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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Soil quality and phosphorus status after nine years of organic and conventional farming at two input levels in the Central Highlands of Kenya
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Soil quality and phosphorus status after nine years of organic and conventional farming at two input levels in the Central Highlands of Kenya

机译:在肯尼亚中央高地的两个输入水平下有机和常规农业九年后的土壤质量和磷状态

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Under temperate climate conditions, organic farming systems show improved soil quality compared to non-organic systems, whereas little long-term research on the impact of organic farming on soil quality has been conducted in sub-Saharan Africa. Within the system comparison (SysCom) project, two long-term field experiments were set up in 2007 in the sub-humid Central Highlands of Kenya to compare organic and conventional farming at two input levels (high input systems with recommended rates of nitrogen (N), phosphorus (P) and pesticides and with irrigation vs. rain-fed low input systems with low N, P and pesticides), with a similar design at both sites. The two sites differ mainly in their inherent soil properties and in the amount and distribution of rainfall. At the end of each three-year crop rotation period, we analyzed a set of chemical, biological and physical soil quality parameters in 0-20 cm soil depth. After nine years, microbial parameters seemed to have reached a steady state, whereas chemical parameters were still changing. Most soil quality parameters were highest under the high input organic farming system. The high input conventional system performed well in preserving several soil quality indicators, but a trend for acidification and the lack of soil carbon build-up raise concerns about the long-term sustainability of the system. Low input organic and conventional farming systems did not improve soil quality and even showed decreasing trends in several chemical parameters. Total and available P accumulated over time, especially in both high input systems, suggesting increasing risks of losses to the environment. Pronounced site effects revealed strong interactions with pedo-climatic conditions, with soil quality under high input organic farming improving to a greater extent at the site with more favorable conditions. Besides effects on soil quality, important criteria for sustainable input levels are thus the general availability of inputs, resulting nutrient input output budgets as well as interactions of inputs with inherent soil properties.
机译:在温带气候条件下,有机农业系统与非有机系统相比,土壤质量提高,而有机养殖对土壤质量的影响几乎没有长期研究已经在撒哈拉以南非洲进行。在系统比较(SYSCOM)项目中,2007年在肯尼亚的潜水中心高地建立了两个长期现场实验,以比较两种输入水平的有机和常规农业(高输入系统,具有推荐氮气率的氮气率(n ),磷(P)和杀虫剂以及灌溉与雨喂养的低输入系统,低N,P和杀虫剂),两个站点都有类似的设计。这两个地点主要在其固有的土壤性质和降雨量分布中不同。在每次三年作物旋转期结束时,我们分析了一套化学,生物和物理土壤质量参数在0-20厘米的土壤深度。经过九年后,微生物参数似乎已达到稳定状态,而化学参数仍在发生变化。大多数土壤质量参数在高投入有机农业系统下最高。高输入常规系统在保留了几种土壤质量指标时表现良好,但酸化的趋势和土壤碳积累的缺乏提高了对系统的长期可持续性的担忧。低输入有机和常规农业系统并未提高土壤质量,甚至表现出几种化学参数的趋势。随着时间的推移,累积的总和P,特别是在两个高输入系统中,表明对环境的损失风险增加。明显的现场效果揭示了与进攻条件的强烈相互作用,在高投入有机耕作下具有土壤质量的土壤质量,在该遗址更大程度地改善具有更有利的条件。除了对土壤质量的影响,可持续投入水平的重要标准是输入的一般可用性,产生营养输入产出预算以及具有固有土壤性质的输入的相互作用。

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