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Aqueous chemistry of anthropogenically contaminated Bengaluru lakes

机译:人体污染的孟加拉水化学水化学

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Anthropogenic activities impact the major ion composition of fresh water sources. The inorganic species are likely to be influenced by mineral dissolution, mineral precipitation, redox and ion-exchange reactions in the contaminated lakes. Owing to paucity of research, this study examines the influence of bio-geochemical reactions on the major ion composition of sewage contaminated Bengaluru lakes. The selected lakes represent water bodies in the major valley systems of the city that are polluted by partly treated sewage and stormwater runoffs. Hydrogeochemical facies of the lake samples showed that enrichment of Mg2+, Na+, Cl? and SO42? ions from anthropogenic contamination altered the chemical type of the lake-water. Examination of processes influencing the major ion composition of surface waters indicated that evaporation than rock-weathering tends to influence the chemical composition of the Bengaluru lakes. Precipitation of carbonate minerals in the alkaline pH contributed to the deficiency of alkaline earth ions, while dissolution of anthropogenic gypsum enhanced the SO42? ion concentration of the lakes. Solute diffusion from lake water into the pore solutions of sediments and ion-exchange reactions between monovalent ions of sediments and divalent cations in lake water are additional pathways that influence the major ion composition of the contaminated lakes. Besides alterations in major ion composition, organic contamination, biochemical reactions associated with photosynthesis activity of algae and release of toxic Al3+ ions from mineral dissolution are consequences of the lake contamination.
机译:人为的活动会影响淡水源的主要离子组成。无机物种可能受到矿物质溶解,矿物沉淀,氧化还原和污染湖泊中的离子交换反应的影响。由于研究的缺乏,本研究探讨了生物地球化学反应对污水污染孟加拉湖的主要离子组成的影响。所选湖泊代表了城市主要山谷系统中的水体,这些系统受部分处理的污水和雨水径流污染。湖水样品的水文地球化学相显示,富集Mg2 +,Na +,Cl?和SO42?人为污染的离子改变了湖水的化学类型。对影响表面水域主要离子组成的过程的检查表明,蒸发倾向于影响孟加拉湖的化学成分。碱性pH值中碳酸盐矿物的沉淀有助于碱土离子的缺陷,而人为石膏的溶解增强了SO42?湖泊的离子浓度。从湖水中的溶质扩散进入沉积物的沉积物和离子交换反应的沉积物和湖泊中二价阳离子之间的离子交换反应是影响受污染湖泊的主要离子组成的额外途径。除了主要离子组成的改变,有机污染,与藻类光合作用活性相关的生物化学反应以及来自矿物溶解的有毒Al3 +离子的释放是湖泊污染的后果。

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