热处理褐铁矿去除水中的Mn2+
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国家自然科学基金资助项目(41572029,41402030)


Removal of Mn2+ from aqueous solution based on thermally treated limonite
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    摘要:

    本文利用褐铁矿中针铁矿经热脱水相变获得以纳米晶赤铁矿为主要物相的纳米-微米多级孔结构材料,并用于模拟净化富Mn2+地下水。同时考察了热处理温度、初始pH值、初始Mn2+浓度、吸附反应时间等对材料去除溶液中Mn2+的影响。XRD、TEM、BET表征结果表明,300℃热处理产物中赤铁矿孔径最小为2.7 nm,比表面积最大达到107.4 m2/g。吸附实验结果表明,在pH值5~10的范围内,pH值对煅烧褐铁矿颗粒对Mn2+去除效果影响较小;材料在贫氧条件下对水中低浓度Mn2+的最大吸附量为6.45 mg/g;吸附动力学符合准二级动力学模型;褐铁矿热处理形成的纳米晶赤铁矿对Mn2+具有吸附和催化氧化作用,其中的杂质锰氧化物对Mn2+的吸附和催化氧化具有增强作用。

    Abstract:

    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.

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  • 收稿日期:2017-10-18
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  • 在线发布日期: 2018-07-10
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