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Status of coal ash behavior research

机译:粉煤灰行为研究现状

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摘要

The inorganic components contained in coal are converted to ash during combustion and gasification. The resulting ash can cause significant problems that include slag flow behavior, ash deposition, bed agglomeration, corrosion and erosion of system parts, fine particulate that is difficult to collect, and blinding of hot-gas cleanup filters. The type of problem and the degree of the problem are dependent upon coal composition, system operating conditions, and system design criteria. Much research has been conducted on ash formation and behavior in pulverized coal- and cyclone-fired utility boilers. Many of the mechanisms of transformations and ash deposition have been worked out, and predictive models have been developed. Ash behavior research in fluidized-bed combustion systems has been conducted to determine the effects of coal quality and operating conditions on bed agglomeration and deposition on heat-transfer and other surfaces. Ash can also influence gasification system operability. Problems such as maintaining slag flow and ash deposition have been encountered. In advanced power systems, hot-gas cleanup is a significant issue in which ash plays a significant role. The issues in hot-gas cleanup include ash deposition on filters, ash removal, and vapor-phase and ash-ceramic interactions. The chemical and physical characteristics of the ash also influence their ability to be collected in air pollution control devices.
机译:煤中所含的无机成分在燃烧和气化过程中转化为灰分。产生的灰烬会引起严重的问题,包括炉渣流动行为,灰烬沉积,床层结块,系统零件的腐蚀和侵蚀,难以收集的细小颗粒以及热气净化过滤器的堵塞。问题的类型和问题的程度取决于煤的成分,系统运行条件和系统设计标准。已经对煤粉和旋风粉煤电站锅炉的灰分形成和行为进行了大量研究。已经研究出许多转变和灰分沉积的机理,并且已经建立了预测模型。已经进行了流化床燃烧系统中灰分行为的研究,以确定煤质和运行条件对传热和其他表面上的床团聚和沉积的影响。灰分还会影响气化系统的可操作性。已经遇到诸如保持炉渣流和灰分沉积的问题。在先进的电力系统中,热气净化是一个重要的问题,其中灰分起着重要的作用。热气净化的问题包括灰尘在过滤器上的沉积,除灰以及汽相和灰-陶瓷的相互作用。烟灰的化学和物理特性也影响其在空气污染控制设备中收集的能力。

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