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A Slag Management Toolset for Determining Optimal Coal Gasification Temperatures

机译:一种用于确定最佳煤气化温度的渣管理工具集

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Gasifier operation is an intricate process because of the complex relationship between slag chemistry and temperature, limitations of feedstock materials, and operational preference. High gasification temperatures increase refractory degradation, while low gasification temperatures can lead to slag buildup on the gasifier sidewall or exit, either of which are problematic during operation. Maximizing refractory service life and gasifier performance require finding an optimized operating temperature range which is a function of the coal slag chemistry and viscosity. Gasifier operators typically use a slag's viscosity-temperature relationship and/or ash-fusion fluid temperature to determine the gasification temperature range. NETL has built a slag management toolset to determine the optimal temperature range for gasification of a carbon feedstock. This toolset is based on a viscosity database containing experimental data, and a number of models used to predict slag viscosity as a function of composition and temperature. Gasifier users typically have no scientific basis for selecting an operational temperature range for gasification, instead using experience to select operational conditions. The use of the toolset presented in this paper provides a basis for estimating or modifying carbon feedstock slags generated from ash impurities in carbon feedstock.
机译:由于渣化学和温度,原料材料的限制,以及操作偏好,气化器操作是一种复杂的过程。高气化温度提高了耐火性降解,而低气化温度可能导致气化器侧壁或出口上的渣堆积,其中任何一个都存在于操作期间有问题。最大化耐火性使用寿命和气化器性能需要找到优化的工作温度范围,这是煤渣化学和粘度的函数。气化器操作员通常使用炉渣的粘度 - 温度关系和/或灰熔化的流体温度来确定气化温度范围。 NetL建立了一个渣形管理工具集,以确定碳原料气化的最佳温度范围。该工具集基于包含实验数据的粘度数据库,以及用于预测作为组合物和温度的函数的渣粘度的许多模型。气化器用户通常对选择气化的操作温度范围没有科学依据,而是使用经验选择操作条件。本文呈现的工具集提供了估计或修改碳原料中灰杂质产生的碳原料渣的基础。

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