首页> 外文会议>Annual Conference of the Australasian Corrosion Association >SCREENING OF GREEN INHIBITORS USED DURING ACID CLEANING OF HEAT EXCHANGER TUBES IN THE ALUMINA INDUSTRY
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SCREENING OF GREEN INHIBITORS USED DURING ACID CLEANING OF HEAT EXCHANGER TUBES IN THE ALUMINA INDUSTRY

机译:氧化铝行业酸洗液中酸洗中使用的绿色抑制剂的筛选

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Aluminosilicate scale fouling of heat exchanger tubes is a common, and serious, problem for alumina refineries. One of the most economical solutions to this issue is to pump dilute sulphuric acid mixed with an appropriate corrosion inhibitor through the pipes to remove the scale. Although some previous inhibitor formulations used in the acid clean have been extremely effective, a greater awareness of environmental issues has prompted inhibitor manufacturers to produce green inhibitors. Developing, validating and interpreting the results of a suitable test protocol that is acceptable for the target alumina industry is challenging. This paper discusses the testing of a variety of formulations in the quest for an inhibitor that is both green and as effective as its predecessor. A test protocol was developed to compare the inhibitors based on the service requirements within an alumina refinery. Linear polarization resistance measurement with a rotating cylinder electrode was found to be an appropriate technique for conducting the evaluations. The results and interpretations of the tests are presented in this paper. In addition an associated alkali inhibitor was evaluated using a laboratory based flow loop to simulate plant conditions. Some formulations, although performing poorly as a corrosion inhibitor, exhibited interesting electrochemical behaviour and this is also discussed in this paper.
机译:铝硅酸盐比例换热器管是氧化铝炼油厂的常见和严重问题。该问题最经济的解决方案之一是将稀释的硫酸通过管道泵用适当的腐蚀抑制剂混合以除去尺度。虽然酸性清洁中使用的一些先前抑制剂配方非常有效,但更大的对环境问题的认识促使抑制剂制造商生产绿色抑制剂。开发,验证和解释目标氧化铝行业可接受的适当测试方案的结果是挑战性的。本文讨论了寻求抑制剂的各种配方的测试,这些配方既是绿色的抑制剂,也可以作为其前身有效。开发了一种测试方案,以基于氧化铝炼油厂内的服务要求进行比较抑制剂。发现具有旋转圆筒电极的线性偏振电阻测量是用于进行评估的适当技术。本文提出了测试的结果和解释。此外,使用基于实验室的流回路评估相关的碱抑制剂以模拟植物条件。虽然作为腐蚀抑制剂表现不佳的一些配方表现出有趣的电化学行为,并且在本文中也讨论了这一点。

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