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Changes in organic matter and residual effect of amendment with two-phase olive-mill waste on degraded agricultural soils

机译:两相橄榄磨坊废料中有机质的变化和对土壤退化土壤的残留效应

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Agricultural soils from many parts of the Mediterranean region are very poor in organic matter and are exposed to progressive degradation processes. Therefore, additions of the olive-mill waste from a continuous two-phase system as an organic amendment can improve soil quality and hence mitigate the negative environmental and agronomic limitations of these soils. A field study under semiarid Mediterranean conditions was conducted to evaluate the changes in organic matter after four consecutive annual additions of olive-mill watery husk (OMWH) waste and the de-oiled two-phase olive pomace (TPOP) waste on an olive grove soil: a cutanic Luvisol (CL). Treatments included a control, OMWH (30 and 60 Mg ha~(-1), DW equivalent), and TPOP (27 and 54 Mg ha~(-1), DW equivalent). Also, a two-year greenhouse study using wheat (Triticum aestivum L.) was conducted to evaluate the residual effects of adding OMWH to CL soil and to a degraded Leptic Cambisol (LC). Treatments included five OMWH rates ranging from 0 to 40 Mg ha~(-1). Significant increases in total organic carbon (TOC), water soluble organic carbon (WSOC), humic and fulvic acids, and aggregate stability were observed in the treated plots, and the highest humification index was obtained when OMWH was applied at the lowest rate. The increase in aggregate stability correlated positively and highly significantly (P< 0.01) with the humic and fulvic acid and WSOC contents. In the greenhouse, significant increases in TOC, carbohydrates, aggregate stability, total N, available K, and cation exchange capacity were observed in both soils. However, available P decreased significantly. There was an increased residual fertilization effect of OMWH for both soils. The best fits to grain yield and OMWH rates were with a linear regression for the CL soil (R~2=0.957 and P< 0.01), and a quadratic regression for the LC soil (R~2=0.960 and P< 0.01).
机译:地中海地区许多地方的农业土壤有机质非常贫瘠,并且处于逐步退化的过程中。因此,从连续两相系统中添加橄榄磨坊废料作为有机改良剂可以改善土壤质量,从而减轻这些土壤的不利环境和农学限制。在地中海半干旱条件下进行了一项野外研究,以评估在橄榄树林土壤上连续四次每年添加橄榄磨房水皮(OMWH)废物和脱油的两相橄榄果渣(TPOP)废物后有机物的变化:角质Luvisol(CL)。处理包括对照,OMWH(30和60 Mg ha〜(-1),DW当量)和TPOP(27和54 Mg ha〜(-1),DW当量)。此外,进行了为期两年的温室研究,使用小麦(Triticum aestivum L.)评估了向CL土壤和降解的枯萎病坎比索(LC)添加OMWH的残留效果。处理包括5种OMWH速率,范围从0到40 Mg ha〜(-1)。在处理过的样地中,总有机碳(TOC),水溶性有机碳(WSOC),腐殖酸和黄腐酸和骨料稳定性显着增加,以最低的比例施用OMWH可获得最高的增湿指数。骨料稳定性的增加与腐殖酸,黄腐酸和WSOC含量呈正相关且高度显着相关(P <0.01)。在温室中,两种土壤中的总有机碳,碳水化合物,团聚体稳定性,总氮,有效钾和阳离子交换量均显着增加。但是,有效磷显着下降。在两种土壤上,OMWH的残留施肥效果都有所提高。 CL土壤的线性回归(R〜2 = 0.957,P <0.01)和LC土壤的二次回归(R〜2 = 0.960,P <0.01)对谷物产量和OMWH率的最佳拟合。

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