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Effects of parent material on soil erosion within Mediterranean new vineyard plantations

机译:母材对地中海新葡萄园种植园土壤侵蚀的影响

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Parent material can determine specific physical and chemical soil properties and, therefore, soil erosion rates. However, for new vine plantations, there is not enough research on soil erosion assessment on different parent materials which could be helpful for agricultural management plans. The main aim of this research was to quantify soil erosion rates of two recent vineyard plantations under similar climate and land use management conditions, but on different parent materials, namely colluvium (2 years old) and marls (8 years old), located within the Les Alcusses valley vineyards in Eastern Spain. To achieve this goal, the ISUM (improved stock unearthing method) was applied. ISUM involves measurements of vertical distances from a horizontally stretched meter band attached to opposite pair vine plants to the topsoil surface at 5 sampling points along the cross sections of the pair vine rows. The original surface level was determined from the fixed distance of 2 cm of the graft unions from the soil surface. Digital elevation modelling of the vertical measurements was used to infer the erosion rates. Annual total soil erosion rates were 87.7 Mg ha(-1) year(-1) and 4.35 Mg ha(-1) year(-1) in the marls and colluvium plots, respectively. For the marls plot, 67% of the depletion occurred in the inter-row areas, whereas for the colluvium plot the inter-row areas registered 4.78 Mg ha(-1) year(-1) depletion and the row areas showed only a deposition of 0.44 Mg ha(-1) year(-1). We hypothesised that the inter-row areas registered the highest erosion rates due to the tillage practices. In the row areas, the cover of the vines possibly reduced soil erosion rates and acted as sinks for sediments. This behaviour of the inter-row areas acting as sources and the row areas as sinks for sediments was more evident on the colluvium plot, while most sections on the marls plot showed intense erosion features. It is suggested that more attention should be paid by policymakers and stakeholders to these differences when new plantations are introduced on marls and colluvium vineyards. We claim that initial soil erosion control measures should be applied during the first few years of plantations instead of when the vineyards are much older and soil has already been mobilised.
机译:母体材料可以确定特定的物理和化学土壤性质,因此,土壤侵蚀率。然而,对于新的葡萄园种植园,对不同母体材料的土壤侵蚀评估并没有足够的研究可能有助于农业管理计划。本研究的主要目的是在类似的气候和土地利用管理条件下量化两个最近葡萄园种植园的土壤侵蚀率,而是在不同的母材上,即在Les Alcusses Valley葡萄园在西班牙东部。为实现这一目标,应用了isum(改进的库存解除方法)。 Isum涉及从沿着一对藤条横截面的横截面的5个采样点,从连接到对面对藤植物的水平拉伸仪表带的垂直距离的测量。原始表面水平由来自土壤表面的2cm的固定距离确定。垂直测量的数字高度建模用于推断侵蚀速率。每年的土壤侵蚀率为87.7 mg ha(-1)年(-1)和4.35 mg ha(-1)玛尔和矛盾和血液图中的-1)。对于Marls Plot,67%的耗尽发生在行区内区域,而对于抗族地区,则排成4.78 mg HA(-1)年(-1)耗尽,行区域仅显示沉积0.44 mg ha(-1)年(-1)。我们假设行际区域由于耕作实践而注册了最高的侵蚀率。在行区域中,藤蔓的盖子可能降低了土壤侵蚀速率,并充当了沉积物的水槽。行为作为源和行区域的行行为,作为沉积物的沉积区域在血管曲线上更明显,而Marls绘图上的大多数部分显示出强烈的侵蚀特征。有人建议,当在Marls和Colluvium Vineyards引入新的种植园时,政策制定者和利益相关者应更多地关注这些差异。我们声称,初始土壤侵蚀控制措施应在原始种植园的前几年而不是当葡萄园更老,土壤已经被调动。

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