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Featured researches published by F. Zucchi.


Corrosion | 2001

Corrosion Inhibitors—Correlation between Electronic Structure and Efficiency

István Lukovits; Erika Kálmán; F. Zucchi

Abstract Corrosion inhibition efficiencies of heterocyclic, unsaturated (aromatic and nonaromatic) compounds (pyrimidines, benzothiazole derivatives, amino acids containing an aromatic part, pyridi...


Corrosion Science | 1996

Tetrazole derivatives as corrosion inhibitors for copper in chloride solutions

F. Zucchi; G. Trabanelli; M. Fonsati

Abstract The inhibiting action of some tetrazole derivatives on the copper corrosion in chloride solutions has been studied. Experiments have been carried on OFHC copper in 0.1 M NaCl solutions with the following tetrazole derivatives at the 10 −3 M concentration: tetrazole (T), 5-mercapto-1-methyl-tetrazole (5Mc-1Me-T), 5-mercapto(Na salt)-1-methyl-tetrazole (5NaMc-1Me-T), 5-mercapto-1-acetic acid(Na salt)-tetrazole (5Mc-1Ac-T), 5-mercapto-1-phenyl-tetrazole (5Mc-1Ph-T), 5-phenyl-tetrazole (5Ph-T) and 5-amino-tetrazole (5NH 2 -T) in the range of pH from 4 to 8 and at temperatures of 40 and 80 °C. Some inhibitors have been studied from 10 −5 to 6 × 10 −3 M. Cathodic and anodic polarisation curves were recorded after 1 h of immersion. Polarisation resistances measurements have been made as a function of the time in the 300 h experiment. The weight loss measurements have confirmed the electrochemical trend. The prefilming action of some tetrazole derivatives has been evaluated. The interaction between the organic molecules and the metal surface has been studied by means of FTIR reflection spectra. All the inhibitors, except the 5Mc-1 Ac-T which stimulates the corrosion, show an inhibiting efficiency from 50 to 99%. In every case the inhibiting efficiency increases with increasing pH value. 5Mc-1Ph-T and 5Ph-T show the better protective characteristics.


Corrosion Science | 1992

The influence of the chromium content on the inhibitive efficiency of some organic compounds

F. Zucchi; G. Trabanelli; G. Brunoro

The inhibitive action of some series of organic compounds against the corrosion of four steels, with increasing Cr content, has been studied. The examined steels were: a low carbon steel, AISI 430. ELI 82 and ELI 84 superferritic steels. The composition of the two last steels was very similar to that of the ferritic phase of duplex steels. The organic compounds, tested in 4 N HCl solutions at 60°C, were: N-containing compounds—2,2′-biquinoline, n-dodecylpyridinium chloride, n-dodecylquinolinium bromide, n-dodecyltrimethylammonium bromide; HS-containing compounds—2 mercaptopyrimidine, 2 mercaptobenzimidazole, n-dibutylthiourea, phenylthiourea; compounds with multiple bonds—1-octyn-3-ol, 1-iodo-1-butyn-3-methyl-3-ol, propargyl alcohol, propargylamine, trans-cinnamaldehyde. Anodic and cathodic polarization curves have been recorded with a scanning rate of 1 mV s−1. The electrochemical results have been confirmed by some series of weight loss determinations. The results showed that the N-containing compounds exerted the same inhibitive effect on all the steels. The inhibitors containing multiple bonds reduced satisfactorily the corrosion of carbon steel and AISI 430, but they were either not efficient or stimulated the corrosion of superferritic steels. The HS-containing compounds usually showed a good inhibition on the superferritic steels; their inhibitive efficiency decreased on carbon steel and approached zero on AISI 430.


Corrosion Science | 1996

The inhibition of copper corrosion in 0.1 M NaCl under heat exchange conditions

F. Zucchi; G. Trabanelli; C. Monticelli

Abstract The inhibiting effects of 5-methylbenzotriazole, 5-chlorobenzotriazole, 5- n -hexylbenzotriazole, 2,4-dimercaptopyrimidine and 2-amino-5-mercaptothiadiazole at 0.1 and 0.5 mM concentrations on the copper corrosion in 0.1 M NaCl solutions under heat exchange conditions ( ΔT = 60 ° C ) are examined. The inhibiting efficiency of the different additives is evaluated from anodic and cathodic polarization curves and from the polarization resistance values after 2 h. The variation of the corrosion rate of copper with time is followed through the measurement of the polarization resistance values for a period of 100 h. The influence of the inhibitors is evaluated by the changes of the polarization resistance values with time. All the tested inhibitors at 0.5 mM concentration show high inhibiting efficiency. Only at 0.1 mM concentration, an appreciable decrease of the inhibiting efficiency of the thiadiazole derivative is observed. The examined compounds can afford protection to an already corroded copper surface, blocking or at least reducing significantly the corrosion process. In all experimental conditions investigated 5- n -hexylbenzotriazole provides the best inhibition efficiency.


