New Solution With Syntheses Inhibitors for the Chemical Cleaning of Organic Pollutants From the Water Supply System Of Generators

V. Radulescu
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Abstract

In thermal power plants, during the boilers functioning, heterogeneous deposits of substances must often be removed in order to prolong their operation and avoid their deterioration. The nature, type and quantity of deposits depend on the characteristics of the water supply systems and the chemical operating regime. For boilers with high deposits of copper and iron, the utilization of mineral acids for chemical cleaning is not quite effective, because their surfaces may be covered with a metal copper film. Organic impurities in the water supply affect the operation of steam generators, increasing electrical conductivity and lowering the pH. The heterogeneous composition of the deposits is unevenly distributed in the combustion system, making its cleaning a complex problem. For efficient chemical cleaning, the agents must have a minimal corrosive action on the metal surfaces, ensuring only the dissolution of the compounds on the surface of the boilers. To prevent corrosion of metals, inhibitors are introduced to diminish the reactions on the metal surface or at least to delay the kinetics of the reaction. This paper analyzes the implications of organic pollutants in the corrosion phenomena and chemical processes where they are involved. As an example, the power plant Borzesti affiliated to the Petrochemical Platform, Bacau County, Romania is presented. The adopted solution uses as an inhibitor, a synthesis between amino alcohol and a thiazole, in the presence of water. This inhibitor has been tested in the laboratory on different steels used in energy pipes, in different areas of the thermal circuits in the boiler, as pure steel or with different alloys. The methods used to reduce the effects of corrosion are briefly presented. Four classes of organic substances with properties of corrosion inhibitors in the organic acid environment were analyzed. The experimental results obtained, associated with a comparative analysis of corrosion rates, for different concentrations of inhibitors for a time interval of 4 hours are mentioned. In the second stage, the inhibitor behavior was analyzed for 6h and 8h. Corrosion rates are estimated by measuring the weight loss of the tested probes. Finally, the most suitable types of inhibitors, adapted at different metal compositions are presented, with a result in the cleaning of more than 98% of the surface of the boilers.
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合成抑制剂化学清洗发电机供水系统有机污染物的新溶液
在火电厂锅炉运行过程中,为了延长锅炉的运行时间,避免锅炉的劣化,往往需要清除锅炉内的非均质沉淀物。沉积物的性质、类型和数量取决于供水系统的特点和化学操作制度。对于铜和铁含量高的锅炉,利用无机酸进行化学清洗并不十分有效,因为它们的表面可能被一层金属铜膜覆盖。供水中的有机杂质会影响蒸汽发生器的运行,增加电导率,降低ph值。沉积物的非均质成分在燃烧系统中分布不均匀,使其清洗成为一个复杂的问题。为了实现高效的化学清洗,清洗剂必须对金属表面具有最小的腐蚀作用,确保仅在锅炉表面溶解化合物。为了防止金属的腐蚀,抑制剂被引入以减少金属表面的反应或至少延迟反应的动力学。本文分析了有机污染物在腐蚀现象和化学过程中的影响。以罗马尼亚Bacau县石油化工平台下属的Borzesti电厂为例进行了介绍。所采用的溶液在水的存在下用作氨基醇和噻唑之间的合成抑制剂。这种抑制剂已经在实验室中对能源管道中使用的不同钢材进行了测试,在锅炉热回路的不同区域,作为纯钢或与不同的合金。简要介绍了减少腐蚀影响的方法。分析了有机酸环境中具有缓蚀剂性能的四类有机物。对不同浓度的缓蚀剂在4小时内的腐蚀速率进行了对比分析,并给出了实验结果。在第二阶段,分析抑制剂在6h和8h的行为。腐蚀速率是通过测量被测探针的重量损失来估计的。最后,提出了适用于不同金属成分的最合适类型的抑制剂,其结果是锅炉表面98%以上的清洁。
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