Thakur Lokendra Singh, Mondal Prasenjit
Department of Chemical Engineering, Indian Institute of Technology Roorkee, Uttarakhand, India.
Department of Chemical Engineering, Indian Institute of Technology Roorkee, Uttarakhand, India.
J Environ Manage. 2017 Apr 1;190:102-112. doi: 10.1016/j.jenvman.2016.12.053. Epub 2016 Dec 29.
Co-existence of arsenic and fluoride in groundwater has raised severe health issues to living being. Thus, the present research has been conducted for simultaneous removal of arsenic and fluoride from synthetic groundwater by using electrocoagulation process with aluminum electrode. Effects of initial pH, current density, run time, inter electrode distance and NaCl concentration over percentage removal of arsenic and fluoride as well as operating cost have been studied. The optimum experimental conditions are found to be initial pH: 7, current density: 10 A/m, run time: 95 min, inter electrode distance: 1 cm, NaCl concentration: 0.71 g/l for removal of 98.51% arsenic (initial concentration: 550 μg/l) and 88.33% fluoride (initial concentration: 12 mg/l). The concentration of arsenic and fluoride in treated water are found to be 8.19 μg/l and 1.4 mg/l, respectively, with an operating cost of 0.357 USD/m treated water. Pseudo first and second order kinetic model of individual and simultaneous arsenic and fluoride removal in electrocoagulation have also been studied. Produced sludge characterization studies also confirm the presence of arsenic in As(III) form, and fluoride in sludge. The present electrocoagulation process is able to reduce the arsenic and fluoride concentration of synthetic as well as real groundwater to below 10 μg/l and 1.5 mg/l, respectively, which are maximum contaminant level of these elements in drinking water according to WHO guidelines.
地下水中砷和氟共存给生物带来了严重的健康问题。因此,本研究采用铝电极电凝聚法对合成地下水中的砷和氟进行同步去除。研究了初始pH值、电流密度、运行时间、电极间距和氯化钠浓度对砷和氟去除率以及运行成本的影响。发现最佳实验条件为:初始pH值7、电流密度10 A/m、运行时间95分钟、电极间距1厘米、氯化钠浓度0.71 g/l,此时可去除98.51%的砷(初始浓度550 μg/l)和88.33%的氟(初始浓度12 mg/l)。处理后水中砷和氟的浓度分别为8.19 μg/l和1.4 mg/l,处理每立方米水的运行成本为0.357美元。还研究了电凝聚过程中砷和氟单独及同步去除的拟一级和拟二级动力学模型。对产生的污泥进行表征研究也证实了污泥中存在As(III)形式的砷和氟。目前的电凝聚工艺能够将合成地下水和实际地下水中的砷和氟浓度分别降低到10 μg/l和1.5 mg/l以下,这是根据世界卫生组织指南这些元素在饮用水中的最大污染物水平。