尼日利亚干旱地区境内流离失所者 (IDP) 营地水产养殖用地下水井的细菌学和物理化学评估

O. Nurudeen, A. O. Olusegun
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摘要

背景和目标:增强迈杜古里市流离失所者的养鱼能力需要良好的水质供应才能成功,而这一点在文献中却很难找到。因此,本研究评估了博尔诺州迈杜古里主要国内流离失所者营地地下水井的物理化学和细菌学特征。材料和方法:从每个营地的水井中采集水样:教师村、农场中心、Al-Maskin、Bolori Kasua 和国家青年服务团(NYSC)的井水样本均以一式三份的形式采集,并采用标准方法进行理化和细菌分析。数据采用描述性统计和方差分析(α 0.05)进行分析。结果:除溶解氧(3.60±1.15 至 4.50±0.42 mg L G 1)和碱度(30.25±10.18 至 31.93±9.24 mg L G 1)外,水样的理化指标均在标准限值范围内。镉(0.01±0.01 至 0.04±0.05 mg L G 1)、铁(0.08±0.02 至 0.15±0.03 mg L G 1)和锰(0.10±0.03 至 0.12±0.02 mg L G 1)的含量略高于水产养殖的阈值。然而,铅含量(0.16±0.03 mg L G 1)仅在 Al-Maskin 营地较高。此外,所有取样钻孔中的大肠菌群密度(4.33±7.50 至 20.33±18.77 CFU mL G 1)和细菌污染物(33.00±2.64 至 97.66±27.39 CFU mL G 1)均较高。结论研究区域的水除非经过适当处理,否则对养鱼不安全。
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Bacteriological and Physico-Chemical Assessment of Groundwater Boreholes for Aquaculture in Internally Displaced People's (IDPs) Camps in Arid Zone Nigeria
Background and Objective: The empowerment of displaced persons in fish farming in Maiduguri Metropolis requires a good water quality supply for successful operation and this is elusive in literature. This study, therefore, evaluated the physicochemical and bacteriological profile of groundwater boreholes in major IDP camps in Maiduguri, Borno State. Materials and Methods: Water samples from boreholes in each camp: Teacher’s Village, Farm Centre, Al-Maskin, Bolori Kasua and National Youth Service Corps (NYSC) were collected in triplicate for physic-chemical and bacteriological analyses using standard methods. Data generated were analysed using descriptive statistics and ANOVA at α 0.05 . Results: The physic-chemical parameters of the water samples were within standard limit, except dissolved oxygen (3.60±1.15 to 4.50±0.42 mg L G 1 ) and alkalinity (30.25±10.18 to 31.93±9.24 mg L G 1 ). The cadmium (0.01±0.01 to 0.04±0.05 mg L G 1 ), iron (0.08±0.02 to 0.15±0.03 mg L G 1 ) and manganese (0.10±0.03 to 0.12±0.02 mg L G 1 ) values were marginally above the threshold limit for aquaculture. However, lead content (0.16±0.03 mg L G 1 ) was only high at Al-Maskin Camp. Also, there is high coliform density (4.33±7.50 to 20.33±18.77 CFU mL G 1 ) and bacteria contaminant (33.00±2.64 to 97.66±27.39 CFU mL G 1 ) in all the borehole sampled. Conclusion: The water in the study area is not safe for fish culture except properly treated.
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