Electrochimica Acta | 1998

Study of corrosion inhibition of copper in 0.1 M NaCl using the EQCM technique

M. Fonsati; F. Zucchi; G. Trabanelli

Abstract The inhibition of Cu corrosion in 0.1 M NaCl solution was studied using the EQCM technique. Some organic compounds, at 10 −3 M concentration, were tested as inhibitors. The inhibiting effect of these additives was evaluated by recording the anodic and cathodic polarization curves on Cu, electroplated on quartz crystals. At the same time the mass changes of the electrode, as a function of the potential, were recorded. The formation of the protective film during immersion in distilled water or 0.1 M NaCl solution containing the inhibitors was followed by variation of the EQCM frequency. The protective characteristics of these films were evaluated by the mass variations of the electrode immersed in 0.1 M NaCl solution and by the voltammograms recorded after 1 min or 5 h immersion in 0.1 M NaCl solution. FTIR reflection spectra were recorded on Cu sheets immersed for 1 or 60 min in NaCl solution in the presence of inhibitors. They showed a very rapid interaction between metal surface and organic molecule. The results obtained allow us to conclude that EQCM technique has a valuable part to play in the interpretation of corrosion and corrosion inhibition mechanisms.


Corrosion Science | 2003

Corrosion inhibition of Armco iron in 1 M HCl solution by alkyltriazoles

Driss Chebabe; Z. Ait Chikh; Najat Hajjaji; A. Srhiri; F. Zucchi

Abstract The efficiency of N -decyl, N -undecyl and N -dodecyl-1,2,4-triazole compounds as corrosion inhibitors of Armco iron, has been studied. Using weight loss, and polarization data it has been shown that the N -dodecyl-1,2,4-triazole product was the best inhibitor, which acts on the hydrogen evolution reaction. Potentiodynamic polarization experiments showed that corrosion rate in presence and absence of N -dodecyl-1,2,4-triazole increases with increasing temperature from 30 to 60 °C. The corresponding activation energies were determined. The high inhibition efficiency was obtained at 50 °C in presence of 10 −3 M of N -dodecyl-1,2,4-triazole. The effect of pH was examined from 0 to 3 values and the inhibiting effect decreases when pH value become higher than 2.


Materials and Corrosion-werkstoffe Und Korrosion | 2001

Pitting and stress corrosion cracking resistance of friction stir welded AA 5083

F. Zucchi; G. Trabanelli; V. Grassi

The corrosion behaviour of friction stir welded (FSW) joints of AA 5083 has been compared to that of MIG welded joints. Pitting and stress corrosion cracking (SCC) resistance in 3.5% NaCl + 0.3 g/l H2O2 and in EXCO (4 M KCl + 0.5 M KNO3 + 0.1 M HNO3) solutions has been determined at 25°C. SCC susceptibility was evaluated by slow strain rate tests (SSRT), at a strain rate of 1 × 10−6 s−1.Welds obtained by FSW technique showed a higher corrosion resistance in EXCO solution and a lower pitting tendency than the base alloy. Electrochemical measurements (corrosion potential measurements, polarization curves recording) evidenced that FSW weld was cathodic to base alloy. FSW joints were not susceptible to SCC in both test solutions, whereas MIG joints cracked in both solutions. Lochkorrosions- und Spannungsrisskorrosionswiderstand von ruhrreibgeschweistem Aluminium Al 5083 Das Korrosionsverhalten von ruhrreibgeschweisten Verbindungen aus AA 5083 wurde mit dem von MIG-geschweisten Verbindungen verglichen. Der Lochkorrosions- und Spannungsrisskorrosionswiderstand in einer Losung mit 3,5% NaCl + 0,3 H2O2 und in EXCO-Losung (4 M KCl + 0,5 M KNO3 + 0,1 M HNO3) wurde bei 25°C bestimmt. Die Spannungsrisskorrosionsempfindlichkeit wurde mittels Versuchen mit niedriger Dehngeschwindigkeit (Dehngeschwindigkeit 1 × 10−6 s−1) abgeschatzt. Die mittels Ruhrreibschweisung hergestellten Schweisungen zeigten einen hoheren Korrosionswiderstand in der EXCO-Losung und eine geringere Lochkorrosionsneigung als das Grundmetall. Die elektrochemischen Messungen (Korrosionspotential, Polarisationskurven) wiesen nach, dass die Ruhrreibschweisung sich gegenuber dem Grundmetall kathodisch verhielt. Die ruhrreibgeschweisten Verbindungen waren in beiden Pruflosungen nicht gegenuber Spannungsrisskorrosion empfindlich, wahrend die MIG-Verbindungen in beiden Losungen gebrochen sind.


