首页> 外文期刊>International Journal of Environmental Science and Technology >Seasonal distribution of cadmium among components of sewage treatment ponds: an eco-tech for heavy metal remediation.
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Seasonal distribution of cadmium among components of sewage treatment ponds: an eco-tech for heavy metal remediation.

机译:污水处理池中镉的季节性分布:一种用于重金属修复的生态技术。

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The study was designed to quantify cadmium accumulation in different components of sewage treatment ponds during different seasons and to assess risk for human consumption perspective. The study estimated cadmium concentration in water, sludge, Eichhornia, plankton and tilapia fish from anaerobic, facultative, maturation-1 and -4 ponds during pre-monsoon, monsoon and post-monsoon periods. It resulted that cadmium accumulated among different components of anaerobic, facultative, maturation-1 and -4 ponds ranging 0-18, 0-10, 0-7 and 0-15.4 ppb, respectively. During monsoon, highest accumulation was observed in tilapia in both facultative and maturation ponds, but during post-monsoon, plankton community showed highest value in all. The highest bio-magnification of cadmium was recorded during monsoon with varying degrees (facultative pond: 4.39, maturation pond-1: 3.03 and maturation pond-4: 7.08). Cadmium concentration in tilapia lied within WHO's safe level and may be recommended for human consumption. The concentration of cadmium was estimated by Flame Atomic Absorption Spectrophotometer. The above findings occurred due to chelation, adsorption and sedimentation, absorption and bio-accumulation, ionization, leaching through sediment and rainfall. Water pH (6.7-8.8), dissolved oxygen (0-17 mg L-1), total solids (251-650 mg L-1), iron (Fe2+) concentration (0.61-4.87 mg L-1) and sedimentation rate (278.9-2,409.6 g day-1 m-3) were conducive for the distribution of cadmium into different ecosystem components of treatment ponds. These ponds reclaimed 28.57-61.11% of sewage-cadmium and may be promoted as a low-cost eco-tech for sewage treatment.
机译:该研究旨在量化不同季节下污水处理池不同组成部分中镉的积累,并从人类食用角度评估风险。该研究估计了季风前,季风后和季风后期间厌氧,兼性,成熟-1和-4池塘的水,污泥,凤眼鱼,浮游生物和罗非鱼中的镉浓度。结果表明,镉分别在0-18、0-10、0-7和0-15.4 ppb的厌氧,兼性,成熟-1和-4池塘的不同成分之间积累。在季风期间,在兼性和成熟池塘的罗非鱼中观察到了最大的积累,但是在季风之后,浮游生物群落的价值最高。季风期间镉的生物放大倍数最高,变化程度不同(人工池塘:4.39,成熟池塘-1:3.03和成熟池塘-4:7.08)。罗非鱼中的镉浓度处于WH​​O的安全水平之内,可能被建议用于人类消费。通过火焰原子吸收分光光度计估算镉的浓度。上述发现是由于螯合,吸附和沉淀,吸收和生物积累,电离,沉积物和降雨浸出。水的pH值(6.7-8.8),溶解氧(0-17 mg L -1 ),总固体(251-650 mg L -1 ),铁(Fe < sup> 2 + )浓度(0.61-4.87 mg L -1 )和沉降速率(278.9-2,409.6 g day -1 m -3 )有利于镉在处理池的不同生态系统成分中的分布。这些池塘回收了污水中镉的28.57-61.11%,可以作为污水处理的低成本生态技术推广。

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