Abstract In this paper, blast furnace gas dust removal system were introduced research status of blast furnace gas to make a description of corrosion。 Simulation of blast furnace gas pipeline corrosion environment, design experiments, using a constant temperature water bath so that Q235B steel corrosion test carried out at different temperatures。 Configuration containing Cl-, influence SO42-, NO3-concentration of several different solutions, through weight loss study ion concentration in the solution of the corrosion rate generated。 Measured by chemical station steel corrosion in HCl solution curve and its simple analysis。 Finally, using a scanning electron microscope to observe the surface morphology after corrosion, and analyze its corrosion。
Experimental results show that at 60 ℃, 70 ℃, 80 ℃, 90 ℃ under four temperature conditions, 90 ℃ when the corrosion rate of the fastest, at 70 ℃ relatively low corrosion rate。 In the case of the same PH value and temperature, Cl- and NO3- corrosion rate of the steel plate faster than SO42-, wherein the corrosion rate of the fastest Cl-, NO3- second。 When the solution is a relatively low concentration of Cl-, the concentration increases, the corrosion rate increases。 When the high Cl- concentration in the solution, the concentration increases, the corrosion rate decreases。 SO42- and NO3- concentration in the solution increases, the corrosion rate decreased slightly。 The corrosion current density higher steel in chloride ion corrosion polarization curve polarization potential more negative。
By experiment, at 70 ℃, acid corrosion rate is the lowest。 Chloride ions on the corrosion rate of steel fastest, followed by nitrate ions, the corrosion rate is the lowest sulfate ions。 Solution of chlorine ion content relationship with the corrosion rate of the complex, the content of the solution nitrate ions and sulfate ions increases, the corrosion rate decreases slightly。
Keywords:Blast furnace gas;Pipeline Corrosion;Q235B steel;Corrosion rate