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Classifying soils at the ultimate stage of weathering: A continuing challenge for sustainable agromanagement practices in the 21st Century

机译:在风化的终极阶段进行分类土壤:21世纪可持续农业策划的持续挑战

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Oxisols cover approximately 23% of the land surface in the tropics and are utilized extensively for agricultural purposes in the tropical countries. Under the variable input types of agricultural systems practiced locally, some of these soils still appear to have problems in terms of proper soil classification and subsequently, hinder attempts to implement sustainable agro-management protocols. Therefore, the objective of this study is to examine the properties of some Oxisols and closely related soils in order to evaluate the classification of these soils. Soils from several countries in the tropics used in this study. Field observations, water retention differences, apparent CEC of the subsurface horizons, extractable Fe-oxides and external specific surface areas of the clay fractions showed that many kandic horizons have surface properties that are similar to the oxic horizons. Micromorphology indicated that the genetic transition from the argillic to the oxic involves a diminishing expression of the argillic. It is proposed that the Oxisols be keyed out based only on the presence of an oxic horizon. The proposal provides a better basis for the classification of Malaysian soils and the development of meaningful soil management groups for plantations.
机译:Oxisols覆盖了热带地区的大约23%的土地面,并在热带国家广泛用于农业目的。在本地实施的农业系统的可变投入类型下,其中一些土壤仍然似乎在适当的土壤分类方面存在问题,随后,妨碍努力实施可持续的农业管理议定书。因此,本研究的目的是检查一些氧气和密切相关的土壤的性质,以评估这些土壤的分类。来自本研究中使用的热带地区的几个国家的土壤。现场观测,水保留差异,地下视野的明显CEC,可提取的Fe氧化物和粘土级分的外部特异性表面积显示,许多kandic视野具有类似于氧化视野的表面性质。微晶表明,从甘草到氧的遗传转变涉及镁的表达递减。提出,仅基于氧化地平线的存在,脱溶溶剂。该提案为马来西亚土壤的分类提供了更好的基础,以及种植园的有意义土壤管理群体的发展。

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