首页> 外文期刊>ISIJ international >Production of High-strength Cokes from Non- and Slightly Caking Coals. Part II: Application of Sequence of Fine Pulverization of Coal, Briquetting and Carbonization to Single Coals and Binary Blends
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Production of High-strength Cokes from Non- and Slightly Caking Coals. Part II: Application of Sequence of Fine Pulverization of Coal, Briquetting and Carbonization to Single Coals and Binary Blends

机译:用非结块和轻结块煤生产高强度焦炭。第二部分:煤细粉碎,团块化和碳化的顺序在单一煤和二元混合物中的应用

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Sequential coal briquetting and carbonization was applied to preparation of cokes from 9 non- or slightly caking coals with carbon contents (f _(C)) of 67–85 wt%-daf. Coal pulverization to sizes of <106 μ m and briquetting at 40°C enabled to prepare cokes with tensile strength (σ ) over 10 MPa from 4 coals with f _(C) of 82–85 or 67 wt%-daf. Then, by introducing fine pulverization to sizes of < 10 μ m before the briquetting, 7 coals were converted successfully into cokes with σ = 11–25 MPa. Increasing the briquetting temperature to 240°C further increased σ to 19–35 MPa for all the 9 coals. It was thus demonstrated that the hot briquetting of finely pulverized coal was a method to prepare high strength coke regardless of the rank of parent coal. Cokes were also prepared from 14 binary coal blends. All the cokes prepared by applying the fine pulverization and hot briquetting had σ of 20–35 MPa, which agreed well with that calculated by weighted average of those from the component coals. On the other hand, positive and also negative synergistic effects of blending occurred when blends were briquetted at 40°C. Characteristics of bonding/coalescence among particles of different types of coals were responsible for such synergies.
机译:依次进行煤压块和碳化以从9种碳含量为67-85 wt%-daf的非结块或轻度结块的煤中制备焦炭。将煤粉碎至<106 μm的大小并在40°C下压块,可以从4种f_(C)为82-85的煤中制备拉伸强度(σ)超过10 MPa的焦炭或67 wt%-daf。然后,通过在压块之前引入尺寸小于10μm的细粉,成功地将7种煤转化为σ= 11–25 MPa的焦炭。将全部9种煤的压块温度提高到240°C,σ进一步增加到19-35 MPa。因此证明,不管母煤的等级如何,将细粉煤热压块是制备高强度焦炭的一种方法。焦炭还由14种二元煤混合物制得。通过细粉碎和热压块法制备的所有焦炭的iσ为20-35 MPa,这与成分煤中煤的加权平均计算得出的吻合良好。另一方面,当将共混物在40℃下团块化时,共混产生了正和负的协同作用。不同类型煤颗粒之间的键合/聚结特征是这种协同作用的原因。

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