The oxidizing roasting process of carbon ferrochrome to prepare potassium chromate in the presence of potassium carbonate and air was investigated. The effects of reaction temperature, reaction time, mole ratio of potassium carbonate to carbon ferrochrome were studied, and thermodynamics and kinetics were also discussed. It was observed that the reaction temperature and reaction time had a significant influence on the roasting reaction of carbon ferrochrome. The reaction mechanism changed greatly as the temperature varied. A two-stage roasting process was favorable for the roasting reaction, and a chromium recovery rate of 97.06% was obtained through this two-stage roasting method. The chromium residue yielded from this method was only 1/3 of the product. Moreover, the component of Fe in the residue was as high as 55.04%. Therefore, it can be easily recovered to produce sponge iron, realizing complete detoxication and zero-emission of chromium residue.
To investigate the effect of electrolytic MnO2 (EMD) on the performance of LiMn2O4, several pretreatment methods, such as acid treating, presintering and impregnating with chromic salt, were used. The pretreated EMD and prepared LiMn2O4 were characterized by X-ray diffraction and inductively coupled plasma emission spectrometry. Charge and discharge tests of Li/LiMn2O4 batteries were also employed to evaluate electrochemical performance. The experimental results show that inorganic impurity contents in EMD decrease remarkably after acid treating; presintering EMD can remove adsorbent water and organic impurity, enlarge pore space and increase active reaction sites; pre-doping chromium in EMD can form more homogenous compound substance LiCr0.05Mn1.95O4, which shows better structural stability and capacity retention.
针对Li1.2Mn0.54Ni0.13Co0.13O2材料的首次效率过低和倍率性能差的缺陷,系统研究了中性去离子水、弱酸性的硫酸铵和强酸性的磷酸3种不同pH值的溶液处理对Li[Li0.2-Mn0.54Ni0.13Co0.13]O2综合性能的影响.ICP结果表明预处理液的pH值对Li的析出量有显著影响;XRD结果显示处理对材料的体相结构有影响;XPS证实处理对材料表面过渡金属元素的价态没有影响.充放电测试表明,硫酸铵处理后的样品具有最优的电化学性能,首次效率由64.6%提高到85.4%,1 C放电容量从149.5 mA h g?1提高到183.7 mA h g?1,中值电压呈缓和下降趋势.