首页> 外文期刊>Journal of plant nutrition and soil science >Geochemical assessment, distribution, and dynamics of trace elements in urban agricultural soils under long-term wastewater irrigation in Kano, northern Nigeria
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Geochemical assessment, distribution, and dynamics of trace elements in urban agricultural soils under long-term wastewater irrigation in Kano, northern Nigeria

机译:尼日利亚北部卡诺市长期灌溉下城市农业土壤中微量元素的地球化学评估,分布和动态

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摘要

A study was conducted to evaluate the distribution and origin of trace elements (Ti, Fe, Nb, Pb, Rb, Sr, Y, and Zr) in five representative long-term wastewater-irrigated urban vegetable gardens of Kano, Nigeria. Surface-soil concentrations (0-15cm) of Ti (4600-14300 mgkg-1), Fe (4000-31800 mgkg-1), Pb (96-355 mgkg-1), and Y (33-98 mgkg-1) were high compared to mean concentrations in comparable soils elsewhere. However, soil-pollution assessment yielded no evidence of anthropogenic input of the trace elements studied. Indices such as the enrichment factor, the contamination factor, and the geoaccumulation index (Igeo) revealed little to no contamination with trace elements. The Igeo calculated for these metals varied across locations between 0.00 and 0.12 with Nb having the highest Igeo value. Similarly, the contamination factor was low for all metals with the exception of Fe reaching a contamination factor of 4.2 at one location. Geochemical-balance evaluations showed depletion of all trace elements except for Fe which was 176% higher than in a natural uncultivated and unirrigated reference soil. Correlation and factor analyses showed that all determined trace elements likely originated from the same natural sources, which probably are the soil parent material and atmospheric depositions.
机译:进行了一项研究,以评估尼日利亚卡诺的五个具有代表性的长期废水灌溉城市菜园中微量元素(钛,铁,铌,铅,铅,锑,钇和锆)的分布和来源。 Ti(4600-14300 mgkg-1),Fe(4000-31800 mgkg-1),Pb(96-355 mgkg-1)和Y(33-98 mgkg-1)的表面土壤浓度(0-15cm)与其他地方的可比土壤中的平均浓度相比要高。但是,土壤污染评估没有证据表明人为因素是所研究的微量元素。诸如富集因子,污染因子和地质累积指数(Igeo)等指标显示微量元素几乎没有污染。计算出的这些金属的Igeo在0.00到0.12之间变化,其中Nb具有最高的Igeo值。类似地,所有金属的污染因子都很低,唯一的例外是铁在一个位置达到4.2的污染因子。地球化学平衡评估显示除Fe以外的所有微量元素的消耗均比天然的未耕种和未灌溉的参考土壤高176%。相关性和因子分析表明,所有确定的痕量元素可能源自相同的自然资源,这可能是土壤母质和大气沉积物。

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