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CORROSION OF HIGH ALLOY SUPERHEATER TUBES IN A COASTAL BIOMASS POWER BOILER

机译:沿海生物质发电锅炉中高合金过热器管的腐蚀

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Metallurgical examinations were conducted on a set of damaged high alloy (Type 310H stainless steel and Alloy 625 weld overlay) superheater tubes removed from a coastal fluidized bed biomass power boiler, to better understand the degradation mode. Active oxidation (gas-solid reaction occurring underneath the chloride-containing fireside deposit) was found to be the mechanism responsible for the significant loss in tube wall thickness observed on damaged superheater tubes. There exists a complex, poorly-understood, synergy between the critical factors that affect active oxidation, primarily tube temperature and the supply of reactants in the flue gas, namely sodium chloride (NaCl), sulphur dioxide (SO2) and water vapour (H2O). Overall ranking in terms of increasing corrosion resistance to active oxidation follows the expected trend: T22 < SS310H < A625WO. Despite the favourable ranking, the Alloy 625 weld overlay can corrode by active oxidation at an appreciable rate [0.45 mm/yr (18 mpy)] under existing boiler operating conditions. A promising corrosion control strategy involves reducing the steam temperatures in the outlet tubes of the three superheater sections to below 500 °C.
机译:冶金检查是在一套受损高合金(310H不锈钢和合金625焊接625焊接625焊接625焊接625焊接625焊接)上的过热器管,从沿海流化床生物质发电锅炉中取出,以更好地了解降解模式。发现有主动氧化(在含氯化物炉晶沉积物下面发生的气体固体反应)是负责在受损的过热器管上观察到的管壁厚度显着损失的机制。在烟道气中影响活性氧化,主要管温度和反应物供应的关键因素之间存在复杂,较差,协同作用,即氯化钠(NaCl),二氧化硫(SO 2)和水蒸气(H2O) 。随着预期的趋势:T22

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