SOSA E, ALVAREZ R J. Timecorrelations in the dynamics of hazardous material pipelines incidents[J]. J Hazard Mater, 2009, 165(3): 1204-1209.
[2]
LI D G, FENG Y R, BAI Z Q, et al. Photoelectrochemical analysis of passive film formed on X80 pipeline steel in bicarbonate/carbonate buffer solution [J]. Appl Surf Sci, 2009, 254(9): 2837-2843.
[3]
ISMAIL A I M, EISHAMY A M. Engineering behaviour of soil materials on the corrosion of mild steel[J]. Appl Clay Sci, 2009, 42 (3): 356-362.
ALAMILLA J L, ESPINOSAMEDINA, SOSA E. Modelling steel corrosion damage in soil environment[J]. Corros Sci, 2009, 51(11): 2628-2638.
[6]
LI S Y, JUNG S W, PARK K W, et al. Kinetic study on corrosion of steel in soil environments using electrical resistance sensor technique[J]. Mater Chem Phys, 2007, 103(1): 9-13.
[7]
M FERREIR C A, PONCIANO J A C, VAITSMAN, et al. Evaluation of the corrosivity of the soil through its chemical composition[J]. Sci Total Environ, 2007, 388(2): 250-255.
LIANG P, LI X G, DU C W, et al. Stress corrosion cracking of X80 pipeline steel in simulated alkaline soil solution[J]. Mater Des, 2009, 30(5): 1712-1717.
[11]
LIANG P, DU C W, LI X G, et al. Effect of hydrogen on the stress corrosion cracking behavior of X80 pipeline steel in Ku’erle soil simulated solution[J]. Int J Miner Metall Mater, 2009, 16(4): 407-413.