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Correlation between the critical viscosity and ash fusion temperatures of coal gasifier ashes

机译:煤气化炉灰分的临界粘度与灰熔融温度的相关性

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Coal gasification yields synthesis gas, an important intermediate in chemical manufacturing. It is also vital to the production of liquid fuels through the Fischer-Tropsch process and electricity in Integrated Gasification Combined Cycle power generation. Minerals naturally present in coal become molten in entrained-flow slagging gasifiers. Molten coal ash slag penetrates and dissolves refractory bricks, leading to costly plant shutdowns. The extent of coal ash slag penetration and refractory brick dissolution depends on the slag viscosity, the gasification temperature, and the composition of slag and bricks. We measured the viscosity of several synthetic coal ash slags with a high-temperature rotary viscometer and their ash fusion temperatures through optical image analysis. All measurements were made in a carbon monoxide-carbon dioxide reducing atmosphere that approximates coal gasification conditions. Empirical correlation models based on ash fusion temperatures were used to calculate critical viscosity temperatures based on the coal ash compositions. These values were then compared with those obtained from thermodynamic phase-transition models. An understanding of slag viscosity as a function of ash composition is important to reducing refractory wear in slagging coal gasifiers, which would help to reduce the cost and environmental impact of coal for chemical and electricity production. Published by Elsevier B.V.
机译:煤气化产生合成气,这是化学制造中的重要中间体。这对于通过费-托工艺生产液体燃料以及集成气化联合循环发电中的电力至关重要。煤中自然存在的矿物在气流夹带的气化炉中熔融。熔融的煤灰渣会渗透并溶解耐火砖,导致工厂停产的代价很高。粉煤灰炉渣渗透和耐火砖溶解的程度取决于炉渣粘度,气化温度以及炉渣和砖的成分。我们用高温旋转粘度计测量了几种合成煤灰渣的粘度,并通过光学图像分析测量了它们的灰熔融温度。所有测量均在近似于煤气化条件的一氧化碳-二氧化碳还原气氛中进行。基于粉煤灰熔融温度的经验相关模型用于基于粉煤灰成分计算临界粘度温度。然后将这些值与从热力学相变模型获得的值进行比较。了解炉渣粘度与灰分组成的关系,对于减少炉渣气化炉中的耐火材料磨损非常重要,这将有助于降低煤对化学和电力生产的成本和环境影响。由Elsevier B.V.发布

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