Hodgkiess T, Najm-Mohammed N A
Department of Mechanical Engineering, University of Glasgow, Glasgow G 12 800, UK.
Water Sci Technol. 2004;49(2):221-8.
This paper describes an investigation into the interrelationships between the performance of an impressed current cathodic protection (CP) system and the deposition of scale compounds in a seawater pipe system. Some experiments were conducted on a laboratory set-up but the emphasis was on tests on a 0.25 m diameter steel pipe fed by seawater flowing to a thermal desalination plant. The experimental approach involved monitoring the CP current as a function of time at various set potentials and correlating this data with evidence from visual inspection of the pipe-wall surfaces and small probe specimens. The influences of control potential and seawater flow rate at temperatures of 25-35 degrees C were studied. Selected scale samples were subjected to examination by scanning electron microscopy and X-ray diffraction. The overall findings are discussed in terms of fundamental scale/CP-operation interactions and aspects relevant to practical operation of CP systems on seawater pipe installations.
本文描述了对外加电流阴极保护(CP)系统性能与海水管道系统中水垢化合物沉积之间相互关系的调查。在实验室装置上进行了一些实验,但重点是对一根直径0.25米的钢管进行测试,该钢管由流向热淡化厂的海水供水。实验方法包括在各种设定电位下监测CP电流随时间的变化,并将这些数据与管壁表面和小探针试样的目视检查证据相关联。研究了25 - 35摄氏度下控制电位和海水流速的影响。对选定的水垢样本进行了扫描电子显微镜和X射线衍射检查。从水垢/CP操作的基本相互作用以及与海水管道装置上CP系统实际操作相关的方面对总体研究结果进行了讨论。