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Microbiological and Physicochemical Characteristics of Soil Receiving Palm Oil Mill Effluent in Umuahia, Abia State, Nigeria

机译:尼日亚,尼日利亚,尼日亚州乌瓦亚土壤棕榈油厂土壤的微生物和物理化学特征

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The microbiological and physicochemical characteristics of soil receiving palm oil mill effluent (POME) in Umuahia were investigated. A total of 20 samples were analyzed for total heterotrophic bacterial count, fungal count, hydrocarbon-utilizing bacterial count, hydrocarbon-utilizing fungal count and nitrifying bacterial count. The pour plate technique was used for the isolation of the organisms. The mean total heterotrophic bacterial count ranged from 6.00 ± 0.07Log10cfu/g to 6.13 ± 0.06Log10cfu/g while the effluent and control soil sample were 5.80 ± 0.05Log10cfu/mL and 6.19 ± 0.04Log10cfu/g respectively. The fungal mean count ranged from 3.53 ± 0.02Log10cfu/g to 4.03 ± 0.01Log10cfu/g for contaminated soil and 3.69 ± 0.01Log10cfu/mL for effluent. The mean count for the hydrocarbon-utilizing bacteria ranged from 5.34 ± 0.3Log10cfu/g to 5.96 ± 0.2Log10cfu/g for soil and 5.77 ± 0.06Log10cfu/mL for effluent. Hydrocarbon-utilizing fungal count for the soil ranged from 2.95 ± 0.1Log10cfu/g to 3.23 ± 0.01Log10cfu/g and 3.00 ± 0.00Logcfu/mL for the effluent. The mean count for nitrifying bacteria ranged from 2.90 ± 0.2Log10cfu/g to 3.42 ± 0.1Log10cfu/g for soil and 4.38 ± 0.2Log10cfu/mL for effluent. Results of the physicochemical analysis showed that the pH recorded for contaminated soil and control was 6.1 and 5.5 respectively and 7.2 for the effluent. The mean values for conductivity, oil and grease, phosphate, nitrate, sulphate, calcium, sodium, potassium, magnesium, in contaminated soil were 63.8 ± 5.0?s/cm, 8.1 ± 0.6mg/kg, 3.84 ± 0.1%, 1.50 ± 0.05mg/kg, 0.59 ± 0.01mg/kg, 27 ± 3.0mg/kg, 219 ± 15.0mg/kg, 116 ± 10.0mg/kg, 6.0 ± 0.5mg/kg, 0.85 ± 0.02mg/kg respectively. The mean values for conductivity, oil and grease, phosphate, nitrate, sulphate, calcium, sodium, potassium, magnesium, for the control soil were 46.7 ± 6.0?s/cm, 1.0 ± 0.04mg/kg, 0.93 ± 0.02%, 0.62 ± 0.01mg/kg, 0.33 ± 0.01mg/kg, 13.0 ± 2.0mg/kg,156 ± 10.0mg/kg, 83 ± 4.0mg/kg, 3 ± 0.6mg/kg, 0.52 ± 0.03mg/kg. The mean values of the conductivity, oil and grease, turbidity, chloride, dissolved oxygen, biochemical oxygen demand, chemical oxygen demand, total suspended solids, total dissolved solids, ammonia, phosphate, nitrate and sulphate for the raw effluent were 26.5 ± 3.0?s/cm, 12.3 ± 2.0, 55.0 ± 3.0NTU, 10 ± 1.0mg/L, 1.8 ± 0.2mg/L, 25 ± 2.0mg/L, 60 ± 4.0mg/L, 32 ± 1.0mg/L, 0.35 ± 0.02mg/L, 0.40 ± 0.01mg/L, 0.21 ± 0.01mg/kg, 0.55 ± 0.02mg/kg, 2.0 ± 0.3mg/kg respectively. The results shows that the POME impacts on the soil
机译:研究了Umuahia接受棕榈油磨流出物(Pome)的土壤的微生物和物理化学特性。分析了总异养细菌计数,真菌计数,利用细菌计数,烃利用真菌计数和硝化细菌计数的总型异养细菌计数,真菌计数,烃类药物。倒板技术用于分离生物体。平均总异养细菌计数范围为6.00±0.07LOG10CFU / g至6.13±0.06LOG10CFU / g,而流出物和对照土壤样品分别为5.80±0.05LOG10CFU / mL和6.19±0.04LOG10CFU / g。真菌平均值范围从3.53±0.02LoG10CFU / g到4.03±0.01Log10CFU / g,用于污染的土壤,3.69±0.01Log10CFU / ml用于流出物。烃利用细菌的平均计数范围为5.34±0.3LOG10CFU / g至5.96±0.2LOG10CFU / g,用于土壤和5.77±0.06LOG10CFU / mL的流出物。利用土壤的真菌计数的利用率为2.95±0.1LOG10CFU / G至3.23±0.01LOG10CFU / g和3.00±0.00LOGCFU / ml,用于流出物。硝化细菌的平均计数范围为2.90±0.2LoG10CFU / g至3.42±0.1Log10CFU / g,用于土壤和4.38±0.2升10CFF / ml的流出物。物理化学分析结果表明,污染的土壤和对照的pH分别为6.1和5.5,流出物分别为7.2。导电性,油和油脂,磷酸盐,硝酸盐,硫酸盐,钙,钠,钾,镁,污染土壤的平均值为63.8±5.0?S / cm,8.1±0.6mg / kg,3.84±0.1%,1.50± 0.05mg / kg,0.59±0.01mg / kg,27±3.0mg / kg,219±15.0mg / kg,116±10.0mg / kg,6.0±0.5mg / kg,分别为0.85±0.02mg / kg。对照土壤的电导率,油和油脂,磷酸盐,硝酸盐,硫酸盐,钙,钠,钾,镁,用于对照土壤的平均值为46.7±6.0?S / cm,1.0±0.04mg / kg,0.93±0.02%,0.62 ±0.01mg / kg,0.33±0.01mg / kg,13.0±2.0mg / kg,156±10.0mg / kg,83±4.0mg / kg,3±0.6mg / kg,0.52±0.03mg / kg。导电性,油脂和润滑脂,浊度,氯化物,溶解氧,生物化学需氧量,化学需氧,总悬浮固体,总溶解固体,氨,磷酸盐,硝酸盐和硫酸盐的均值,脂肪化,氧化物需求,总溶解的固体,硫酸盐的含量为26.5±3.0? S / cm,12.3±2.0,55.0±3.0NTU,10±1.0mg / L,1.8±0.2mg / L,25±2.0mg / L,60±4.0mg / L,32±1.0mg / L,0.35± 0.02mg / L,0.40±0.01mg / L,0.21±0.01mg / kg,0.55±0.02mg / kg,分别为2.0±0.3mg / kg。结果表明,沼泽对土壤的影响

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