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Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 31, 2015 - Issue 1
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Articles

Influence of Crassostrea gigas on the permeability and microstructure of the surface layer of concrete exposed to the tidal zone of the Yellow Sea

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Pages 61-70 | Received 23 Mar 2014, Accepted 12 Dec 2014, Published online: 13 Jan 2015

References

  • Abdul Azis PK, Al-Tisan I, Sasikumar N. 2001. Biofouling potential and environmental factors of seawater at a desalination plant intake. Desalination. 135:69–82.10.1016/S0011-9164(01)00140-0
  • Almusallam AA, Khan FM, Dulaijan SU, Al-Amoudi OSB. 2003. Effectiveness of surface coatings in improving concrete durability. Cem Concr Comp. 25:473–481.10.1016/S0958-9465(02)00087-2
  • Al-Zahrani MM, Al-Dulaijan SU, Ibrahim M, Saricimen H, Sharif FM. 2002. Effect of water proofing coatings on steel reinforcement corrosion and physical properties of concrete. Cem Concr Comp. 24:127–137.10.1016/S0958-9465(01)00033-6
  • ASTM C1202. 2005. Standard test method for electrical indication of concrete’s ability to resist chloride ion penetration. West Conshohocken: ASTM.
  • Benson PH, Brining DL, Perrin DW. 1973. Marine fouling and its prevention. Mar Technol Soc J. 10:30–37.
  • CEN/TC 104. 2007. BS EN 14629, Products and systems for the protection and repair of concrete structures – Test methods – Determination of chloride content in hardened concrete. London: British Standards Institute.
  • Cranfield HJ. 1973a. Observations on function of glands of foot of pediveliger of Ostrea edulis during settlement. Mar Biol. 22:211–223.10.1007/BF00389175
  • Cranfield HJ. 1973b. Observations on the behavior of pediveliger of Ostrea edulis during attachment and cementing. Mar Biol. 22:203–209.10.1007/BF00389174
  • Cranfield HJ. 1974. Observations on the morphology of the mantle folds of the pediveliger of Ostrea edulis and their function during settlement. J Mar Biol Ass UK. 54:1–12.10.1017/S0025315400022062
  • Dai JG, Akira Y, Wittmann FH, Yokota H, Zhang P. 2010. Water repellent surface impregnation for extension of service life of reinforced concrete structures in marine environments: the role of cracks. Cem Concr Comp. 32:101–109.10.1016/j.cemconcomp.2009.11.001
  • Dobretsov S, Dahms HU, Qian PY. 2006. Inhibition of biofouling by marine microorganisms and their metabolites. Biofouling. 22:43–54.10.1080/08927010500504784
  • Gjorv O. 2009. Durability design of concrete structures in severe environments. Abingdon: Taylor & Francis.
  • Henderson P. 2010. Fouling and antifouling in other industries – power stations, desalination plants – drinking water supplies and sensors. In: Dürr S, Thomason JC, editors. Biofouling. Singapore: Wiley-Blackwell; p. 288–305.
  • Hooton RD, Bickley JA. 2014. Design for durability: the key to improving concrete sustainability. Constr Build Mater. 67(C):422–430.10.1016/j.conbuildmat.2013.12.016
  • James RJ, Underwood AJ. 1994. Influence of colour of substratum on recruitment of spirorbid tubeworms to different types of intertidal boulders. J Exp Mar Biol Ecol. 181:105–115.10.1016/0022-0981(94)90107-4
  • Kim HS, Kim CG, Na WB, Kim JK. 2008. Chemical degradation characteristics of reinforced concrete reefs in South Korea. Ocean Eng. 35:738–748.10.1016/j.oceaneng.2008.02.003
  • Kwon SJ, Na UJ, Park SS, Jung SH. 2009. Service life prediction of concrete wharves with early-aged crack: probabilistic approach for chloride diffusion. Struct Saf. 31:75–83.10.1016/j.strusafe.2008.03.004
  • MacDonald J, Freer A, Cusack M. 2010. Attachment of oysters to natural substrata by biologically induced marine carbonate cement. Mar Biol. 157:2087–2095.10.1007/s00227-010-1476-7
  • Marzinelli EM. 2012. Artificial structures influence fouling on habitat-forming kelps. Biofouling. 28:339–349.10.1080/08927014.2012.674518
