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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders farming system in Ethiopia
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Assessing soil chemical and physical property responses to deforestation and subsequent cultivation in smallholders farming system in Ethiopia

机译:评估埃塞俄比亚小农耕作系统对森林砍伐和随后耕种的土壤化学和物理特性响应

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摘要

In Ethiopia land degradation in the forms of soil erosion and declining soil fertility are serious challenges to agricultural productivity and economic growth. Despite the general recognition of the threat from land degradation on agricultural productivity, few studies have been made to quantify the extent, rate and process of soil fertility depletion under various land use systems and management practices in the country. In this study we assessed soil chemical and physical property responses to deforestation and subsequent cultivation along a chronosequence of closely located farmlands of different ages (7, 10, 26, 34 and 53 years) since conversion from a tropical dry Afromontane natural forest in Ethiopia. These properties were compared with soil properties under an adjacent natural forest. The changes were used as indicators to evaluate the sustainability of the farm management. All the soils in the study were Mollic Andosols/Humic Haplustands. Soil bulk density (g cm-3) in the 0-10 and 10-20 cm soil layers increased significantly while percent pore space decreased significantly in a continuum with increasing cultivation period. Soil C and total N contents (g ka-1) in the 0-10 cm soil layer declined significantly and exponentially with increasing years under cultivation. However, in the 10-20 cm soil layer both soil C and total N on the farmlands were significantly higher until after 34 years of continuous cultivation compared to the same soil layer under the natural forest. Consequently, the soil C stock (g m-2) of the upper 0.20 m mineral soil was not significantly lower on the farmlands until after 26 years of continuous cultivation compared to the natural forest soil. Available P and K (mg kg-1) in the 0-10 cm layer were higher in the soils of the farmlands throughout the 53 years of continuous cultivation compared to the soil under the natural forest. Exchangeable Ca, CEC and base saturation in the 0-10 cm soil layer declined more or less throughout the Cultivation period while in the 10-20 cm soil layer they followed the patterns of soil C of that depth. Generally, the magnitudes and rates of degradation of the soil properties following conversion and subsequent cultivation were lower than expected for a low input tropical farming system as the one investigated. Nevertheless, almost all soil quality attributes showed overall declining trends in the long perspective. This continuous decline, albeit slowly, in soil quality with increasing cultivation period indicated that the present land management is not sustainable. Therefore, improved management is imperative to sustain the soil quality and maintain long-term productivity of the farmlands. Copyright 2004 Elsevier B.V. All rights reserved.
机译:在埃塞俄比亚,以土壤侵蚀和土壤肥力下降的形式的土地退化对农业生产力和经济增长构成了严峻挑战。尽管人们普遍认识到土地退化对农业生产力的威胁,但很少进行研究来量化该国各种土地利用系统和管理实践下土壤肥力消耗的程度,速度和过程。在这项研究中,我们评估了自埃塞俄比亚的热带干旱Afromontane天然林转换以来,不同年龄(7、10、26、34和53年)位置紧密的不同农田的时序变化对森林砍伐和后续耕作的土壤化学和物理特性响应。将这些特性与相邻天然林下的土壤特性进行了比较。这些更改被用作评估农场管理可持续性的指标。该研究中的所有土壤均为软体动物的雄甾烷/腐殖质。随着耕作期的增加,0-10和10-20 cm土壤层的土壤容重(g cm-3)显着增加,而孔隙空间百分比显着降低。随着耕种年限的增加,0-10 cm土层中的土壤碳和总氮含量(g ka-1)呈显着下降趋势。但是,在10-20厘米的土壤层中,与天然林下的同一土壤层相比,耕作前的土壤C和总氮在连续耕种34年后均显着提高。因此,直到连续耕种26年之后,与天然林地土壤相比,直到0.20 m上部矿质土壤的土壤碳储量(g m-2)在农田中才显着降低。与天然林下的土壤相比,连续53年耕作的53年间,农田土壤中有效磷和钾(mg kg-1)较高。在整个耕作期中,0-10厘米土壤层中可交换的Ca,CEC和碱饱和度或多或少下降,而在10-20厘米土壤层中,它们遵循该深度的土壤C模式。通常,转化和随后的耕作后,土壤特性的退化幅度和降解速率低于低投入的热带耕作系统所预期的水平。然而,从长远来看,几乎所有土壤质量属性都显示出总体下降趋势。随着耕种时间的延长,土壤质量的这种持续下降(尽管缓慢)表明了目前的土地管理是不可持续的。因此,必须改善管理以维持土壤质量并保持农田的长期生产力。版权所有2004 Elsevier B.V.保留所有权利。

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