Nano-hematite with multi-porous texture was prepared from the transformation of limonite by thermal treatment. The prepared nano-hematite was utilized to remove Mn2+ from aqueous solution. The effect of heat treatment temperature, initial pH, Mn2+ concentration and contact time on removal of Mn2+ was investigated. The results of characterizations (XRD, TEM, BET) showed that the hematite exhibited the smallest pore size of 2.7 nm and the largest surface area of 107.4 m2/g after thermal treatment at 300℃. The results of batch experiments indicated that the effect of pH varying from 5 to 10 on the removal of Mn2+ was marginal and could almost be ignored. The maximum adsorption capacity of the thermally treated limonite to Mn2+ reached 6.45 mg/g. The kinetics results showed that the adsorption of Mn2+ by nano-hematite followed pseudo second-order kinetic model. The prepared nano-hematite presented excellent adsorption performance and catalytic oxidation to Mn2+. Furthermore, the existence of manganese oxide promoted the adsorption performance and dramatically improved the role of catalytic oxidation in removal of Mn2+ from aqueous solution.
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张羽,刘海波,陈平,等, 2018. 热处理褐铁矿去除水中的Mn2+[J]. 岩石矿物学杂志, 37(4):687~696. ZHANG Yu, LIU Hai-bo, CHEN Ping, et al, 2018. Removal of Mn2+ from aqueous solution based on thermally treated limonite[J]. Acta Petrologica et Mineralogica, 37(4): 687~696.