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Soil Assessment along Toposequences in Rural Northern Nigeria: A Geomedical Approach

机译:尼日利亚北部农村沿土层的土壤评估:一种地球医学方法

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Case numbers of endemic Ca-deficiency rickets (CDR) have been reported to be alarmingly rising among children of subsistence farms in developing countries within the last 30 years. Fluoride toxicities in the environment are known to not be related to the disease. To investigate if, instead, CDR is caused by a nutrient deficiency in the environment, subsistence farms in an endemic CDR area near Kaduna, northern Nigeria, were investigated for bedrock, slope forms, soil types, and soil characteristics. The natural environment was investigated according to the World Reference Base, soil texture was analysed by pipette and sieving, and plant-available macronutrients were determined using barium-chloride or Ca-acetate-lactate extraction. The analyses showed that granite and slope deposits were the dominant parent materials. The typical slope forms and soil types were Lixisols and Acrisols on pediments, Fluvisols in river valleys, and Plinthosols and Acrisols on plains. Compared with West African background values, all of the soils had normal soil textures but were low in macronutrients. Comparisons to critical limits, however, showed that only the P concentrations were critically low, which are typical for savanna soils. A link between nutrient deficiency in soils and CDR in the Kaduna area was therefore considered unlikely.
机译:据报道,在过去的30年中,发展中国家的自给农场儿童中地方性缺钙性ets病(CDR)的病例数量惊人地增加。已知环境中的氟化物毒性与疾病无关。为了研究CDR是否由环境中的营养缺乏引起,对尼日利亚北部卡杜纳附近地方性CDR区域的自给农场进行了调查,调查了基岩,斜坡形式,土壤类型和土壤特征。根据世界基准数据库对自然环境进行了调查,通过移液器和筛分法对土壤质地进行了分析,并使用氯化钡或乙酸钙-乳酸-乳酸提取法确定了植物中可利用的大量营养素。分析表明,花岗岩和斜坡沉积物是主要的母体材料。典型的斜坡形式和土壤类型是山上的Lixisols和Acrisols,河谷中的Fluvisols和平原上的Plinthosols和Acrisols。与西非本底值相比,所有土壤均具有正常的土壤质地,但微量元素含量较低。然而,与临界限值的比较表明,只有P浓度非常低,这对于稀树草原土壤来说是典型的。因此,认为卡杜纳地区土壤养分缺乏与CDR之间没有联系。

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  • 来源
    《Applied and environmental soil science》 |2014年第2014期|628024.1-628024.9|共9页
  • 作者单位

    Institute of Physical Geography, University of Frankfurt, Altenhoeferallee 1, 60438 Frankfurt am Main, Germany;

    Institute of Physical Geography and Landscape Ecology, University of Hannover, Schneiderberg 50, 30167 Hannover, Germany;

    Physical and Environmental Science Department, University of Toronto Scarborough, Military Trail 1265, Toronto, ON, Canada M1C 1A4;

    Institute of Geography and Geology, University of Wuerzburg, Am Hubland, 97084 Wuerzburg, Germany;

    Institute of Physical Geography, University of Frankfurt, Altenhoeferallee 1, 60438 Frankfurt am Main, Germany;

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