NO3- and HSO3- induced corrosion of simulated archaeological iron in humid-acid atmosphere was studied by using periodic wet-dry tests. Surface tension tests, electrochemical impedance measurement, stereoscopic micros...NO3- and HSO3- induced corrosion of simulated archaeological iron in humid-acid atmosphere was studied by using periodic wet-dry tests. Surface tension tests, electrochemical impedance measurement, stereoscopic microscopy and energy dispersive atomic X-ray analysis (EDAX) were used to investigate the corrosion processes and products. The results of mass loss measurement showed that the corrosion kinetics can be approximately described by △W - AtB. With the addition of NO3-, the value of B increases. NO3- acts as an inhibitor in the HSO3- bearing pollutant during the corrosion process. Both the electrochemical impedance measurement and surface tension test confirmed the result of mass loss measurement. In addition, we found that the attack of anions to the metal at the initial corrosion stage was in good agreement with their surface activity.展开更多
The corrosion behaviors of extrusion, under-aged, peaked-aged and over-aged WE93 alloys in Na HSO3 solutions were investigated by optical microscopy(OM), scanning electron microscopy(SEM) and X-ray diffraction(XR...The corrosion behaviors of extrusion, under-aged, peaked-aged and over-aged WE93 alloys in Na HSO3 solutions were investigated by optical microscopy(OM), scanning electron microscopy(SEM) and X-ray diffraction(XRD).The weight loss rates, corrosion morphologies and polarization curves were analyzed.The peak-aged specimen in Na HSO3 salt spray had the highest corrosion rate of 0.9787 mg/cm2/d, while extrusion specimen led to the lowest of 0.2184 mg/cm2/d.The specimens could be arranged in decreasing order of corrosion rates: extrusion 〈under-aged〈over-aged〈peak-aged. Polarization curves also gave effective evaluation of corrosion rates in agreement. The NaHSO3 played a great role in the corrosion behaviors of WE93 alloys. The main reasons were that HSO3- developed a reaction: O2+2HSO3 +2e→2HSO42→2H++2SO42- to generate H+, accelerating the process of corrosion reaction. SO4 2- stimulated corrosion and led to an autocatalytic type of reaction: MgZ++SO4^2-+7H2O→MgSO4-7H2O. XRD characterized that Mg(OH)2 and MgSO4·7H2O were the main corrosion products.展开更多
基金Supported by the National Key Technologies R&D Program of the tenth 5-year Plan Period(No.2001BA805B01) .
文摘NO3- and HSO3- induced corrosion of simulated archaeological iron in humid-acid atmosphere was studied by using periodic wet-dry tests. Surface tension tests, electrochemical impedance measurement, stereoscopic microscopy and energy dispersive atomic X-ray analysis (EDAX) were used to investigate the corrosion processes and products. The results of mass loss measurement showed that the corrosion kinetics can be approximately described by △W - AtB. With the addition of NO3-, the value of B increases. NO3- acts as an inhibitor in the HSO3- bearing pollutant during the corrosion process. Both the electrochemical impedance measurement and surface tension test confirmed the result of mass loss measurement. In addition, we found that the attack of anions to the metal at the initial corrosion stage was in good agreement with their surface activity.
基金Project supported by National Natural Science Foundation of China(51204020)National Basic Research Program of China(2013CB632202,2013CB632205)
文摘The corrosion behaviors of extrusion, under-aged, peaked-aged and over-aged WE93 alloys in Na HSO3 solutions were investigated by optical microscopy(OM), scanning electron microscopy(SEM) and X-ray diffraction(XRD).The weight loss rates, corrosion morphologies and polarization curves were analyzed.The peak-aged specimen in Na HSO3 salt spray had the highest corrosion rate of 0.9787 mg/cm2/d, while extrusion specimen led to the lowest of 0.2184 mg/cm2/d.The specimens could be arranged in decreasing order of corrosion rates: extrusion 〈under-aged〈over-aged〈peak-aged. Polarization curves also gave effective evaluation of corrosion rates in agreement. The NaHSO3 played a great role in the corrosion behaviors of WE93 alloys. The main reasons were that HSO3- developed a reaction: O2+2HSO3 +2e→2HSO42→2H++2SO42- to generate H+, accelerating the process of corrosion reaction. SO4 2- stimulated corrosion and led to an autocatalytic type of reaction: MgZ++SO4^2-+7H2O→MgSO4-7H2O. XRD characterized that Mg(OH)2 and MgSO4·7H2O were the main corrosion products.