会议论文详细信息
29th Symposium of Malaysian Chemical Engineers 2016
Removal of Mn(II) from the acid mine wastewaters using coal fired bottom ash
Mahidin, M.^1,2,3 ; Sulaiman, T.N.^1 ; Muslim, A.^1,2 ; Gani, A.^1,2,3
Postgraduate Program of Chemical Engineering, Syiah Kuala University, Banda Aceh
23111, Indonesia^1
Department of Chemical Engineering, Syiah Kuala University, Banda Aceh
23111, Indonesia^2
Environmental and Natural Resource Research Center, Syiah Kuala University, Banda Aceh
23111, Indonesia^3
关键词: Acid mine wastewater;    Adsorption capacities;    Adsorption efficiency;    Chemical treatments;    Hazardous heavy metals;    Heavy metals pollution;    Independent variables;    Mining activities;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/206/1/012095/pdf
DOI  :  10.1088/1757-899X/206/1/012095
来源: IOP
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【 摘 要 】

Acid mine wastewater (AMW), the wastewater from mining activities which has low pH about 3-5 and contains hazardous heavy metals such as Cu, Fe, Mn, Zn, Pb, etc. Those heavy metals pollution is of prime concern from the environmental view point. Among the heavy metals, Mn occupies the third position in the AMW from one the iron ore mining company in Aceh, Indonesia. In this study, the possibility use of bottom ash from coal fired boiler of steam power plants for the removal of Mn(II) in AMW has been investigated. Experimental has been conducted as follows. Activation of bottom ash was done both by physical and chemical treatments through heating at 270 °C and washing with NaOH activator 0.5 and 1 M. Adsorption test contains two parts observation; preliminary and primary experiments. Preliminary study is addressed to select the best condition of three independent variables i.e.: pH of AMW (3 & 7), bottom ash particle size (40, 60 & 100 mesh) and initial Mn(II) concentrations (100 & 600 mg/l). AMW used was synthetics wastewater. It was found that the best value for NaOH is 1 M, pH is 7, particle size is 100 meshes and initial Mn(II) concentration is 600 mg/l from the adsorption efficiency point of view. The maximum adsorption capacity (qe) is 63.7 mg/g with the efficiency of 85%.

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