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Characteristics of particulate matter generated in pressurized coal combustion for high-efficiency power generation system

机译:高效发电系统加压煤燃烧过程中产生的颗粒物特征

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摘要

Characteristics of particulate matter in pressurized coal combustion for high-efficiency power generation system are investigated by using the percolation model and the results are compared with experiments performed using drop tube furnace facilities (DTF).The results show that conversion for Plateau coal (high volatile matter and low ash contents) rises earlier than that for Newlands coal (low volatile matter and high ash content).For both coals, volatile consumption rate increases with increasing the gaseous temperature,whereas the char combustion rate increases with increasing both the gaseous temperature and the pressure.At the char-combusition-dominant stage after devolatilization,the characteristics of the particulate matter such as specific surface and porosity area are not affected by the gaseous temperature,but they are affected by the pressure and the coal properties.These results are of general agreement with the expriment by DTF and hence the present percolation model is valid for the prediction of the characteristics of the particulate matter in coal combustion.
机译:利用渗流模型研究了高效发电系统加压煤燃烧中颗粒物的特性,并将其结果与使用滴管炉设施(DTF)进行的实验进行了比较。结果表明,高原煤(高挥发分)的转化率物质和低灰分)的上升要比纽兰兹煤(低挥发分和高灰分)的上升更早。对于两种煤,挥发物的消耗率都随着气体温度的升高而增加,而焦炭燃烧率随着气体温度和温度的升高而增加。在脱挥发分后,以炭燃烧为主的阶段,颗粒物的比表面积和孔隙率等特性不受气体温度的影响,但受压力和煤性质的影响。与DTF的实验大致一致,因此当前的渗流模型为v预测煤燃烧中颗粒物的特性。

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