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TOWARDS BETTER UNDERSTANDING OF TEMPERATURE GRADIENTS IN SUPERHEATER CORROSION

机译:更好地理解过热器腐蚀中的温度梯度

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This paper presents a novel laboratory method for superheater corrosion experiments in which a temperature gradient is applied over the deposit and steel.Experiments using salt mixtures of NaCl/Na2SO4 or KCl/K2SO4 show alkali chloride transport (NaCl, KCl) within the salt layer, and to the steel surface.The alkali chloride is vaporized from the salt grains, transported down the temperature gradient, and deposited on surfaces with lower temperature.Mathematical model predictions show the governing transport process to be temperature gradient induced concentration diffusion, not thermal diffusion.The transport rate is species-dependent, with a greater transport rate of KCl as compared to NaCl.Further work is needed for a better understanding of the implications of temperature gradients for superheater corrosion in boiler environments.
机译:本文介绍了一种用于过热器腐蚀实验的新颖实验室方法,其中在沉积物和钢上施加了温度梯度。使用NaCl / Na2SO4或KCl / K2SO4的盐混合物进行的实验表明,盐层内的碱金属氯化物(NaCl,KCl)传输,碱金属氯化物从盐粒中蒸发出来,沿温度梯度向下传输,并沉积在较低温度的表面上。数学模型预测表明,控制传输的过程是温度梯度引起的浓度扩散,而不是热扩散。传输速率取决于物种,与氯化钠相比,氯化钾的传输速率更高。需要进一步的工作以更好地理解温度梯度对锅炉环境中过热器腐蚀的影响。

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