首页> 外文期刊>Journal of terramechanics >Ground-based skidder traffic changes chemical soil properties in a mountainous Oriental beech (Fagus orientalis Lipsky) forest in Iran
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Ground-based skidder traffic changes chemical soil properties in a mountainous Oriental beech (Fagus orientalis Lipsky) forest in Iran

机译:地面滑行者交通改变了伊朗多山的东方山毛榉(Fagus Orientalis Lipsky)森林中的化学土壤特性

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摘要

Increased soil compaction following harvest traffic is an inroad for adverse changes in soil biological properties and processes, soil microbial activity, bacterial communities, and growth and development of plant roots. This study investigated the impacts of three levels of traffic intensity (3-6, 7-14, and 15+ passes) of a Timberjack 450C skidder on changes in several chemical soil properties at two levels of skid trail slope gradients (gentle =<20% and steep >20% inclination) in the Hyrcanian forest. Skidding increased soil bulk density between 19% and 39% and, averaged over both slope gradients, reduced amounts of soil organic carbon (33-67%), concentrations of nitrogen (51-80%), phosphorous (0-17%), potassium (11-36%), and hydrogen ions (78-98%) compared to undisturbed areas. Most soil damage occurred after a few skidder passes, particularly on steep slopes that generally experienced the highest level of soil deterioration. The primary mechanism that induced immediate chemical soil changes was an uplift and exposure of deeper soil layers in response to compression and displacement of the former soil surface. Skidding can jeopardize the sustainability of forest ecosystems by creating unfavorable changes in soil characteristics and nutrient status.
机译:采伐后土壤紧实度的增加是土壤生物学特性和过程,土壤微生物活性,细菌群落以及植物根系生长发育的不利变化的一大入侵。本研究调查了Timberjack 450C集材机的三个交通强度水平(3-6、7-14和15+通过)对两个水平的集材坡度(坡度= <20)的几种化学土壤特性的变化的影响。 %且坡度大于20%)。打滑使土壤容重增加了19%至39%,并且在两个坡度梯度上平均,减少了土壤有机碳的数量(33-67%),减少了氮的浓度(51-80%),磷(0-17%),与未受干扰的区域相比,钾(11-36%)和氢离子(78-98%)。大多数土壤损害发生在几条集材机通过之后,特别是在通常经历最高土壤退化程度的陡坡上。引起立即化学土壤变化的主要机制是响应于原土壤表面的压缩和位移,土壤深层的隆起和暴露。集材造成土壤特征和养分状况的不利变化,可能危及森林生态系统的可持续性。

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