10 m长x 4 m宽。在每个采样图中,垂直于打滑方向设置了三条线。在每条线的三个不同点(左轨道,右轨道与右轨道)从森林地面和0-10厘米的土壤层中采集一个样本。土壤容重,林地生物量,有机碳(OC),氮(N),磷(P),钾(K)和土壤酸度(pH)受交通频率和坡度的影响。根据WRB,我们研究区域的土壤分类为Combisols。使用Bouyoucos液体比重计法分析土壤质地,并确定其为沿径迹的黏土壤土。与从未受干扰区域采集的样品相比,从滑道采集的样品的土壤容重高60%。在滑道上,平均林地生物量范围从2185 kg ha(-1)到243 kg ha(-1),而未受干扰区域的相应生物量为3335 kg ha(-1)。与未受干扰的地区相比,打滑导致土壤OC量减少了38%,氮(57%),磷(25%),钾(31%)和氢离子(33%)的浓度降低了。在较陡的山道上,越少越过土层,土壤扰动增加的现象就越明显。坡度大于20%的滑道上土壤扰动的急剧增加,可能与在陡峭地形上打滑的困难有关。为了最大程度地减少对土壤的干扰,应将滑行限制在坡度更平缓的区域,并应使用坡度超过20%的其他收割方法。我们假设打滑会造成土壤特征和养分状况的不利变化,从而危害森林生态系统的可持续性。 (C)2015 Elsevier B.V.保留所有权利。

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