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Z. LOURENÇO
[08] RAUPACH, M.; BRUNS, M. Effectiveness of a
zinc-hydrogel anode for sacrificial cathodic protection
of reinforced concrete structures. In: INTERNATIONAL
CORROSION CONGRESS, 15., 2002, Granada.
Proceedings
… Granada: Ministry of Science and
Technology, 2002. Paper 098.
[09] BENNETT, J.; TURK, T.
Technical alert
: criteria for
the cathodic protection of reinforced concrete bridge
elements. Washington: SHRP, 1994. 14p.
(SHRP-S-359).
[10] GLASS, G. K.; HASSANEIN, A.M.; BUENFELD, N.R.
CP criteria for reinforced concrete in marine exposure
zones.
Journal of Materials in Civil Engineering
,
New York, p.164-171, may, 2000.
[11] LOURENÇO, Z. Protecção catódica de estruturas de
betão armado.
Corrosão e Protecção de Materiais
,
Lisboa, vol. 26, n.3, p.79-85, jul. 2007.
[12] LOURENÇO, Z.; COSTA, J. P. Reabilitação de
estruturas de betão armado utilizando técnicas
electroquímicas. In: ENCONTRO SOBRE
CONSERVAÇÃO E REABILITAÇÃO DE EDIFÍCIOS,
3., 2003, Lisboa.
Anais
... Lisboa: LNEC, 2003.
[13] AMERICAN CONCRETE INSTITUTE. 222.3R: design
and construction practices to mitigate corrosion of
reinforcement in concrete structures. Michigan, 2001.
29p.
[14] NATIONAL ASSOCIATION OF CORROSION
ENGINEERS. 01105: sacrificial cathodic protection
of reinforcing elements – a state-of-the-art report.
Houston, 2005. 15p.
[15] LENG, D. L.; POWERS, R. G.; LASA, I. R. Zinc mesh
cathodic protection systems. In: ANNUAL
CONFERENCE AND EXPOSITION, CORROSION,
55., 2000, Orlando. Proceedings… 17p. (Paper 795).
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