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Published in: Journal of Coatings Technology and Research 4/2017

08-05-2017

Influence of pH in the synthesis of ferric tannate pigment for application in antifouling coatings

Authors: Rafael S. Peres, Ariane V. Zmozinski, Juan A. Moreno-Martínez, Elaine Armelin, Carlos Alemán, Carlos A. Ferreira

Published in: Journal of Coatings Technology and Research | Issue 4/2017

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Abstract

Ferric tannate was synthesized at pH 4 and pH 7 (FT4 and FT7, respectively) as a new class of environmentally friendly antifouling pigments. The solubility of both pigments was evaluated by gravimetric tests, showing that FT4 is more soluble than FT7. A mixture of rosin/acrylic resin (9:1 w/w) was sufficient to form an antifouling coating due to improved matrix properties. Electrochemical impedance spectroscopy (EIS) measurements were used to determine the apparent water coefficient of diffusion (D) and coating behavior. The D in the coating formulated with FT4 exhibited better values than that obtained with FT7. EIS results showed that both coatings present Fickian behavior at the initial stages of immersion, while flat Nyquist plots revealed penetration of water in the films. The physicochemical characteristics of FT4 pigment were determined by thermogravimetry and Fourier transform infrared. Immersion tests in the Mediterranean Sea demonstrated the excellent efficacy of the FT4-containing coating against marine fouling after six months of immersion.

