首页> 外文会议>Corrosion conference and expo >Case studies into the Performance and Benefits of Advanced Ceramic Coating Technologies for Corrosion, Erosion and Slagging Mitigation in Fossil Fuel Fired Power Generation Units.
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Case studies into the Performance and Benefits of Advanced Ceramic Coating Technologies for Corrosion, Erosion and Slagging Mitigation in Fossil Fuel Fired Power Generation Units.

机译:案例研究了先进的陶瓷涂层技术在化石燃料发电装置中的腐蚀,侵蚀和结渣缓解性能和收益。

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摘要

Tube material loss, leading to tube failure, due to corrosion and/or erosion is one of the leading causes of forced maintenance outages in the coal and biomass fueled power generation industry. In addition to increasing the required funds for operations and maintenance of the facilities, modifications made to the equipment for emissions reduction compliance have, in many cases, increased the rate of tube material loss. Accordingly, there has been demand for advancements in innovative and cost effective materials technology to mitigate the loss of tube material and thus reduce the frequency of unscheduled and non-routine maintenance events. The employment of High Temperature Ceramic Coating Technology in the power generation industry has proven to be an effective means of protecting the underlying boiler tube material from erosive and corrosive material losses and has afforded additional benefits related to increased heat transfer, increased efficiency, reduced air and flue flow energy consumption and reduced fuel consumption through the reduction of slag and deposits adhering to the coated heat transfer surfaces.
机译:由于腐蚀和/或侵蚀而导致的管材损失,导致管故障,是煤炭和生物质燃料发电行业中强制维护中断的主要原因之一。除了增加设施的运营和维护所需的资金外,为减少排放而对设备进行的修改在许多情况下还增加了管材的损失率。因此,需要创新和具有成本效益的材料技术的进步,以减轻管材料的损失,从而减少计划外和非常规维护事件的发生频率。事实证明,在发电行业中采用高温陶瓷涂层技术是保护基础锅炉管材料免受侵蚀和腐蚀材料损失的有效手段,并且还提供了与增加热传递,提高效率,减少空气和空气有关的其他好处。通过减少附着在涂层传热表面上的炉渣和沉积物,减少了烟道气的能量消耗并降低了燃料消耗。

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