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Genesis, classification and human modification of peat and mineral-organic soils, Hula Valley, Israel.

机译:以色列呼拉河谷的泥炭和矿物有机土壤的成因,分类和人类改造。

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In the last six decades, the pedosphere of the Hula Valley, Israel, has been subjected to major management changes that have led to intense soil alterations. From a thriving East Mediterranean wetland complex characterised by peat and mineral-organic soils, it was converted in the 1950s to intensively cultivated farmland. After four decades of cultivation with numerous agro-technical difficulties and environmental problems, the least fertile soils were re-flooded to form a small lake called Agmon. Construction of Lake Agmon raised the water table in the surrounding soils, creating new hydrogeochemical conditions that changed the pH, redox potential, adsorption-desorption characteristics, rate of organic matter oxidation and soil structure. In this article, we review the history of pedological research in this area, discuss the various soil classification schemes devised at different times before and after drainage, and present a case against an attempt to produce new soil maps because frequent land-use changes and continuous internal soil processes make them rapidly inaccurate. For future land use planning and management, we recommend adapting aprobability-based approach that models the values of continuous soil attributes, produces probability maps and quantifies the acceptance of uncertainty.
机译:在过去的六十年中,以色列的呼啦谷地圈受到了重大管理变更,导致土壤发生了剧烈变化。从蓬勃发展的以泥炭和矿物有机土壤为特征的东地中海湿地综合体,到1950年代它被转变为集约耕地。经过四十年的耕种,农业技术困难和环境问题倍增,最不肥沃的土壤被重新淹没,形成了一个叫做Agmon的小湖。阿格蒙湖的建设提高了周围土壤的地下水位,创造了新的水文地球化学条件,从而改变了pH值,氧化还原电位,吸附-解吸特性,有机物氧化速率和土壤结构。在本文中,我们回顾了该地区的土壤学研究的历史,讨论了排水前后在不同时间设计的各种土壤分类方案,并提出了反对尝试制作新的土壤图的尝试,因为土地使用变化频繁且持续不断。内部土壤过程使它们迅速变得不准确。对于将来的土地利用规划和管理,我们建议采用基于概率的方法,该方法可对连续土壤属性的值进行建模,生成概率图并量化对不确定性的接受程度。

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