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Literature
1.
go back to reference Yebra, DM, Kiil, S, Dam-Johansen, K, “Antifouling Technology—Past, Present and Future Steps Towards Efficient and Environmentally Friendly Antifouling Coatings.” Prog. Org. Coat., 50 (2) 75–104 (2004)CrossRef Yebra, DM, Kiil, S, Dam-Johansen, K, “Antifouling Technology—Past, Present and Future Steps Towards Efficient and Environmentally Friendly Antifouling Coatings.” Prog. Org. Coat., 50 (2) 75–104 (2004)CrossRef
2.
go back to reference Schultz, MP, Bendick, JA, Holm, ER, Hertel, WM, “Economic Impact of Biofouling on a Naval Surface Ship.” Biofouling, 27 (1) 87–98 (2010)CrossRef Schultz, MP, Bendick, JA, Holm, ER, Hertel, WM, “Economic Impact of Biofouling on a Naval Surface Ship.” Biofouling, 27 (1) 87–98 (2010)CrossRef
3.
go back to reference Pérez, M, Blustein, G, García, M, del Amo, B, Stupak, M, “Cupric Tannate: A Low Copper Content Antifouling Pigment.” Prog. Org. Coat., 55 (4) 311–315 (2006)CrossRef Pérez, M, Blustein, G, García, M, del Amo, B, Stupak, M, “Cupric Tannate: A Low Copper Content Antifouling Pigment.” Prog. Org. Coat., 55 (4) 311–315 (2006)CrossRef
4.
go back to reference Voulvoulis, N, Scrimshaw, MD, Lester, JN, “Comparative Environmental Assessment of Biocides Used in Antifouling Paints.” Chemosphere, 47 (7) 789–795 (2002)CrossRef Voulvoulis, N, Scrimshaw, MD, Lester, JN, “Comparative Environmental Assessment of Biocides Used in Antifouling Paints.” Chemosphere, 47 (7) 789–795 (2002)CrossRef
5.
go back to reference Fusetani, N, “Antifouling Marine Natural Products.” Nat. Prod. Rep., 28 (2) 400–410 (2011)CrossRef Fusetani, N, “Antifouling Marine Natural Products.” Nat. Prod. Rep., 28 (2) 400–410 (2011)CrossRef
6.
go back to reference Callow, ME, Callow, JA, “Marine Biofouling: A Sticky Problem.” Biologist, 49 (1) 1–5 (2002) Callow, ME, Callow, JA, “Marine Biofouling: A Sticky Problem.” Biologist, 49 (1) 1–5 (2002)
7.
go back to reference Iyapparaj, P, Revathi, P, Ramasubburayan, R, Prakash, S, Palavesam, A, Immanuel, G, Anantharaman, P, Sautreau, A, Hellio, C, “Antifouling and Toxic Properties of the Bioactive Metabolites from the Seagrasses Syringodium isoetifolium and Cymodocea Serrulata.” Ecotoxicol. Environ. Saf., 103 54–60 (2014)CrossRef Iyapparaj, P, Revathi, P, Ramasubburayan, R, Prakash, S, Palavesam, A, Immanuel, G, Anantharaman, P, Sautreau, A, Hellio, C, “Antifouling and Toxic Properties of the Bioactive Metabolites from the Seagrasses Syringodium isoetifolium and Cymodocea Serrulata.” Ecotoxicol. Environ. Saf., 103 54–60 (2014)CrossRef
8.
go back to reference Gao, M, Su, R, Wang, K, Li, X, Lu, W, “Natural Antifouling Compounds Produced by a Novel Fungus Aureobasidium pullulans HN Isolated from Marine Biofilm.” Mar. Pollut. Bull., 77 (1–2) 172–176 (2013)CrossRef Gao, M, Su, R, Wang, K, Li, X, Lu, W, “Natural Antifouling Compounds Produced by a Novel Fungus Aureobasidium pullulans HN Isolated from Marine Biofilm.” Mar. Pollut. Bull., 77 (1–2) 172–176 (2013)CrossRef
9.
go back to reference Sieburth, JM, Conover, JT, “Sargassum Tannin, an Antibiotic Which Retards Fouling.” Nature, 208 52–53 (1965)CrossRef Sieburth, JM, Conover, JT, “Sargassum Tannin, an Antibiotic Which Retards Fouling.” Nature, 208 52–53 (1965)CrossRef
10.
go back to reference Belgacem, MN, Gandini, A, Monomers, Polymers and Composites from Renewable Resources. Elsevier, Amsterdam (2011) Belgacem, MN, Gandini, A, Monomers, Polymers and Composites from Renewable Resources. Elsevier, Amsterdam (2011)
11.
go back to reference Zmozinski, AV, Pretto, T, Borges, AR, Vale, MGR, “Determination of Cd and Cr in Tannin Samples by High-Resolution Continuum Source Graphite Furnace Atomic Absorption Spectrometry and Direct Solid Sample Sequential Analysis (HR-CS SS-GF AAS).” Anal. Methods, 7 (9) 3735–3741 (2015)CrossRef Zmozinski, AV, Pretto, T, Borges, AR, Vale, MGR, “Determination of Cd and Cr in Tannin Samples by High-Resolution Continuum Source Graphite Furnace Atomic Absorption Spectrometry and Direct Solid Sample Sequential Analysis (HR-CS SS-GF AAS).” Anal. Methods, 7 (9) 3735–3741 (2015)CrossRef
12.
go back to reference Tikoo, K, Sane, MS, Gupta, C, “Tannic Acid Ameliorates Doxorubicin-Induced Cardiotoxicity and Potentiates its Anti-cancer Activity: Potential Role of Tannins in Cancer Chemotherapy.” Toxicol. Appl. Pharmacol., 251 (3) 191–200 (2011)CrossRef Tikoo, K, Sane, MS, Gupta, C, “Tannic Acid Ameliorates Doxorubicin-Induced Cardiotoxicity and Potentiates its Anti-cancer Activity: Potential Role of Tannins in Cancer Chemotherapy.” Toxicol. Appl. Pharmacol., 251 (3) 191–200 (2011)CrossRef
