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Flow properties of ash and slag under co-gasification of coal and extract residue of direct coal liquefaction residue

机译:煤与直接液化残渣的提取残渣共气化时灰渣的流动特性

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Efficient utilization of the extraction residue (ER) of direct coal liquefaction residue is a bottle neck for the efficiency of direct coal liquefaction process. The co-gasification of the ER and coal is a promising way for large-scale utilization of ER. Flow properties of the feedstock including ash fusibility and slag viscosity are important parameters for the gasification process. To optimize co-gasification of the ER and coal, the ash fusibility and slag viscosity behavior of ER and coal under gasification conditions were studied. The results show that the ash fusion temperatures (AFTs) of the blending were lowered with the increasing blending ratio of ER due to the high content of calcium and iron in ER. The content of quartz and anorthite in the blended ashes decreased with the increasing ER blending ratio. The slag viscosities at high temperatures also decreased as the blending ratio of ER increased. The high content of calcium and iron in ER resulted in the decrease in the slag polymerization degree because of the break of Si-O structure and transformation from [AlO4](5-) to [AlO6](9-). Besides, the slag presented the behavior of a crystalline slag when the ER blending ratio was increased up to 25% for the formation of anorthite during cooling. For the entrained flow gasification, the ER addition can effectively lower the operation temperature of the gasifiers, improve the gasification efficiency and avoid the slag tapping problems. The optimal ER addition should be in the range of 10-20%, and the corresponding tapping temperature was 1258-1575 degrees C.
机译:有效利用煤直接液化残渣的提取残渣(ER)是直接煤液化工艺效率的瓶颈。 ER和煤的共气化是ER大规模利用的有前途的途径。原料的流动性,包括灰分易熔性和炉渣粘度,是气化过程的重要参数。为了优化ER和煤的共气化,研究了在气化条件下ER和煤的灰易熔性和炉渣粘度行为。结果表明,由于ER中钙和铁的含量较高,随着ER掺混比的增加,掺混物的灰熔融温度(AFTs)降低。混合灰中石英和钙长石的含量随着ER混合比的增加而降低。随着ER的混合比增加,高温下的炉渣粘度也降低。 ER中钙和铁的含量较高,这是由于Si-O结构的破坏以及从[AlO4](5-)转变为[AlO6](9-)导致炉渣聚合度降低。此外,当冷却过程中形成钙长石的ER掺混比提高到25%时,渣呈现出结晶渣的行为。对于气流床气化,ER的加入可以有效降低气化炉的运行温度,提高气化效率,避免炉渣出炉问题。最佳ER添加量应在10-20%的范围内,相应的出铁温度为1258-1575摄氏度。

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