首页> 外文会议>Annual North American Waste to Energy Conference(ANWTEC 12); 20040517-20040519; Savannah,GA; US >Corrosion Mechanisms and Alloy Performance in Waste-To-Energy Boiler Combustion Environments
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Corrosion Mechanisms and Alloy Performance in Waste-To-Energy Boiler Combustion Environments

机译:废物转化为能源的锅炉燃烧环境中的腐蚀机理和合金性能

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摘要

The combustion of municipal solid waste in a boiler for power generation produces a very corrosive environment for the boiler tube materials. The environment contains HCl, SO_2, various metal chlorides and sulfates along with typical combustion products. Due to their low melting points and high vapor pressures, metal chlorides are believed to be primarily responsible for the boiler tube corrosion problems encountered in waste-to-energy (WTE) boilers. Without some sort of corrosion protection method, the standard materials of the construction for the boiler, such as carbon and Cr-Mo steels, are subject to severe high temperature corrosion attack. The present paper discusses the possible modes of high temperature corrosion for waterwalls and boiler tubes in the convection section, and the prevailing protection method for these components as well as the performance of various alloys in these hostile combustion environments.
机译:在用于发电的锅炉中燃烧城市固体废物对锅炉管材产生非常腐蚀性的环境。环境中包含HCl,SO_2,各种金属氯化物和硫酸盐以及典型的燃烧产物。由于其低熔点和高蒸气压,金属氯化物被认为是造成废物转化为能源(WTE)锅炉的锅炉管道腐蚀问题的主要原因。如果没有某种防腐蚀方法,则锅炉结构的标准材料(例如碳钢和Cr-Mo钢)会遭受严重的高温腐蚀。本文讨论了对流段中水冷壁和锅炉管的高温腐蚀的可能模式,以及在这些不利的燃烧环境中这些部件常用的保护方法以及各种合金的性能。

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