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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Investigation of Soil Property Changes and Olive Tree Stress as Caused by Excessive Sewage-Sludge Application.
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Investigation of Soil Property Changes and Olive Tree Stress as Caused by Excessive Sewage-Sludge Application.

机译:过量施用污泥引起的土壤性质变化和橄榄树应力的调查。

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This study was undertaken to assess the impact of a single excessive sludge application (300 Mg ha-1) on the soil surface of an olive orchard several years after the event. Selected soil properties were compared in two soil profiles, one in the sludge-amended field and another in an adjacent unamended field of naturally growing trees. Leaf analysis included macronutrients [nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg)], trace elements [copper (Cu), zinc (Zn), manganese (Mn), iron (Fe), nickel (Ni), boron (B)], and isotopic composition (t 15N and t 13C). Soil pH and other chemical properties were increased in the surface soil and the root zone of the sludge-treated profile in comparison to those of the untreated control. The multifold increase of Bray P and nitrates indicated a serious risk for dissolved phosphates in runoff and nitrate contamination of groundwater. Trace-element content also increased, but not greater than the critical soil concentration. Olive trees responded to excessive sludge application by increased N uptake as evidenced by increased leaf N content and elevated 15N signal. The increased leaf t 13C signal of the leaves further indicated tree stress in the sludge-amended field during the summer growing season in comparison to the naturally growing control trees. Isotopic composition, leaf nutrient, and trace element concentration did not reveal the causes of leaf tip burning in half of the trees of the sludge-amended field.
机译:该研究旨在评估事件发生数年后,一次过量施用污泥(300 Mg ha-1)对橄榄园土壤表面的影响。在两种土壤剖面中比较了选定的土壤特性,一种是在污泥改良区,另一种是在相邻的自然生长树木未改良区。叶片分析包括大量营养素[氮(N),磷(P),钾(K),钙(Ca),镁(Mg)],微量元素[铜(Cu),锌(Zn),锰(Mn),铁(Fe),镍(Ni),硼(B)]和同位素组成(t 15N和t 13C)。与未处理的对照相比,经污泥处理的表层土壤和根部区域的土壤pH和其他化学性质均得到提高。 Bray P和硝酸盐的多重增加表明径流中溶解的磷酸盐和地下水的硝酸盐污染的严重风险。微量元素含量也增加了,但不超过临界土壤浓度。橄榄树通过增加氮素吸收来应对过量的污泥施用,这可以通过增加叶片氮含量和升高15N信号来证明。与自然生长的对照树相比,叶子的增加的叶t 13C信号进一步表明了在夏季生长季节的污泥改良田中的树木压力。同位素组成,叶片养分和微量元素浓度未揭示污泥改良田地一半树木中叶尖燃烧的原因。

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