13.
go back to reference Slabbert, N, “Complexation of Condensed Tannins with Metal Ions.” In: Hemingway, R, Laks, P (eds.) Plant Polyphenols, pp. 421–436. Springer, US (1992)CrossRef Slabbert, N, “Complexation of Condensed Tannins with Metal Ions.” In: Hemingway, R, Laks, P (eds.) Plant Polyphenols, pp. 421–436. Springer, US (1992)CrossRef
14.
go back to reference Bellotti, N, del Amo, B, Romagnoli, R, “Quaternary Ammonium “Tannate” for Antifouling Coatings.” Ind. Eng. Chem. Res., 51 (51) 16626–16632 (2012)CrossRef Bellotti, N, del Amo, B, Romagnoli, R, “Quaternary Ammonium “Tannate” for Antifouling Coatings.” Ind. Eng. Chem. Res., 51 (51) 16626–16632 (2012)CrossRef
15.
go back to reference Bellotti, N, Deyá, C, del Amo, B, Romagnoli, R, “‘Quebracho’ Tannin Derivative and Boosters Biocides for New Antifouling Formulations.” J. Coat. Technol. Res., 9 (5) 551–559 (2012)CrossRef Bellotti, N, Deyá, C, del Amo, B, Romagnoli, R, “‘Quebracho’ Tannin Derivative and Boosters Biocides for New Antifouling Formulations.” J. Coat. Technol. Res., 9 (5) 551–559 (2012)CrossRef
16.
go back to reference Bellotti, N, Deyá, C, del Amo, B, Romagnoli, R, “Antifouling Paints with Zinc “Tannate”.” Ind. Eng. Chem. Res., 49 (7) 3386–3390 (2010)CrossRef Bellotti, N, Deyá, C, del Amo, B, Romagnoli, R, “Antifouling Paints with Zinc “Tannate”.” Ind. Eng. Chem. Res., 49 (7) 3386–3390 (2010)CrossRef
17.
go back to reference Pérez, M, Garcia, M, Blustein, G, Stupak, M, “Tannin and Tannate from the Quebracho Tree: An Eco-friendly Alternative for Controlling Marine Biofouling.” Biofouling, 23 (3) 151–159 (2007)CrossRef Pérez, M, Garcia, M, Blustein, G, Stupak, M, “Tannin and Tannate from the Quebracho Tree: An Eco-friendly Alternative for Controlling Marine Biofouling.” Biofouling, 23 (3) 151–159 (2007)CrossRef
18.
go back to reference Bellotti, N, del Amo, B, Romagnoli, R, “Tara Tannin a Natural Product with Antifouling Coating Application.” Prog. Org. Coat., 74 (3) 411–417 (2012)CrossRef Bellotti, N, del Amo, B, Romagnoli, R, “Tara Tannin a Natural Product with Antifouling Coating Application.” Prog. Org. Coat., 74 (3) 411–417 (2012)CrossRef
19.
go back to reference Bellotti, N, del Amo, B, Romagnoli, R, “Caesalpinia Spinosa Tannin Derivatives for Antifouling Formulations.” Procedia Mater. Sci., 1 259–265 (2012)CrossRef Bellotti, N, del Amo, B, Romagnoli, R, “Caesalpinia Spinosa Tannin Derivatives for Antifouling Formulations.” Procedia Mater. Sci., 1 259–265 (2012)CrossRef
20.
go back to reference Arai, T, Harino, H, Ohji, M, Langston, WJ, Ecotoxicology of Antifouling Biocides. Springer, Tokyo (2009)CrossRef Arai, T, Harino, H, Ohji, M, Langston, WJ, Ecotoxicology of Antifouling Biocides. Springer, Tokyo (2009)CrossRef
21.
go back to reference Ejima, H, Richardson, JJ, Liang, K, Best, JP, van Koeverden, MP, Such, GK, Cui, J, Caruso, F, “One-Step Assembly of Coordination Complexes for Versatile Film and Particle Engineering.” Science, 341 (6142) 154–157 (2013)CrossRef Ejima, H, Richardson, JJ, Liang, K, Best, JP, van Koeverden, MP, Such, GK, Cui, J, Caruso, F, “One-Step Assembly of Coordination Complexes for Versatile Film and Particle Engineering.” Science, 341 (6142) 154–157 (2013)CrossRef
22.
go back to reference Gust, J, Suwalski, J, “Use of Mössbauer Spectroscopy to Study Reaction Products of Polyphenols and Iron Compounds.” Corrosion, 50 (5) 355–365 (1994)CrossRef Gust, J, Suwalski, J, “Use of Mössbauer Spectroscopy to Study Reaction Products of Polyphenols and Iron Compounds.” Corrosion, 50 (5) 355–365 (1994)CrossRef
23.
go back to reference Kiil, S, Weinell, CE, Pedersen, MS, Dam-Johansen, K, “Mathematical Modelling of a Self-polishing Antifouling Paint Exposed to Seawater: A Parameter Study.” Chem. Eng. Res. Des., 80 (1) 45–52 (2002)CrossRef Kiil, S, Weinell, CE, Pedersen, MS, Dam-Johansen, K, “Mathematical Modelling of a Self-polishing Antifouling Paint Exposed to Seawater: A Parameter Study.” Chem. Eng. Res. Des., 80 (1) 45–52 (2002)CrossRef
24.
go back to reference Peres, RS, Baldissera, AF, Armelin, E, Alemán, C, Ferreira, CA, “Marine-Friendly Antifouling Coating based on the Use of a Fatty Acid Derivative as a Pigment.” Mater. Res., 17 720–727 (2014)CrossRef Peres, RS, Baldissera, AF, Armelin, E, Alemán, C, Ferreira, CA, “Marine-Friendly Antifouling Coating based on the Use of a Fatty Acid Derivative as a Pigment.” Mater. Res., 17 720–727 (2014)CrossRef