British Corrosion Journal | 1983

Inhibition of Iron Corrosion in Different Acid Media by N-Decyl- Pyridinium Derivatives

A. Frignani; F. Zucchi; C. Monticelli

AbstractSome derivatives of the N-Decyl-Pyridinium ion (DP) have been tested as iron corrosion inhibitors in sulphuric and hydrochloric acid solutions at 25°c and 70°c. Theseinhibitors were tested both as bromides (in hydrochloric and in sulphuric acid solutions) and as hydroxides or sulphates (in sulphuric acid solutions). The efficiency of theDP ion can be improved by the introduction of suitable subsituents in the 3-position of the aromatic ring. In all the acid solutions tested, the most efficient ion at 25°c proved to be the N-Decyl-3-hydroxy-Pyridinium (D30P) ion, while at 70°C,. the N-Decyl-3-carboxy-Pyridinium (D3CP) ion was the most efficient.These derivativesact mainly by physical adsorption between the organic cations and the anions (Cr− or Br−) pre-adsorbed at the metal surfaceof the electrode. But in order to explain all the experimental data other types of interactions have to be considered, such as: Van der Waals attractive forces between the aliphatic chains, interaction of Πelectrons with...


Journal of Applied Electrochemistry | 1997

Corrosion and corrosion inhibition of alumina particulate/aluminium alloys metal matrix composites in neutral chloride solutions

C. Monticelli; F. Zucchi; G. Brunoro; G. Trabanelli

A study of the corrosion behaviour and corrosion inhibition of AA 6061 and AA 2014 metal matrix composites (MMCs) reinforced with alumina particles, during exposures to 0.1m NaCl solution is reported. Many tungsten and molybdenum-containing inorganic salts were tested as corrosion inhibitors, but only ammonium tetrathiotungstate afforded good inhibiting properties, particularly towards the AA 2014-based MMC. The corrosion behaviour of the composites in uninhibited or inhibited solutions was compared by different techniques to that exhibited by the corresponding matrices. The techniques adopted included weight loss measurements, electron probe microanalysis (EPMA), scanning electron microscopy (SEM), linear polarization resistance measurements, polarization curve recordings and current noise analysis. The analysis of the current fluctuations showed that different patterns of the time records were obtained during pit initiation, stable pitting and general corrosion. The power spectrum density plots exhibited f−α trends, with α values around 20dBdecade−1 when corrosion was mainly localized in pits, while values tending to zero were measured when general corrosion became dominant.


Corrosion Science | 1991

Surface-active substances as inhibitors of localized corrosion of the aluminium alloy AA 6351

C. Monticelli; G. Brunoro; A. Frignani; F. Zucchi

Abstract Some surface-active substances were tested as corrosion inhibitors of the aluminium alloy AA 6351 in 0.01 M NaCl under both free corrosion conditions and anodic polarization. The substances used were sodium salts of N-dodecanoyl-N-methylglycine (NLS), dodecylsulphate (LS), N-dodecanoyl-N-methyltaurine (NLT) and dodecylbenzensulphonate (DBS). The tests performed to measure the efficiencies of these substances and to study their inhibition mechanism (gravimetric measurements, electron probe micro-analysis, potentiodynamic, potentiostatic and galvanostatic tests and electrochemical impedance spectroscopy) suggest that these substances act by adsorption on the aluminium surface oxide and displacement of adsorbed chloride ions. An attempt was made to explain the marked inhibiting properties shown by NLS.

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V. Grassi

University of Ferrara

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G. Gilli

University of Ferrara

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