  • Melchers RE, Li CQ. 2009. Reinforcement corrosion initiation and activation times in concrete structures exposed to severe marine environments. Cem Concr Res. 39:1068–1076.10.1016/j.cemconres.2009.07.003
  • Page CL. 1975. Mechanism of corrosion protection in reinforced concrete marine structures. Nature. 258:514–515.10.1038/258514a0
  • Page HM, Dugan JE, Piltz F. 2010. Fouling and antifouling in oil and other offshore industries. In: Dürr S, Thomason JC, editors. Biofouling. Singapore: Wiley-Blackwell; p. 252–266.
  • Palanichamy S, Subramanian G, Eashwar M. 2012. Corrosion behaviour and biofouling characteristics of structural steel in the coastal waters of the Gulf of Mannar (Bay of Bengal), India. Biofouling. 28:441–451.10.1080/08927014.2012.684947
  • Pech-Canul MA, Castro P. 2002. Corrosion measurements of steel reinforcement in concrete exposed to a tropical marine atmosphere. Cem Concr Res. 32:491–498.10.1016/S0008-8846(01)00713-X
  • Ransinchung GD, Kumar B, Kumar V. 2009. Assessment of water absorption and chloride ion penetration of pavement quality concrete admixed with wollastonite and microsilica. Constr Build Mater. 23:1168–1177.10.1016/j.conbuildmat.2008.06.011
  • Rincón OTD, Sanchez M, Millano V, Fernández R, Partidas EAD, Andrade C, Martínez I, Castellote M, Barboza M, Irassar F, et al. 2007. Effect of the marine environment on reinforced concrete durability in Iberoamerican countries: DURACON project/CYTED. Corros Sci. 49:2832–2843.
  • Schultz MP. 2007. Effects of coating roughness and biofouling on ship resistance and powering. Biofouling. 23:331–341.10.1080/08927010701461974
  • Schultz MP, Bendick JA, Holm ER, Hertel WM. 2011. Economic impact of biofouling on a naval surface ship. Biofouling. 27:87–98.10.1080/08927014.2010.542809
  • Schumacher MM. 1979. Seawater corrosion handbook. Park Ridge (NJ): Noyes Data Corp.
  • Scyphers SB, Powers SP, Heck KJ, Byron D. 2011. Oyster Reefs as natural breakwaters mitigate shoreline loss and facilitate fisheries. Plos One. 6:e22396.10.1371/journal.pone.0022396
  • Song HW, Lee CH, Ann KY. 2008. Factors influencing chloride transport in concrete structures exposed to marine environments. Cem Concr Comp. 30:113–121.10.1016/j.cemconcomp.2007.09.005
  • Song HW, Shim HB, Petcherdchoo A, Park SK. 2009. Service life prediction of repaired concrete structures under chloride environment using finite difference method. Cem Concr Comp. 31:120–127.10.1016/j.cemconcomp.2008.11.002
  • Southwell CR, Bultman JD, Hummer CW. 1974. Influence of marine organisms on the life of structural steels in seawater. Washington (DC): Naval Research Laboratory. ( AD–777719).
  • Wahl M. 1997. Living attached: aufwuchs, fouling, epibiosis. In: Nagabhushanam R, Thompson M, editors. Fouling organisms of the Indian Ocean: biology and control technology. New Delhi: Oxford & IBH Publishing Company; p. 31–84.
  • Wu ZW, Lian HZ. 1999. High performance concrete. Beijing: Railway Press of China. Chinese.
  • Yamaguchi K. 1994. Shell structure and behaviour related to cementation in oysters. Mar biol. 118:89–100.10.1007/BF00699222
  • Yan T, Yan WX. 2003. Fouling of offshore structures in China – a review. Biofouling. 19(S1):133–138.10.1080/0892701021000057927
  • Ye HL, Jin NG, Jin XY, Fu CQ. 2012. Model of chloride penetration into cracked concrete subject to drying–wetting cycles. Constr Build Mater. 36:259–269.10.1016/j.conbuildmat.2012.05.027
  • Yoon GL, Kim BT, Kim BO, Han SH. 2003. Chemical–mechanical characteristics of crushed oyster-shell. Waste Manage. 23:825–834.10.1016/S0956-053X(02)00159-9
  • Zhang WM. 2006. Accelerated life test and service life prediction with chloride of concrete structure [dissertation]. Harbin: Harbin Institute of Technology.
  • Zhu YG, Kou SC, Poon CS, Dai JG, Li QY. 2013. Influence of silane-based water repellent on the durability properties of recycled aggregate concrete. Cem Concr Comp. 35:32–38.10.1016/j.cemconcomp.2012.08.008

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