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Improvement of the cleanability of pseudo-sensitized stainless steel surfaces by solution treatment

机译:通过固溶处理改善伪敏化不锈钢表面的清洁性

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Type 316L stainless steel particles were pseudo-sensitized by being heated at 700 degrees C for 100 h under a reduced pressure of 1.3 X 10(-3) Pa. Pseudo-sensitization treatment resulted in the formation of chromium-rich precipitates at the outermost surfaces of the stainless steel particles. The curve for the apparent surface charge density (sigma(app)) of the pseudo-sensitized particles showed a more basic character compared with the curve for the sigma(app) of the original particles. There was no significant difference between the amounts of bovine serum albumin (BSA) adsorbed on the original and the pseudo-sensitized particles. On the contrary, the efficiency of BSA removal from the pseudo-sensitized particles during batch-wise and continuous cleaning operations with 0.1M NaOH solution were significantly smaller than that for the original particles. It was indicated that the extremely lowered cleanability of the pseudo-sensitized particles was caused by a marked increase in the positive sigma(app) values after the pseudo-sensitization. Solution treatment of the pseudo-sensitized particles at 1,050 degrees C for 1 h under a reduced pressure of 1.3 X 10(-3) Pa could put again the chromium precipitates into a solid solution, thereby returning the surface chemical composition and the a.,p nearly to the original states. In addition, the solution-treated particles showed a good cleanabillity comparable to that of the original particles. These results demonstrated that solution treatment could improve the lowered cleanability of the pseudo-sensitized stainless steel surfaces.
机译:通过在1.3 X 10(-3)Pa的减压下于700摄氏度加热100小时来对316L型不锈钢颗粒进行假敏化。假敏化处理导致在最外层表面形成富铬沉淀物不锈钢颗粒。与原始粒子的sigma(app)的曲线相比,拟敏化粒子的表观表面电荷密度(sigma(app))的曲线显示出更基本的特征。原始和假致敏颗粒上吸附的牛血清白蛋白(BSA)的量之间没有显着差异。相反,在使用0.1M NaOH溶液进行分批和连续清洁操作期间,从假敏化颗粒中去除BSA的效率明显小于原始颗粒。结果表明,假敏化后的颗粒的可清洗性极低,这是由于假敏化后正σ(app)值的显着增加所致。将伪增感粒子在1.3 X 10(-3)Pa的减压下于1050摄氏度固溶处理1小时,可能会将铬沉淀物再次置入固溶体中,从而恢复表面化学成分和表面活性。 p几乎恢复到原始状态。另外,经溶液处理的颗粒显示出与原始颗粒相当的良好清洁度。这些结果表明固溶处理可以改善伪敏化不锈钢表面的降低的清洁性。

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