Journal of Minerals and Materials Characterization and Engineering

Volume 10, Issue 2 (February 2011)

ISSN Print: 2327-4077   ISSN Online: 2327-4085

Google-based Impact Factor: 1  Citations  

Effects of Zinc Addition on the Performance of Aluminium as Sacrificial Anode in Seawater

HTML  Download Download as PDF (Size: 3168KB)  PP. 185-198  
DOI: 10.4236/jmmce.2011.102013    8,451 Downloads   10,807 Views  Citations
Author(s)

ABSTRACT

In this work, the effect of zinc addition on the performance of aluminium-based sacrificial anode in seawater was investigated. The parameters used in assessing the performance of the cast anodes are anodic efficiency, protection efficiency and polarized potential. The percentages of Zn in the anodes were varied from 1 to 8%Zn. The alloys produced were tested as sacrificial anode for the protection of mild steel in seawater at room temperature. Current efficiency as high as 86.69% was achieved at 6%Zn in the alloys. The polarized potential obtained for the couples(steel/Al based alloys) are as given in the pourbaix diagrams with the steel lying within the immunity region/cathodic region ( S-0.5V SHE) and the sacrificial anodes within the anodic region. The protection offered by the sacrificial anodes to the steel after the 7th and 8th week were measured. Protection efficiency values as high as 99.26% and 99.13% were achieved after the 7th and 8th with Al-6%Zn. The microstructure showed the intermetallic structures of β-phase which breakdown the alumina passive film and thus enhancing the anode efficiency.

Share and Cite:

A. Muazu and S. Yaro, "Effects of Zinc Addition on the Performance of Aluminium as Sacrificial Anode in Seawater," Journal of Minerals and Materials Characterization and Engineering, Vol. 10 No. 2, 2011, pp. 185-198. doi: 10.4236/jmmce.2011.102013.

Cited by

[1] High Phosphorus Pig Iron as Sacrificial Anode in Seawater
Journal of Materials …, 2022
[2] Simulasi Pengaruh Penambahan Aluminium dan Magnesium terhadap Anoda Korban Seng untuk Aplikasi Air Laut
Jurnal Penelitian Rumpun Ilmu Teknik, 2022
[3] The influence of temperature and dissolved oxygen on the electrochemical nature of Al–Zn–In–Ga galvanic anode
Surface Topography: Metrology and …, 2021
[4] Optimization of aluminium and magnesium addition in the sacrificed anode zinc alloy for seawater applications
AIP Conference …, 2021
[5] The effect of Magnesium addition on the performance of Aluminium-Zinc–Copper alloy as a sacrificial anode in seawater
2020
[6] Study on the Electrochemical Behavior of Al-6Zn-0.02 In-1Mg-0.03 Ti Sacrificial Anodes for Long-Term Corrosion Protection in the Ocean
2020
[7] Proteksi Katodik pada Elektrode Zn Metode Sacrificial Anode untuk Peningkatan Kinerja Sistem Akumulator Air Laut
2020
[8] Effect Of Silicon On Corrosion Behaviour Of Al-Zn As A Low Voltage Sacrificial Anode For Marine Environment
2019
[9] Study of Al-Zn-Cu-Sm Efficiency for Low-Voltage Sacrificial Anode Candidate
2019
[10] The Effect of Neodymium on the Solidification Process of Al-5Zn-0, 5Cu Alloy Sacrificial Anode
2019
[11] Effect of samarium in Al-Zn-Cu as a micro-alloying element for low voltage sacrificial anode
2018
[12] Development of Al-Zn-Cu Alloy for Low Voltage Aluminum Sacrificial Anode
Procedia Engineering, 2017
[13] Effect of Copper and Silicon on Al-5% Zn Alloy as a Candidate Low Voltage Sacrificial Anode
IOP Conference Series: Materials Science and Engineering, 2017
[14] Effect of zinc addition on the performance of aluminium alloy sacrificial anode for marine application
AIP Conference Proceedings, 2017
[15] Effet d'immersion sur le comportement eléctrochimique d'AL et de ses alliages dans une solution a 3% en poids de NACL
2017
[16] Sacrificial anode stability and polarization potential variation in a ternary Al-xZn-xMg alloy in a seawater-marine environment
Journal of Marine Science and Application, 2016
[17] Investigation of New, Low-Voltage, Aluminum, Sacrificial Anode Chemistries
2014
[18] The effect of metallic oxide deposition on the electrochemical behaviour of Al-Zn-Mg-Sn alloy in natural tropical seawater
IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2014
[19] Zn, In 含量对Al—Zn—In 合金电化学性能和硬度的影响
铸造, 2014
[20] Paper No. Cll16
[21] A Review on Effect of Alloying Element on Aluminium Anode

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.