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Corrosion protection of mild carbon steel media in phosphate grinding mill using impressed current technology

机译:采用外加电流技术的磷酸盐磨粉厂低碳钢介质腐蚀防护

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Corrosion plays a significant role in wear of mills used to grind acidic phosphate slurry at pH 2-4 in Florida fertilizer plants. Approximately half of the grinding media wear results from corrosion or oxidation dissolution of metal surfaces in grinding. Cathodic protection using impressed current was investigated to reduce the wear rate. The effect of polarization potential on corrosion rate and required current density were studied using a specially designed ball mill whose electrochemical potential can be controlled. Experimental results indicate that the total wear rate was reduced by 42-46 percent for 1018 carbon steel when a potential of -1.0 V was applied. The required current density to effectively reduce the wear rate was 210 mA/m~2 in pH 3.1 solution, 180 mA/m~2 in pH 6.8 solution, and 160 mA/m~2 in pH 9.2 solution. Scanning electron microscopy (SEM), and X-ray diffraction (XRD) methods were used to investigate the surface morphology, corrosion products, and composition of metals during phosphate grinding with and without cathodic protection. SEM results indicated that pitting corrosion was the main corrosion type. XRD images suggested that Fe_2O_3 was the main corrosion product in pH 3.1 solution without cathodic protection, and the corrosion was significantly reduced when potential of -1.0 V was applied.
机译:腐蚀在佛罗里达化肥厂用于研磨pH 2-4的酸性磷酸盐浆料的磨机的磨损中起着重要作用。大约一半的研磨介质磨损是由于研磨中金属表面的腐蚀或氧化溶解所致。研究了使用外加电流进行阴极保护以降低磨损率。使用专门设计的球磨机研究了极化电位对腐蚀速率和所需电流密度的影响,该球磨机的电化学电位可以控制。实验结果表明,在施加-1.0 V电位时,1018碳钢的总磨损率降低了42-46%。有效降低磨损率所需的电流密度在pH 3.1溶液中为210 mA / m〜2,在pH 6.8溶液中为180 mA / m〜2,在pH 9.2溶液中为160 mA / m〜2。扫描电子显微镜(SEM)和X射线衍射(XRD)方法用于研究在有和没有阴极保护的磷酸盐研磨过程中金属的表面形态,腐蚀产物和金属成分。 SEM结果表明,点蚀是主要的腐蚀类型。 XRD图像表明,Fe_2O_3是pH 3.1溶液中的主要腐蚀产物,无阴极保护,当施加-1.0 V电位时,腐蚀显着降低。

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