Literature DB >> 30799910

In-situ 2D maps of pH shifts across brass-lead galvanic joints using microelectrodes.

Xiangmeng Ma1, Woo Hyoung Lee1, Darren A Lytle2.   

Abstract

Galvanic corrosion in drinking water distribution systems, such as conditions following partial lead (Pb) service line replacement, has received recent attention. In order to better understand conditions at galvanic connections that lead to enhanced metal release and provide remedial strategies, the water-metal and anodic-cathodic interfaces at these locations must be better understood. In this paper, a pH microelectrode system was used to create in-situ 2D spatial images of the pH of water across two brass coupons connected by a leaded solder joint at 100 μm above the metal's surface under flowing and stagnation conditions. Water stagnation resulted in significant pH changes across the surfaces compared to flow condition. Under stagnation, the pH above the anode (leaded solder) was 1.5 pH units below the bulk water and as much as 2.5 units below the cathode (brass). These conditions can enhance lead release at the anode, which reflects different anodic-cathodic relationships of coupled metals primarily controlled by water flow. Most importantly, this work has demonstrated the ability to make real pH measurement at the surface of corroding metals using a novel microelectrode approach.

Entities:  

Keywords:  2D map; corrosion; galvanic joints; in situ measurement; microelectrodes

Year:  2016        PMID: 30799910      PMCID: PMC6382002          DOI: 10.1088/1361-6501/28/2/025101

Source DB:  PubMed          Journal:  Meas Sci Technol        ISSN: 0957-0233            Impact factor:   2.046


  1 in total

1.  In Situ Monitoring of Pb2+ Leaching from the Galvanic Joint Surface in a Prepared Chlorinated Drinking Water.

Authors:  Xiangmeng Ma; Stephanie M Armas; Mikhael Soliman; Darren A Lytle; Karin Chumbimuni-Torres; Laurene Tetard; Woo Hyoung Lee
Journal:  Environ Sci Technol       Date:  2018-02-08       Impact factor: 9.028

  1 in total

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