Hybrid Process of Electrochemistry with Magnetite Nanoparticles for Treatment of Turbid Water

T. Mohammed, Hadeel Atiya Al-Zuheri
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Abstract

Magnetic nanoparticles are now being investigated widely in field of water treatment. The aim of this study was to evaluate the feasibility of electrocoagulation process combined with addition of magnetite nanoparticles as a turbidity removal process. Bentonite was used as source of turbidity for the synthetic turbid water. Experiments were conducted in a bench scales electrocoagulation reactor where voltage was applied across a perforated plate of aluminum as anode, and iron mesh as cathode. Commercial grade of magnetite (Fe3O4) with an average nanoparticle size of 50 nm was used. The effect of some factors such as initial pH of the solution (5-9), current density (5-25 mA/cm2), and magnetite dosage (0.4-2.5 gm) on the efficiency of the process were studied. The residual turbidity obtained by using electrocoagulation process alone was (7.47 NTU) from initial turbidity of (200 NU) at constant conditions of pH 6, current density 15 mA/cm2 and electrolysis time 20 min. While under these same conditions the combined electrocoagulation + magnetite process with the added (1.4 gm) of magnetite and under the same operating conditions the residual turbidity was (4.34 NTU), which indicate that the magnetite nanoparticles enhanced the electrocoagulation process.
电化学-纳米磁铁矿复合工艺处理浑浊水
磁性纳米颗粒在水处理领域得到了广泛的研究。本研究的目的是评估电凝法联合添加磁铁矿纳米颗粒作为除浊工艺的可行性。以膨润土为浊度源制备合成浊水。实验在台式电凝反应器中进行,其中电压被施加在铝作为阳极的穿孔板上,铁网作为阴极。采用工业级磁铁矿(Fe3O4),平均纳米颗粒尺寸为50 nm。考察了溶液初始pH值(5 ~ 9)、电流密度(5 ~ 25 mA/cm2)、磁铁矿投加量(0.4 ~ 2.5 gm)等因素对工艺效率的影响。在pH为6、电流密度为15 mA/cm2、电解时间为20 min的条件下,初始浊度为200 NU,单电混凝得到的剩余浊度为7.47 NTU。在相同条件下,电混凝+磁铁矿联合工艺,添加磁铁矿(1.4 gm),在相同的操作条件下,剩余浊度为4.34 NTU。说明纳米磁铁矿增强了电凝过程。
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