Nan Junmin, Han Dongmei, Cui Ming, Yang Minjie, Pan Linmao
School of Chemistry and Environment, South China Normal University, Guangzhou, Guangdong, PR China.
J Hazard Mater. 2006 May 20;133(1-3):257-61. doi: 10.1016/j.jhazmat.2005.10.021. Epub 2005 Nov 28.
A novel process to reclaim spent zinc manganese dioxide batteries (SDBs) through synthesizing Zn-Mn ferrite magnetic materials is present. Firstly, the dismantling, watering, magnetism, baking and griddling steps were consecutively carried out to obtain iron battery shells, zinc grains and manganese compounds using the collected SDBs, and then these separated substances were dissolved with 4 mol L(-1) H(2)SO(4) to prepare FeSO(4), ZnSO(4) and MnSO(4) reactant solutions. Secondly, Zn-Mn ferrites with stoichiometric ratio of Mn(0.26)Zn(0.24)FeO(2) were synthesized using chemical co precipitation process with ammonium oxalate precipitator. The XRD results showed that the obtained Zn-Mn ferrites had spinel structure and high purity at the calcining temperatures of 850-1250 degrees C. With the increase of calcining temperature, the finer crystalline structure could be formed, and their intensity of saturation magnetization reached the highest value at 1150 degrees C. The magnetization performances of Zn-Mn ferrites prepared from the SDBs were similar to that of from analysis reagents, suggesting the feasibility to synthesize Zn-Mn ferrites with high properties from SDBs.
提出了一种通过合成锌锰铁氧体磁性材料来回收废旧锌锰电池的新工艺。首先,对收集到的废旧锌锰电池依次进行拆解、水洗、磁选、焙烧和筛分步骤,以获得铁制电池外壳、锌粒和锰化合物,然后将这些分离出的物质用4 mol L(-1) H(2)SO(4)溶解,制备出FeSO(4)、ZnSO(4)和MnSO(4)反应溶液。其次,采用草酸铵沉淀剂通过化学共沉淀法合成了化学计量比为Mn(0.26)Zn(0.24)FeO(2)的锌锰铁氧体。X射线衍射结果表明,在850 - 1250℃的煅烧温度下,所制得的锌锰铁氧体具有尖晶石结构且纯度较高。随着煅烧温度的升高,可以形成更精细的晶体结构,其饱和磁化强度在1150℃时达到最高值。由废旧锌锰电池制备的锌锰铁氧体的磁化性能与由分析试剂制备的相似,这表明从废旧锌锰电池中合成高性能锌锰铁氧体是可行的。