2</sub> 等還原性氣體較多,導致 H<sub>2</sub>S 濃度升高,從而造成水冷壁管道的高溫腐蝕,影響機組的安全運行。本文分析了 H<sub>2</sub>S 的生產(chǎn)機理,得到便于應用的 H<sub>2</sub>S 生成的模型,并通過實際測量進行了驗證。最后分析了減少水冷壁高溫腐蝕的措施。-龍源期刊網(wǎng)" />

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燃煤鍋爐還原區(qū) H2S 生成模型研究與水冷壁腐蝕防治

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中圖分類號:TQ116;TP391.92 文獻標志碼:A 文章編號:1001-5922(2025)07-0114-03

Abstract:Inrecentyears,afterthe completion of ultra-low emisiontransformation of coal-fired units,theemission of nitrogenoxides has been efectively controlled.However,due to the wideapplication of low-nitrogencombustion technology,the reduction zone of coal-fired boiler has more reducing gases such as CO and H2 ,resulting in an increase in H2S concentration,further leading to high-temperature corrosion of water-cooled wall pipelines and affecting the safe operation of the unit.In this paper,the production mechanism of H2S was analyzed,and a model of H2 S generation easy toapplywasobtained,which was verified byactual measurements.Finally,the measures toreduce the high-temperature corrosion of the water wall were analyzed.

Keywords:coal-fired boiler;reduction zone; H2S ;model research;high-temperaturecorrosion

近年來,全國絕大部分燃煤機組完成超低排放改造,這使得氮氧化物污染物的排放得到了進一步降低。(剩余4209字)

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