首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Structure liming enhances aggregate stability and gives varying crop responses on clayey soils
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Structure liming enhances aggregate stability and gives varying crop responses on clayey soils

机译:结构估计增强了聚集稳定性,并对粘土土壤进行不同的作物反应

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It has been suggested that liming can improve soil structure and thereby decrease losses of particles and associated nutrients. In this study, two types of structure lime, slaked lime (Ca(OH)(2)) and a mixed product of calcium carbonate (CaCO3) and slaked lime (Ca(OH)(2)), were applied at three different rates in field trials on clayey soils (23%-40% clay). A combination of primary tillage and structure liming was also studied, in a split-plot trial on a clayey soil (25% clay). Aggregate (2-5mm) stability, measured as reduction in turbidity (which is strongly correlated with losses of particulate phosphorus), was significantly increased with the highest application rates of both structure lime products. Aggregate size distribution was also improved with structure lime, creating a finer tilth in the seedbed. Yield response to structure lime was not consistent, with both negative and positive responses over the four-year study period. Positive yield responses can possibly be attributed to the finer tilth preventing evaporation in two dry growing seasons. Negative yield responses were probably an effect of impaired phosphorus availability associated with limited precipitation in May-July in 2011 and 2013. Two years after liming, soil pH levels were significantly elevated in plots with the highest application rate of structure lime, whereas no significant increases were found three years after liming. However, a lingering effect of liming was still detectable, as manganese concentration in barley grain was significantly lower in plots with the highest application rates of both structure lime products in the fourth study year. These results indicate that structure liming can be used as a measure to mitigate phosphorus losses from clayey soils, thereby preventing eutrophication of nearby waters. However, the yield response was varying and unpredictable and thus further investigations are needed to determine the circumstances in which field liming can act efficiently not only to prevent phosphorus losses, but also to ensure consistent yield increases.
机译:有人提出,黎明可以改善土壤结构,从而降低颗粒和相关营养物的损失。在该研究中,两种类型的结构石灰,甲酸石灰(Ca(OH)(2))和碳酸钙(CaCO 3)和纤维石灰的混合产物(Ca(OH)(2)),以三种不同的速率施用粘土土壤的现场试验(粘土23%-40%)。在粘土土壤(25%粘土)上的分裂点试验中还研究了初级耕种和结构拟林的组合。聚集(2-5mm)稳定性,测量为浊度的减少(与颗粒磷损失强烈相关),具有两种结构石灰产品的最高应用速率。结构石灰还改善了聚集体尺寸分布,在苗床上产生更好的蒂。对结构石灰的产量反应并不一致,在四年的研究期间具有负性和正反应。阳性产量反应可能归因于两种干燥生长季节中的细粒蒸发。阴性收率应对可能是与2011年5月至2013年5月至2013年5月至2013年5月至2013年磷的磷的可用性受损的效果。黎明后两年,土壤pH水平在结构率最高的施用率最高的地块中显着升高,而没有显着增加在黎明三年后被发现。然而,仍然可以检测到跛行的挥之不去的效果,因为在第四研究年度,在大麦颗粒中的锰浓度显着降低了具有最高的施用率的最高施用率。这些结果表明,结构跛行可用作减轻粘土土壤磷损失的措施,从而防止附近水的富营养化。然而,产量反应变化,因此需要进一步的调查来确定现场跛行可以有效起动的情况,不仅可以预防磷损失,还可以确保一致的产量增加。

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