阿南布拉州Awka市Nnamdi Azikiwe大学农田土壤和木薯植物理化特征及重金属含量

N. Udeh, A. C. Ikegwuonu, O. A. Okeke, C. Obudulu, K. P. Okafor, C. Egwuagu
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引用次数: 0

摘要

利用原子吸收分光光度计(AAS)分析了从Awka附近Nnamdi Azikiwe大学的农田收集的土壤样本和木薯块茎的重金属水平,以评估过量肥料和汽车排放对环境的污染程度。采用标准方法测定土壤样品的理化性质。土壤pH平均值分别为6.27±0.07、6.10±0.06和6.57±0.03,为微酸性至中性。总有机碳和硝酸盐平均值分别为105.20±6.20、95.75±9.57和94.6±2.27和138.07±12.09、149.35±14.25和149.20±1.17,表明有机质存在。土壤样品中重金属平均含量分别为铅(Pb) 0.01±0.01、0.05±0.03和0.05±0.03,镉(Cd) 0.24±0.16、0.001±0.001和0.001±0.000,铬(Cr) 0.00±0.00、0.010±0.006和0.001±0.001。木薯块茎中铅(Pb)的平均含量分别为0.001±0.001、0.001±0.001和0.005±0.005,镉(Cd)的平均含量分别为0.000±0.000、0.0003±0.0003和0.000±0.000,铬(Cr)的平均含量分别为0.002±0.002、0.000±0.000和0.002±0.002。土壤和木薯样品中重金属含量均呈Pb> Cr > Cd丰度趋势。土壤和木薯样品中除pH值外,重金属含量和理化参数均无显著变化;这表明所研究的土壤中重金属富集程度较低。根据研究,下列重金属(Pb、Cd和Cr)均在食品法典的最高允许限度内,除了科学村的土壤镉超出食品法典的最大允许限度0.1mg/l或ppm。总体结果表明,农田(土壤和木薯块茎)似乎没有中毒或某些金属富集,对农业用途是安全的,对人类健康和消费也是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physicochemical Characteristics and Heavy Metals Contents in Soils and Cassava Plants from Farmlands within Nnamdi Azikiwe University, Awka, Anambra State
Soil samples and cassava tubers collected from farmlands within Nnamdi Azikiwe University, Awka vicinity were analyzed for their heavy metal levels using Atomic Absorption Spectrophotometer (AAS) in order to assess their levels of contamination on the environment as a result of excessive fertilizers and automobile emission. Physiochemical properties of the soil samples were determined using standard methods. The soil pH had a mean value of 6.27 ± 0.07, 6.10 ± 0.06 and 6.57 ± 0.03 respectively indicating that the soils were slightly acidic to neutrality. Total organic carbon and nitrate mean values were 105.20 ± 6.20, 95.75 ± 9.57 and 94.6 ± 2.27 and 138.07 ± 12.09, 149.35 ± 14.25 and 149.20 ± 1.17 respectively showing presence of some organic matters. The mean levels of heavy metals in the soil samples were 0.01 ± 0.01, 0.05 ± 0.03 and 0.05 ± 0.03 for lead (Pb), 0.24 ± 0.16, 0.001 ± 0.001 and 0.001 ± 0.000 for cadmium (Cd) and 0.00 ± 0.00, 0.010 ± 0.006 and 0.001 ± 0.001 for chromium (Cr). These metals levels were in the abundance trend of Pb>Cd> Cr. The mean metal concentrations obtained in the cassava tubers respectively were 0.001 ± 0.001, 0.001 ± 0.001 and 0.005 ± 0.005 for lead (Pb), 0.000 ± 0.000, 0.0003 ± 0.0003 and 0.000 ± 0.000 for cadmium (Cd) and 0.002 ± 0.002, 0.000 ± 0.000 and 0.002 ± 0.002 for chromium (Cr). These metals levels were in the abundance trend of Pb> Cr > Cd. For both the soil and cassava samples, there were no significant variations in the heavy metal concentrations and also in physicochemical parameter except for pH; this showed that there is low heavy metal enrichment in the soils studied. Based on the study, the following heavy metals (Pb, Cd, and Cr) falls within the Codex maximum permissible limits 0.1mg/l or ppm expect soil cadmium in science village which is above the Codex limit. The overall results showed that the farmlands (on soils and cassava tuber) appear to be free from poisoning or some metal enrichment and safe for agricultural purposes and also safe for human health and consumption.
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