首页> 外文期刊>Progress in Energy and Combustion Science >FIRESIDE SLAGGING, FOULING, AND HIGH-TEMPERATURE CORROSION OF HEAT-TRANSFER SURFACE DUE TO IMPURITIES IN STEAM-RAISING FUELS
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FIRESIDE SLAGGING, FOULING, AND HIGH-TEMPERATURE CORROSION OF HEAT-TRANSFER SURFACE DUE TO IMPURITIES IN STEAM-RAISING FUELS

机译:由于生汽燃料中的杂质而导致传热表面的结垢,结垢和高温腐蚀

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The process of steam raising as a source of heat or means of generating electricity using combustible fuels began with the turn of the century. From the very beginning, impurities in the fuels were responsible for added maintenance, a reduction in rate of heat transfer and corrosion due to fireside deposits of sintered or molten ash. The nature and severity of deposit formation, i.e. slagging and fouling, changed as the fuels and their impurities changed, the steam raising process evolved and the steam generators increased in size and efficiency. With the introduction of computer science, the empirical art of ash deposition from impurities in combustion gases is rapidly being transformed into the science of mineral transformation and ash deposition. This manuscript presents in chronological order an overview of the art of ash deposition while firing coal, the mechanistic approach to the problem, the recent introduction of sophisticated analytical procedures, and modeling of mineral transformations, and ash deposition underway. Adaptation of fuels such as ash oil, petroleum coke, municipal waste, wood and biomass to the steam raising process are presented individually in the order in which they were introduced. Empirical indices presently used to characterize the slagging or fouling potentials of impurities in fuels are present. Fundamental data are provided where necessary to illustrate mechanisms for ash deposition. An extensive list of key references is offered for those wishing to investigate details of any particular aspect of fireside slagging, fouling or corrosion.
机译:蒸汽作为热源或使用可燃燃料发电的方法的过程始于世纪之交。从一开始,燃料中的杂质就增加了维护,降低了热传递速率,并降低了由于烧结或熔融灰分在炉边沉积而造成的腐蚀。沉积物形成的性质和严重性,即结渣和结垢,随着燃料及其杂质的变化,蒸汽产生过程的发展以及蒸汽发生器的尺寸和效率的增加而改变。随着计算机科学的引入,由燃烧气体中的杂质产生的灰分沉积的经验技术正迅速转变为矿物转化和灰分沉积的科学。该手稿按时间顺序概述了烧煤时的灰分沉积技术,解决问题的机械方法,最近引入的复杂分析程序以及矿物转化的建模以及正在进行的灰分沉积。按引入顺序分别介绍了诸如灰油,石油焦,市政废物,木材和生物质之类的燃料对蒸汽培养过程的适应性。当前存在用于表征燃料中杂质的结渣或结垢潜力的经验指标。在必要时提供基本数据以说明灰分沉积的机理。为希望调查炉边结渣,结垢或腐蚀的任何特定方面的细节的人员提供了广泛的关键参考清单。

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