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Poly(phenylenesulfide)-based coatings for carbon steel heat exchanger tubes in geothermal environments

机译:地热环境下用于碳钢换热管的聚苯硫醚基涂料

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To inhibit corrosion and fouling by calcium silicate and silica scales of the carbon steel heat exchanger tubes in geothermal power plants operating at brine temperature of 160degreesC, their internal surfaces were lined with high-temperature performance poly( phenylenesulfide) (PPS)-based coating systems. The systems included the PPS containing polytetrafluoroethylene (PTFE) as an anti-oxidant additive, silicon carbide (SiC) as a thermally conductive filler, and aluminum oxide-rich calcium aluminate (ACA) as an abrasive wear resistant filler. Then, the lined tubes underwent an eleven-month-long field exposure at the site of power plant. The results from the post-test analyses of the exposed liners revealed that these PPS coating systems had an excellent thermal stability, and satisfyingly withstood this brine temperature, and also greatly resisted the permeation of brine, demonstrating that they adequately protect the tubes against corrosion in a wet, harsh geothermal environment. Furthermore, modifying the surfaces of the PPS top layer with PTFE, retarded the hydrothermal oxidation of the liner, thereby reducing significantly the rate of scale deposition and creating surfaces unsusceptible to reactions with scales. Thus, all the scales deposited on the liner's surfaces were readily scoured off by hydroblasting at a very low pressure. By contrast, although the stainless steel tubes had a great protection against corrosion, the formation of passive oxide layers at their outermost surface sites was detrimental in that they became more susceptible to scale deposition and developed strong adherence to the scales. As a result, the high-pressure hydroblasting was required to remove this scale adhering to the tubes' surfaces. (C) 2002 Kluwer Academic Publishers. [References: 12]
机译:为了防止在160℃盐水温度下运行的地热发电厂中碳钢换热管的硅酸钙和硅垢引起的腐蚀和结垢,其内表面衬有基于高温性能的聚苯硫醚(PPS)涂层系统。该系统包括含有聚四氟乙烯(PTFE)作为抗氧化剂,聚碳化硅(SiC)作为导热填料以及富含氧化铝的铝酸钙(ACA)作为耐磨研磨填料的PPS。然后,衬里管在电厂现场进行了长达11个月的野外暴露。对裸露衬管的测试后分析结果表明,这些PPS涂层系统具有出色的热稳定性,可以令人满意地经受住盐水温度,并且还可以很好地抵抗盐水的渗透,表明它们可以充分保护管子免受腐蚀。潮湿,恶劣的地热环境。此外,用PTFE对PPS顶层的表面进行改性,阻止了衬里的水热氧化,从而显着降低了水垢的沉积速率,并创建了不易与水垢反应的表面。因此,通过在非常低的压力下进行水力喷射,很容易清除掉沉积在衬套表面上的所有水垢。相比之下,尽管不锈钢管具有很好的抗腐蚀性能,但是在其最外表面部位形成钝化氧化层却是有害的,因为它们变得更易于沉积水垢并形成对水垢的牢固附着力。结果,需要高压喷水处理以除去附着在管子表面的水垢。 (C)2002 Kluwer学术出版社。 [参考:12]

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