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首页> 外文期刊>Chemical Technology >Rate of Zinc Consumption during Sacrificial Cathodic Protection of a Double Tube Copper Heat Exchanger Handling Saline Water
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Rate of Zinc Consumption during Sacrificial Cathodic Protection of a Double Tube Copper Heat Exchanger Handling Saline Water

机译:双管铜热交换器处理盐水的牺牲阴极保护期间锌消耗率

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摘要

The inner copper tube of a double tube heat exchanger was fitted with zinc rings transverse to the flow of saline water to protect the inner tube against corrosion by sacrificial cathodic protection. Rate of Zn consumption during cathodic protection of copper in NaCl solution was determined under different operating conditions. The rate of dissolution of Zn rings surrounding the inner copper tube was found to increase with increasing solution flow rate, temperature and NaCl concentration. Activation energy Ea was found to be 3.864 kCal/mol, this value shows that Zn consumption takes place through a diffusion controlled mechaiusm. The rate of zinc consumption was found to decrease with increasing ring thickness. The rate passes through a maximum with increasing ring spadng. The importance of the present study in assessing the cost of sacrificial cathodic protection in comparison with the competing impressed current cathodic protection was highlighted. Also, the possible rate of zinc rings as turbulence parameters to enhance the rate of heat transfer and increase the efficiency of the heat exchanger was pointed out.
机译:双管热交换器的内铜管配有横向于盐水流的锌环,以保护内管通过牺牲阴极保护防止腐蚀。在不同的操作条件下测定NaCl溶液中铜阴极保护期间的Zn消耗率。发现围绕内铜管围绕内铜管的溶解速率随着溶液流速,温度和NaCl浓度的增加而增加。激活能量EA被发现为3.864 kcal / mol,该值表明Zn消耗通过扩散控制的Mechaiusm进行。发现锌消耗的速率随着环厚度的增加而降低。随着环形Spadng的增加,速率通过最大值。突出了本研究对评估牺牲阴极保护成本的重要性,与竞争压制的电流阴极保护相比突出。而且,锌环的可能速率作为增强传热速率的湍流参数,并指出了提高热交换器的效率。

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