采用TG-DTG和XRD研究了纤维素、半纤维素及其混合物焙烧还原软锰矿的动力学.结果表明,与非生物质类还原剂相比,纤维素、半纤维素及其混合物可在低于773 K焙烧还原软锰矿,纤维素和半纤维素单独焙烧还原软锰矿的动力学可采用在JMA方程基础上提出的经验动力学函数α=1-exp{-k0exp(-Ea/RT)[(T-T0)/β]n}描述,表观活化能Ea分别为38.66和30.14 k J/mol.混合物还原软锰矿过程的动力学可用单一组分动力学的线性加和表示,即转化率α=Σixiαiε(T-T0,i),且Σixi=1,式中ε(T-T0)是单位阶跃函数,用于避免产生无效的转化率数据.
The reduction roasting processes for low-grade pyrolusite using bagasse as the reducing agent was statistically analyzed. The central composite rotatable design (CCD) was used to optimize this reduction roasting processes. The three process parameters studied were the mass ratio of bagasse to ore, the roasting temperature and the roasting time. Analysis of variance (ANOVA) was used to analyze the experimental results. The interactions between the process parameters were done by using the linear and quadratic model. The results revealed that the linear and quadratic effects as well as the interaction are statistically significant for the mass ratio and roasting temperature but insignificant for the roasting time. The optimal conditions of 0.9:10 of mass ratio, the roasting temperature of 450 ~C, the roasting time of 30 min were obtained. Under these conditions, the predicted leaching recovery rate for manganese was 98.1%. And the satisfied experimental result of 98.2% confirmed the validity of the model.