Physical and Chemical Scrutiny of Obizi River in Awka South Local Government Area of Anambra State, Nigeria for Domestic Consumption

E. C. Nwanna, L. Orakwe, E. C. Chukwuma, C. Nwachukwu, C. D. Okpala, J. I. Maduegbuna, H. C. Oyeoka
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Abstract

The Obizi River in the Awka South Local Government Area of Anambra State was examined physically and chemically to evaluate its contamination level and suitability for home use. It is important for recreational, fishing, cooking, drinking, and other applications. Its typical applications for drinking, cooking, fishing, recreational activities and other uses are limited since it flows through a canal that might be contaminated by industrial, agricultural, and other human activities. Nitrate mg/l, nitrite mg/l, magnesium mg/l, zinc mg/l, total dissolved solid (TDS) mg/l, hardness mg/l, sulphate mg/l, phosphate mg/l, alkalinity mg/l, acidity mg/l, sodium mg/l, biological oxygen demand (BOD) mg/l, chemical oxygen demand (COD) mg/l, total suspended solid (TSS) mg/l, TS mg/l, oxygen demand (OD) mg/l, and potassium mg/l are among the parameters that were evaluated. Total dissolved solids (TSS) were calculated as the difference between total solids and total dissolved solids. The zinc and nitrate elements within the samples were measured using the ultraviolet (UV) VIS spectrophotometric method. Sulphate was determined turbidimetrically by the absorption spectrophotometry. Magnesium content, total hardness, and alkalinity were measured through titration. TDS (mg/L) was measured with a Multi-Meter (HI 991300, Hanna Equipments, Romania), potassium and sodium ions were assessed by flame photometric technique, chemical oxygen demand (COD) was identified photometrically using the SpectroQuant Nova 60 COD cell test (Merck) in the range of 10 – 150 mg/L. Biological oxygen demand (BOD) was determined using the OxiDirect BOD system and total suspended solids (TSS) was calculated as the difference between total solids and total dissolved solids. Phosphates were measured using the ascorbic acid method, total solids were estimated gravimetrically, and oxygen demand (OD) was measured on-site using a dissolved oxygen meter JENWAY-3405 (Manufacturer: Barloworld Scientific Ltd., England). To find out if the results were significant or not, the parameters were subjected to an ANOVA single factor analysis. The analysis's conclusion was that the data were statistically not significant. Since nitrate and OD were above the World Health Organization's (WHO) limit while most other physicochemical parameters were below it, the ANOVA result showed that there was no significant difference between the physicochemical characteristics of the water samples. With the exception of nitrite and OD, which are above the WHO limit for domestic drinking water and other purposes, it was discovered that the majority of the physicochemical parameters fell within the organization's water quality standards for these purposes. As a result, the water quality is not good and should not be drunk unless treated.
尼日利亚阿南布拉州阿卡南地方政府辖区奥比齐河的物理和化学检查,供国内使用
对阿南布拉州阿卡南地方政府区的奥比齐河进行了物理和化学检查,以评估其污染程度和是否适合家庭使用。水对娱乐、垂钓、烹饪、饮用和其他用途都很重要。由于其流经的运河可能受到工业、农业和其他人类活动的污染,因此其在饮用、烹饪、钓鱼、娱乐活动和其他用途方面的典型应用受到限制。评估的参数包括:硝酸盐毫克/升、亚硝酸盐毫克/升、镁毫克/升、锌毫克/升、溶解固体总量 (TDS) 毫克/升、硬度毫克/升、硫酸盐毫克/升、磷酸盐毫克/升、碱度毫克/升、酸度毫克/升、钠毫克/升、生物需氧量 (BOD) 毫克/升、化学需氧量 (COD) 毫克/升、悬浮固体总量 (TSS) 毫克/升、TS 毫克/升、需氧量 (OD) 毫克/升和钾毫克/升。总溶解固体 (TSS) 是根据总固体和总溶解固体之差计算得出的。样本中的锌和硝酸盐元素采用紫外线 (UV) VIS 分光光度法进行测量。硫酸盐用吸收分光光度法进行浊度测定。镁含量、总硬度和碱度通过滴定法测量。总溶解氧(毫克/升)用万用表(HI 991300,Hanna Equipments,罗马尼亚)测量,钾离子和钠离子用火焰光度法评估,化学需氧量(COD)用 SpectroQuant Nova 60 COD 细胞测试仪(默克)在 10 - 150 毫克/升范围内进行光度鉴定。生物需氧量(BOD)用 OxiDirect BOD 系统测定,总悬浮固体(TSS)按总固体和总溶解固体之差计算。磷酸盐用抗坏血酸法测定,总固体用重力法估算,需氧量(OD)用溶解氧仪 JENWAY-3405(制造商:英国 Barloworld Scientific Ltd.)现场测定。为了确定结果是否显著,对这些参数进行了方差分析和单因素分析。分析得出的结论是,数据在统计上并不显著。由于硝酸盐和 OD 值都高于世界卫生组织(WHO)规定的限值,而其他大多数理化参数都低于该限值,因此方差分析结果表明,水样的理化特性之间没有明显差异。除了亚硝酸盐和 OD 超过世界卫生组织规定的家庭饮用水和其他用途的限值外,大部分理化参数都符合该组织规定的这些用途的水质标准。因此,水质不佳,除非经过处理,否则不应饮用。
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