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1-羥基苯并三氮唑和鉬酸鈉對銅的緩蝕協同作用

Corrosion inhibition synergistic effect of 1-hydroxybenzotriazole and sodium molybdate on copper

  • 摘要: 采用電化學、掃描電子顯微鏡、X射線光電子能譜等實驗方法研究了1-羥基苯并三氮唑(BTAOH)和鉬酸鈉(Na2MoO4)復配后對銅在ASTM D 1384模擬大氣腐蝕溶液中的緩蝕協同作用.電化學實驗結果表明:BTAOH與Na2MoO4在50mg·L-1的質量濃度條件下,以2:1復配使用能夠顯著提高銅在模擬大氣腐蝕溶液中的電荷轉移電阻,降低腐蝕電流密度,緩蝕率達到90.7%;銅在模擬大氣腐蝕溶液中的腐蝕產物呈聚集柱狀堆砌在表面,而在含有緩蝕劑的溶液中表面平整致密,且疏水性增強,接觸角顯著增大至91.8°.X射線光電子能譜結果顯示Na2MoO4與銅表面作用后形成MoO3和MoO2,兩種氧化物填充在BTAOH形成的表面膜的縫隙中,提高了膜的致密性,對銅產生良好的保護作用.

     

    Abstract: A synergistic effect of 1-hydroxybenzotriazole and sodium molybdate as corrosion inhibitors on copper in ASTM D 1384 simulated atmospheric corrosion solution was investigated by using electrochemistry, scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). Electrochemistry results revealed that BTAOH and Na2MoO4 compounding in 2 to 1, under the condition of a 50 mg×L-1 concentration, could improve the charge transfer resistance and reduce the corrosion current density, and the inhibition rate significantly reached to 90.7%. Corrosion products of copper in this simulated atmospheric corrosion solution piled up on the copper surface in an accumulative column shape; but the copper surface was smooth and dense in the corrosion inhibitor containing media, the hydrophobicity enhanced, and the surface contact angle significantly increased to 91.8°. X-ray photoelectron spectroscopy (XPS) results showed that Na2MoO4 transformed into MoO3 and MoO2 after interaction with copper, and two kinds of oxides padded in the gap of a surface film formed by BTAOH, which increased the density of the film and had good protective effect on copper.

     

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