Geochemical Signatures of Bara Basin Aquifers, Kordofan State, Sudan

S. H. Mohamed, Hamed Mangoshi Mangoshi, Salah M. Mahgoub, Abuagla Y. Ahmed
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Abstract

Purpose: In this paper, geochemical investigation has been carried out to study the concentrations of major cations; Sodium (Na+), Potassium (K+), Magnesium (Mg2+), and Calcium (Ca2+), and major anions; Chloride (Cl-), Bicarbonate (HCO3-), Nitrate (NO3-) and Sulphate (SO42-), other parameters such as (pH), Electric conductivity and T.D.S were also studied in all water samples taken from wells in Bara basin. Methodology: Forty five (45) water samples have been collected from wells. Lab works were done at Groundwater and Wadis Directorate (GWD), Khartoum State according to Sudanese Standards and Metrology Organization, (2002), to study the major cations and major anions. Findings: The results revealed that the average value of pH was (7.9) E.C values were (843.4 μS/cm) and T.D.S values were (59 mg/l). The average concentrations of the major cations obtained were; Na+ (126.3), K+ (5.22), Mg2+ (28.30), Ca2+(66.41) and the major anions (mg/l) were; Cl- (159.00), HCO3- (165.30), NO3- (156.70) and SO42- (164.70). The (Na/Cl) ratio is (2.47) is also high which reflects the abundance of (Na+) ions relative to the Chloride (Cl-) ions which confirmed the light-salty nature of groundwater. Geochemical mass balance calculations indicate that upper aquifer is mainly affected by the dissolution and dolomitization processes of major anions. Unique Contribution to Theory, Policy and Practice: This process is highly developed in the central west part of the basin due to the abundance of Sulphate (SO42-), Bicarbonate (HCO3-), Magnesium (Mg2+), and Calcium (Ca2+) ions. High values of E.C, T.D.S, Ca2+, and SO42- are mainly presents as a saline water resource  in some villages. Two types of water are  classified  here these are : i). Na-HCO3 type  and ii). Ca- Cl -SO4 type. The study concluded that water samples from Almakser, Hamdan-2, Um-Zeeraga-2, and Al-Zareeba-2 villages have very high concentrations of  E.C, T.D.S Ca2-, Cl-, NO3- and SO42-, which may suggest that water samples are not fit for human consumption, according to guidelins by W.H.O (1984). This paper recommends further study on  water quality.
苏丹科尔多凡州Bara盆地含水层地球化学特征
目的:通过地球化学调查,研究其主要阳离子的浓度;钠(Na+)、钾(K+)、镁(Mg2+)、钙(Ca2+)和主要阴离子;研究了Bara盆地所有井样的氯化物(Cl-)、碳酸氢盐(HCO3-)、硝酸盐(NO3-)和硫酸盐(SO42-)以及其他参数(pH)、电导率和T.D.S)。方法:从井中收集了45个水样。根据苏丹标准和计量组织(2002年),在喀土穆州地下水和瓦迪斯理事会(GWD)进行了实验室工作,以研究主要阳离子和主要阴离子。结果:样品pH平均值为(7.9),E.C值为(843.4 μS/cm), T.D.S值为(59 mg/l)。得到的主要阳离子的平均浓度为;Na+(126.3)、K+(5.22)、Mg2+(28.30)、Ca2+(66.41)和主要阴离子(mg/l);Cl- (159.00), HCO3- (165.30), NO3-(156.70)和SO42-(164.70)。(Na/Cl)比值(2.47)也很高,反映了(Na+)离子相对于氯离子(Cl-)的丰度,证实了地下水的轻咸化性质。地球化学物质平衡计算表明,上部含水层主要受主要阴离子溶解和白云化作用的影响。对理论、政策和实践的独特贡献:由于盆地中西部富含硫酸盐(SO42-)、碳酸氢盐(HCO3-)、镁(Mg2+)和钙(Ca2+)离子,这一过程在盆地中西部高度发达。E.C、T.D.S、Ca2+和SO42-的高值主要表现为部分村庄的咸水资源。这里分为两种类型的水:i) Na-HCO3型和ii) Ca- Cl - so4型。该研究的结论是,来自Almakser、Hamdan-2、Um-Zeeraga-2和Al-Zareeba-2村的水样含有非常高浓度的E.C、T.D.S Ca2-、Cl-、NO3-和SO42-,根据世卫组织(1984年)的指导方针,这可能表明水样不适合人类食用。建议对水质进行进一步的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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