硝酸钠在不同浓度盐酸溶液中对碳钢的缓蚀作用

IF 0.7 4区 材料科学 Q4 ELECTROCHEMISTRY Journal of New Materials For Electrochemical Systems Pub Date : 2022-03-31 DOI:10.14447/jnmes.v25i1.a05
Saad A. Jafar, A. Aabid, Ghassan Hassan Abdul Razzaq, Jasim I. Humadi
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引用次数: 3

摘要

在化学和石油工业中,超过90%的建筑单位使用金属。钢铁是油田作业平台制造中广泛使用的金属。在各种工业中,金属暴露于碱或酸的影响下,可能对金属规格造成严重影响,从而导致使用中的材料突然失效。因此,需要研究金属在暴露于各种环境时的保护,因为这是决定其使用寿命的材料选择中的一个非常重要的因素。在目前的研究中,不同浓度的影响从(25到100 mg / l)硝酸钠在抑制碳钢的腐蚀研究置于不同浓度的盐酸溶液(1米,2米,3米),结果表明,浓度(75 mg / l)硝酸钠实现的最佳抑制酸浓度用于所有的使用,因为它降低了腐蚀速率48.91%浓度的1米,浓度为2m时为39.38%,浓度为3m时为35.33%。
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Sodium Nitrate As a Corrosion Inhibitor of Carbon Steel in Various Concentrations of Hydrochloric Acid Solution
In the chemical and petroleum industries, metals are used in over 90% of construction units. Iron and steel are widely used metals in the fabrication and manufacturing of petroleum field operating platforms. The exposures of metals to the effect of bases or acids in the various industries can be severe to the metals specifications and thus result in suddenly failure of materials in service. So that, the need to investigate the protection of metals when exposed to various environments, as this is a very important factor in the selection of material that determines the service life of it. In the present study, the effect of various concentrations ranging from (25 to 100 mg/l) of sodium nitrate was studied in inhibiting the corrosion of carbon steel placed in different concentrations of hydrochloric acid solution (1 M, 2 M, and 3 M), the results showed that the concentration of (75 mg/l) of sodium nitrate achieved the best inhibition of the acid used in all the concentrations used, as it reduced the corrosion rate by 48.91% for a concentration of 1 M, 39.38% for a concentration of 2 M, and 35.33% for a concentration of 3 M.
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来源期刊
Journal of New Materials For Electrochemical Systems
Journal of New Materials For Electrochemical Systems ELECTROCHEMISTRY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
1.90
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: This international Journal is intended for the publication of original work, both analytical and experimental, and of reviews and commercial aspects related to the field of New Materials for Electrochemical Systems. The emphasis will be on research both of a fundamental and an applied nature in various aspects of the development of new materials in electrochemical systems.
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