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The Link Between the Corrosion and calcium carbonate scaling susceptibilities of heat transfer surfaces

机译:腐蚀与碳酸钙结垢对传热表面的敏感性之间的联系

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AbstractThe nucleation of CaCO3scales on copper, graphite, aluminium and mild steel heat transfer surfaces at surface temperatures 54–56°C, from turbulent solutions (Re 22,000) of bulk temperature 30 °C, has been studied using thermal resistance and corrosion potential measurements and scanning electron microscopy. The rate of CaCO3scale nucleation and growth decreases in the order mild steel>aluminium>copper and graphite. Scale nucleation apparently proceeds from the very outset, throughout an apparent thermal induction period, the end of which appears to be associated with the development of nuclei into aragonite clusters. The differing scaling susceptibilities of the materials are directly related to their corrosion susceptibilities. Studies on aluminium highlight the importance of the nature and integrity of surface oxide films in determining scaling susceptibility. Under the conditions examined, scales consist primarily of aragonite, with small amounts of calcite and vaterite. Mild steel surfaces apparently favour growth of “flower” v
机译:摘要使用热阻和腐蚀电位测量以及扫描电子显微镜研究了在表面温度为54–56°C的铜、石墨、铝和低碳钢传热表面上CaCO3垢的成核,这些碾流溶液来自体积温度为30 °C的湍流溶液(Re 22,000)。CaCO3 的成核和生长速率依次降低低碳钢>铝>铜和石墨。鳞片成核显然从一开始就开始了,贯穿一个明显的热诱导期,其结束似乎与原子核发育成文石团簇有关。材料的不同结垢敏感性与其腐蚀敏感性直接相关。对铝的研究强调了表面氧化膜的性质和完整性在确定结垢敏感性方面的重要性。在所检查的条件下,鳞片主要由文石组成,少量方解石和球霰石。低碳钢表面显然有利于“花”的生长 v

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