Oğuzlar核桃提取物作为绿色缓蚀剂对AISI 1010低碳钢的腐蚀效果

M. Okutan, A. Asan, Hacer Ebru Si̇nger
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引用次数: 0

摘要

低碳钢主要用于钢筋混凝土结构,因为它在碱性环境中形成被动氧化膜,腐蚀速率低。然而,当暴露于酸性和大气环境或含有溶解盐的水环境(如海水)时,由于氯化物和碳酸化引起的污染,保护膜会恶化并发生腐蚀。通过从植物中提取生物活性化合物来获得缓蚀剂是可能的。因此,获得了廉价和环保的新型有效抑制剂,以替代对环境有害的抑制剂。在此背景下,本研究的主题被确定为考察当地产品Çorum Oğuzlar核桃壳提取物中香兰素酚类化合物对AISI 1010低碳钢在酸性、碱性和咸味环境中的腐蚀抑制效果。这些核桃壳经过清洗、研磨和预先筛选,具有一定的颗粒大小,用七种不同的溶剂提取。为了寻找合适的溶剂,采用Folin Ciocalteu法和液相色谱-质谱/质谱(LC-MS/MS)联用系统对提取物中总酚含量(TPC)进行测定。采用循环伏安法(CV)和Tafel极化法测定了提取物对AISI 1010电化学行为和腐蚀速率的影响。LC-MS/MS分析表明,含有p电子、N和O杂原子的化合物对腐蚀有抑制作用。在酸性环境(0.2 M HCl)中,以86.1%的丙酮-水混合液的抑菌效果最佳。
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The effect of the Oğuzlar walnut extract as a green corrosion inhibitor on AISI 1010 mild steel
Mild steel is primarily used in reinforced concrete structures, because it has a low corrosion rate due to the formation of a passive oxide film in the alkaline environment. However, when exposed to acidic and atmospheric environments or aqueous environments containing dissolved salts such as sea water, the protective film deteriorates and corrosion occurs due to contamination caused by chloride and carbonation. It is possible to obtain corrosion inhibitors by extraction of bioactive compounds from plants. Thus, inexpensive and environmentally friendly new effective inhibitors are obtained as an alternative to environmentally harmful inhibitors. In this context, the subject of the study was determined as the investigation of the inhibition efficiency of the vanillin phenolic compound in the Çorum Oğuzlar walnut shell extract, which is a local product, on the corrosion of AISI 1010 mild steel in acidic, alkaline and salty environments. The walnut shells, which were cleaned, ground and pre-sieved with a certain grain size, were extracted in seven different solvents. In order to find the appropriate solvent, the total phenolic content (TPC) in the extracts was determined by both the Folin Ciocalteu method and the liquid chromatography-mass spectrometry/mass spectrometry (LC-MS/MS) system. Cyclic voltammetry (CV) and Tafel polarization methods were applied to determine the effect of the extract on the electrochemical behavior of AISI 1010 and its corrosion rate. LC-MS/MS analysis showed the presence of compounds containing p electrons, N and O heteroatoms responsible for the corrosion inhibition. The best inhibition effectiveness was obtained with 86.1% acetone-water mixture in acidic environment (0.2 M HCl).
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