25.
go back to reference Peres, RS, Armelin, E, Moreno-Martínez, JA, Alemán, C, Ferreira, CA, “Transport and Antifouling Properties of Papain-Based Antifouling Coatings.” Appl. Surf. Sci., 341 75–85 (2015)CrossRef Peres, RS, Armelin, E, Moreno-Martínez, JA, Alemán, C, Ferreira, CA, “Transport and Antifouling Properties of Papain-Based Antifouling Coatings.” Appl. Surf. Sci., 341 75–85 (2015)CrossRef
26.
go back to reference Yebra, DM, Kiil, S, Dam-Johansen, K, Weinell, C, “Reaction Rate Estimation of Controlled-Release Antifouling Paint Binders: Rosin-Based Systems.” Prog. Org. Coat., 53 (4) 256–275 (2005)CrossRef Yebra, DM, Kiil, S, Dam-Johansen, K, Weinell, C, “Reaction Rate Estimation of Controlled-Release Antifouling Paint Binders: Rosin-Based Systems.” Prog. Org. Coat., 53 (4) 256–275 (2005)CrossRef
27.
go back to reference Rascio, VJD, Giúdice, CA, del Amo, B, “Research and Development of Soluble Matrix Antifouling Paints for Ships, Offshore Platforms, and Power Stations—A Review.” Corros. Rev., 8 (1–2) 87–153 (1988) Rascio, VJD, Giúdice, CA, del Amo, B, “Research and Development of Soluble Matrix Antifouling Paints for Ships, Offshore Platforms, and Power Stations—A Review.” Corros. Rev., 8 (1–2) 87–153 (1988)
28.
go back to reference Bressy, C, Hugues, C, Margaillan, A, “Characterization of Chemically Active Antifouling Paints Using Electrochemical Impedance Spectrometry and Erosion Tests.” Prog. Org. Coat., 64 (1) 89–97 (2009)CrossRef Bressy, C, Hugues, C, Margaillan, A, “Characterization of Chemically Active Antifouling Paints Using Electrochemical Impedance Spectrometry and Erosion Tests.” Prog. Org. Coat., 64 (1) 89–97 (2009)CrossRef
29.
go back to reference Chambers, LD, Whartona, JA, Wooda, RJK, Walsha, FC, Stokes, KR, “Techniques for the Measurement of Natural Product Incorporation into an Antifouling Coating.” Prog. Org. Coat., 77 (2) 473–484 (2014)CrossRef Chambers, LD, Whartona, JA, Wooda, RJK, Walsha, FC, Stokes, KR, “Techniques for the Measurement of Natural Product Incorporation into an Antifouling Coating.” Prog. Org. Coat., 77 (2) 473–484 (2014)CrossRef
30.
go back to reference Grundmeier, G, Schmidt, W, Stratmann, M, “Corrosion Protection by Organic Coatings: Electrochemical Mechanism and Novel Methods of Investigation.” Electrochem. Acta, 45 (15–16) 2515–2533 (2000)CrossRef Grundmeier, G, Schmidt, W, Stratmann, M, “Corrosion Protection by Organic Coatings: Electrochemical Mechanism and Novel Methods of Investigation.” Electrochem. Acta, 45 (15–16) 2515–2533 (2000)CrossRef
31.
go back to reference Brasher, DM, Kingsbury, AH, “Electrical Measurements in the Study of Immersed Paint Coatings on Metal. I. Comparison Between Capacitance and Gravimetric Methods of Estimating Water-Uptake.” J. Appl. Chem., 4 (2) 62–72 (1954)CrossRef Brasher, DM, Kingsbury, AH, “Electrical Measurements in the Study of Immersed Paint Coatings on Metal. I. Comparison Between Capacitance and Gravimetric Methods of Estimating Water-Uptake.” J. Appl. Chem., 4 (2) 62–72 (1954)CrossRef
32.
go back to reference Pogany, GA, “Anomalous Diffusion of Water in Glassy Polymers.” Polymer, 17 (8) 690–694 (1976)CrossRef Pogany, GA, “Anomalous Diffusion of Water in Glassy Polymers.” Polymer, 17 (8) 690–694 (1976)CrossRef
33.
go back to reference Orazem, ME, Tribollet, B, Electrochemical Impedance Spectroscopy. Wiley, New York (2011) Orazem, ME, Tribollet, B, Electrochemical Impedance Spectroscopy. Wiley, New York (2011)
34.
go back to reference Zhang, R, Li, L, Liu, J, “Synthesis and Characterization of Ferric Tannate as a Novel Porous Adsorptive-Catalyst for Nitrogen Removal from Wastewater.” RSC Adv., 5 (51) 40785–40791 (2015)CrossRef Zhang, R, Li, L, Liu, J, “Synthesis and Characterization of Ferric Tannate as a Novel Porous Adsorptive-Catalyst for Nitrogen Removal from Wastewater.” RSC Adv., 5 (51) 40785–40791 (2015)CrossRef
Metadata
Title
Influence of pH in the synthesis of ferric tannate pigment for application in antifouling coatings
Authors
Rafael S. Peres
Ariane V. Zmozinski
Juan A. Moreno-Martínez
Elaine Armelin
Carlos Alemán
Carlos A. Ferreira
Publication date
08-05-2017
Publisher
Springer US
Published in
Journal of Coatings Technology and Research / Issue 4/2017
Print ISSN: 1547-0091
Electronic ISSN: 1935-3804
DOI
https://doi.org/10.1007/s11998-016-9904-3

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