Study on the Temperature Control Algorithm of Gypsum Calcinatory System 脱硫石膏干燥煅烧系统温度控制的算法研究
The effect of the calcinatory temperature, the contents of nickel and magnesium on the performances of selective hydrogenation catalysts was investigated. 考察了载体焙烧温度、金属镍与镁的负载量对催化剂选择性加氢性能的影响。
So the model of the calcinations of the limestone needs to be established to simulate the calcinatory process in the fluidized bed boiler, which can know the calcinatory property of the bulky grains of the limestone. 因此,需要通过建立石灰石煅烧模型对其在循环流化床内的煅烧过程进行模拟,从而了解大颗粒石灰石的煅烧特性。
Influence of the calcinatory temperature, calcinatory holding time, and acid treatment time, acid concentration, reaction temperature on output capacity of nano-silica powder are analyzed. 实验研究分析了煅烧温度、煅烧保温时间和酸处理时间、酸处理浓度、酸处理温度等反应条件对纳米二氧化硅粉体产出率的影响。
Controller parameters can change with the model of gypsum calcinatory temperature control, in order to adapt the changes in their characteristics, guarantee the performance of the entire system to achieve a satisfactory outcome target. 控制器的参数能随石膏煅烧炉温度控制模型的变化而相应地改变,以适应其特性的变化,保证整个系统的性能指标达到令人满意的结果。
However, because the calcinatory reaction of the limestone happens in the furnace cavity, the thermal equilibration of the boiler will be changed. 但是由于石灰石在炉膛内存在煅烧反应,锅炉的热平衡将发生变化。