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首页> 外文期刊>British Biotechnology Journal >Bioremediation of Hydrocarbon Polluted MangroveSwamp Soil from the Niger Delta using Organic andInorganic Nutrients
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Bioremediation of Hydrocarbon Polluted MangroveSwamp Soil from the Niger Delta using Organic andInorganic Nutrients

机译:尼日尔河三角洲碳氢化合物污染红树林沼泽土壤的有机和无机营养修复

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Aim: To achieve bioremediation of hydrocarbon impacted mangrove soil using organic (sterile and non-sterile poultry wastes) and inorganic nutrient (NPK).Study Design: Three treatments and the control designs were setup in three replicates and kept in the laboratory at room temperature (28±2°C) throughout the investigation period (6 weeks). Three of the set-ups designated Treatments (SPW, NSPW and NPK) were treated with sterile poultry wastes, non-sterile poultry wastes, nitrogen – phosphorus- potassium, respectively, while the fourth set – up with no treatment were designated control (CTRL). Set ups SPW, NSPW and NPK were designed to determine the effects of sterile poultry wastes, non-sterile poultry wastes and NPK in bioremediation of hydrocarbon polluted soil, respectively. However, the control (CTRL) was designed to determine the contribution made by indigenous (autochthonous) microorganisms and natural attenuation to the soil.Place and Duration of Study: Department of Microbiology, Faculty of Biological Sciences, University of Port Harcourt, Rivers State, Nigeria, between August, 2012 and June, 2013.Methodology: A laboratory-scale study was carried out using organic (sterile and non-sterile poultry wastes) and inorganic nutrient (NPK) to achieve bioremediation of hydrocarbon impacted mangrove soil.Results: In a 42 day study, the sterile poultry wastes (SPW) treated option had an increase in total logarithmic heterotrophic bacterial count from 5.19±0.01 to 7.64±0.08 while non-sterile poultry wastes (NSPW) increased from 5.22±0.11 to 7.65±0.06. The logarithmic heterotrophic bacterial population of the NPK set-up increased from 5.23±0.11 to 7.90±0.10. The untreated set up had its total logarithmic heterotrophic bacterial count increased from 5.14±0.07 to 6.63±0.08. The total logarithmic hydrocarbon utilizing bacteria in SPW, NSPW and NPK treated options increased from 3.70±0.10 to 7.11±0.10, 3.82±0.10 to 7.20±0.10 and 3.93±0.08 to 7.73±0.07, respectively, at which time the corresponding value obtained for untreated increased from 3.63±0.06 to 5.56±0.06. Statistical analyses showed significant difference at p<0.05 level for the four conditions. Several genera of bacteria were isolated as hydrocarbon utilizing bacteria. They include Bacillus sp., Citrobacter sp., Corynebacterium, Escherichia sp., Flavobacterium, Micrococcus, Pseudomonas sp., Salmonella sp. and Vibrio sp. The conductivity values nitrate and phosphate concentrations in SPW, NSPW, and NPK options decreased progressively with slight decrease in the untreated. At day 42, the changes in total petroleum hydrocarbon (TPH) decreased to 498.14±0.01 ppm, 389.42±0.01 ppm, 285.38±0.01 ppm and 1087.00±0.01 ppm in SPW, NSPW, NPK and untreated, respectively.Conclusion: The use of organic sources such as poultry wastes (sterile and non-sterile) and inorganic nutrient (NPK) has shown good promises in the bioremediation of hydrocarbon impacted mangrove soil.
机译:目的:利用有机(无菌和非无菌家禽粪便)和无机养分(NPK)实现对碳氢化合物污染的红树林土壤的生物修复研究设计:三种处理和对照设计分三批进行,并在室温下保存在实验室中在整个调查期间(6周)内(28±2°C)。被指定为处理方法的三个设施(SPW,NSPW和NPK)分别用无菌家禽废物,非无菌家禽废物,氮-磷-钾进行了处理,而第四组-未进行处理的地方被指定为对照(CTRL) )。设计SPW,NSPW和NPK装置分别确定无菌家禽废物,非无菌家禽废物和NPK在碳氢化合物污染土壤的生物修复中的作用。但是,该对照(CTRL)的目的是确定土著(土生的)微生物和自然衰减对土壤的贡献。研究的地点和持续时间:河国哈科特港大学生物科学学院微生物学系,尼日利亚,2012年8月至2013年6月之间。方法:使用有机(无菌和非无菌家禽废物)和无机养分(NPK)进行了实验室规模的研究,以实现对碳氢化合物影响的红树林土壤的生物修复。在一项为期42天的研究中,无菌家禽废物(SPW)处理的对数异养细菌总数从5.19±0.01增加到7.64±0.08,而非无菌家禽废物(NSPW)从5.22±0.11增加到7.65±0.06。 NPK设置的对数异养细菌群体从5.23±0.11增加到7.90±0.10。未经处理的装置的总对数异养细菌总数从5.14±0.07增加到6.63±0.08。经SPW,NSPW和NPK处理的对数碳氢化合物利用细菌总数分别从3.70±0.10增加至7.11±0.10、3.82±0.10至7.20±0.10和3.93±0.08至7.73±0.07,此时获得的对应值未经治疗的从3.63±0.06增加到5.56±0.06。统计分析显示,在四种情况下,p <0.05时有显着差异。分离了几属细菌作为烃利用细菌。它们包括芽孢杆菌属,柠檬酸杆菌属,棒杆菌属,埃希氏菌属,黄杆菌属,微球菌属,假单胞菌属,沙门氏菌属。和弧菌sp。 SPW,NSPW和NPK选项中硝酸盐和磷酸盐的电导率值逐渐降低,而未经处理的则略有降低。在第42天,SPW,NSPW,NPK和未经处理的总石油烃(TPH)的变化分别降至498.14±0.01 ppm,389.42±0.01 ppm,285.38±0.01 ppm和1087.00±0.01 ppm。家禽废物(无菌和非无菌)和无机营养物(NPK)等有机资源在烃污染的红树林土壤的生物修复中显示出良好的前景。

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