Effects of Automobile Battery Wastes Disposal on Soil Health Indices

None Oyetayo, A. M., None Seyifunmi, E. O., None Omotayo, F. J., None Olaitan, S. K.
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Abstract

This study was designed to assess the impact of automobile battery waste disposal on the indices of soil health and fertility. Soil samples were collected from three major mechanic villages in Akure and Owo in Ondo State. The physicochemical parameters were analyzed using standard methods while the heavy metal content was assessed using a spectrophotometer. Also, the microbial population was determined using the pour plate method and some biochemical tests. The results show that the soil sample from Owo had the least total bacterial count of 65.10x 105 CFU/g) while the sample from Akure 2 had the highest bacterial count of 185.50 x 105 CFU/g. The probable organisms isolated from the samples were Klebsiella spp, Escherichia spp, Staphylococcus spp, Proteus spp, Pseudomonas spp, Bacillus spp, Serratia spp and Enterobacter spp. There were significant differences between the physicochemical parameters of the contaminated soil samples and the uncontaminated control soil. The electrical conductivity of the contaminated soil samples (1.20, 0.92 and 0.38) was higher significantly (p<0.05) than the uncontaminated (0.21) soil sample. The pH values were acidic (4.57) compared with the control (7.42). Other indices like C, Ca. CEC and bulk density among others have values that were different significantly (P<0.05) between the contaminated soil and the control. In addition, the levels of heavy metals such as Lead, Cadmium and Chromium in the contaminated soil were significantly higher than in the control soil sample. The study confirms that the health indicators of the battery waste-receiving soil in the studied area are highly compromised therefore it may need remediation to reduce soil pollution.
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汽车电池废弃物处理对土壤健康指标的影响
本研究旨在评估汽车电池废弃物处理对土壤健康和肥力指标的影响。从翁多州阿库尔和奥沃的三个主要技工村收集了土壤样本。用标准方法分析理化参数,用分光光度计测定重金属含量。用倾板法和生化试验测定了微生物的数量。结果表明,乌沃土壤样品细菌总数最少,为65.10 × 105 CFU/g,阿库尔2号土壤样品细菌总数最高,为185.50 × 105 CFU/g。检出的可能病原菌有克雷伯氏菌、埃希氏菌、葡萄球菌、变形杆菌、假单胞菌、芽孢杆菌、沙雷氏菌和肠杆菌。污染土壤样品的理化参数与未污染对照土壤差异显著。土壤污染样品的电导率(1.20、0.92和0.38)显著高于未污染样品(0.21)(p < 0.05)。pH值为酸性(4.57),高于对照(7.42)。污染土壤的C、Ca、CEC、容重等指标与对照差异显著(P<0.05)。此外,污染土壤中铅、镉、铬等重金属含量显著高于对照土壤样品。研究证实,研究区电池废物接收土壤的健康指标受到严重损害,因此可能需要进行修复以减少土壤污染。
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