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Inhibitive properties of sodium gluconate and biocide (CTAB) on corrosion, biocorrosion and scaling controls of copper in cooling water systems

机译:葡萄糖酸钠和杀菌剂(CTAB)对冷却水系统中铜的腐蚀,生物腐蚀和结垢控制的抑制特性

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The use of water as thermal fluid in cooling circuits usually leads to three phenomena namely: Corrosion, scaling and biological fouling, which constitute the cause of a decrease in thermal and electrical efficiency of water circuits, a loss of metallic material and the proliferation of microorganisms in the water circuits. In this study, the characterization of the studied water was effectuated and has revealed that it is corrosive, scaly and seat of development of the microorganisms. Then researches of new formulations have been started in order to propose effective solutions for protection of cooling circuits. First of all, our choice was made on sodium gluconate (GS), combined with cetyltrimethyl ammonium bromide biocide (CTAB) used to fight against the proliferation of microorganisms. The investigation of obtained results by using electrochemical methods has demonstrated that GS is an efficient corrosion and scaling inhibitor with efficiency close to 95% at 10~(-3)M. Also the study has shown that CTAB biocide is a mixed type inhibitor with a good inhibitory efficiency of 86% at 15 ppm In addition, the optimization of GS and CTAB concentrations was carried out by an electrochemical study in order to find a formulation to prevent cooling circuits from the problems previously mentioned. The formulation found (10~(-3)M of SG + 15 ppm of CTAB) has a better performance and has an efficiency of the order of 89% which improves with the immersion time to reach 94% after 24 hours and it keeps its performance with higher temperatures. The Scanning Electron Microscopy (SEM, Energy dispersive X-ray (EDX) and X-ray Diffraction (XRD) analysis have shown that this formulation is an efficient inhibitor for corrosion, scaling and biological fouling. These analyses confirm all results obtained by potentiodynamic polarization curves and electrochemical impedances spectroscopy.
机译:在冷却回路中使用水作为热流体通常会导致三种现象,即:腐蚀,结垢和生物结垢,这是造成水回路热和电效率降低,金属材料损失和微生物繁殖的原因。在水循环中。在这项研究中,对所研究的水进行了表征,并揭示了其具有腐蚀性,鳞片状和微生物生长的位置。然后,开始了对新配方的研究,以便为保护冷却回路提出有效的解决方案。首先,我们选择葡萄糖酸钠(GS)结合十六烷基三甲基溴化铵杀菌剂(CTAB)来对抗微生物的繁殖。通过电化学方法对所得结果的研究表明,GS是一种有效的腐蚀和结垢抑制剂,在10〜(-3)M时效率接近95%。研究还表明,CTAB杀菌剂是一种混合型抑制剂,在15 ppm时具有良好的86%抑制效率。此外,通过电化学研究对GS和CTAB的浓度进行了优化,以找到防止冷却的制剂。电路从前面提到的问题。发现的配方(SG的10〜(-3)M + CTAB的15 ppm)具有更好的性能,效率约为89%,随着浸泡时间的增加,在24小时后达到94%并保持了其稳定性。在较高温度下的性能。扫描电子显微镜(SEM,能量色散X射线(EDX)和X射线衍射(XRD)分析表明,该配方是腐蚀,结垢和生物结垢的有效抑制剂,这些分析证实了通过电位动力学极化获得的所有结果曲线和电化学阻抗谱。

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