HR: 1340h
AN: ED43A-0266 [Abstracts]
TI: Drinking Water Contamination Due To Lead-based Solder
AU: * Garcia, N
EM: nalui-garcia@yahoo.com
AF: University of California at Berkeley, Environmental Science Research Program - Lawrence Hall of Science,
Berkeley, CA 94720
United States
AU: Bartelt, E
EM: ebartelt@uclink.berkeley.edu
AF: University of California at Berkeley, Environmental Science Research Program - Lawrence Hall of Science,
Berkeley, CA 94720
United States
AU: Cuff, K E
EM: kcuff@berkeley.edu
AF: University of California at Berkeley, Environmental Science Research Program - Lawrence Hall of Science,
Berkeley, CA 94720
United States
AB:
The presence of lead in drinking water creates many health hazards. Exposure to lead-contaminated water can affect the
brain, the central nervous system, blood cells, and kidneys, causing such problems as mental retardation, kidney disease,
heart disease, stroke, and death. One way in which lead can contaminate our water supply is through the use of lead solder
to join pipes. Lead solder was widely used in the past because of its ease of application as well as its low cost. Lead
contamination in residential areas has previously been found to be a particularly serious problem in first-draw samples, of
water that has sat stagnant in pipes overnight. To investigate the time-dependence of drinking water lead contamination, we
analyzed samples taken hourly of water exposed to lead solder. While our preliminary data was insufficient to show more than
a rough correlation between time of exposure and lead concentration over short periods (1-3 hours), we were able to confirm
that overnight exposure of water to lead-based solder results in the presence high levels of lead. We also investigated
other, external factors that previous research has indicated contribute to increased concentrations of lead. Our analysis of
samples of lead-exposed water at various pH and temperatures suggests that these factors can be equally significant in terms
of their contribution to elevated lead concentration levels. In particular, water that is slightly corrosive appears to
severely impact the solubility of lead. As this type of water is common in much of the Northeast United States, the presence
of lead-based solder in residential areas there is especially problematic. Although lead-based solder has been banned since
the 1980s, it remains a serious concern, and a practical solution still requires further research.
DE: 6605 Education
SC: Education and Human Resourcese [ED]
MN: 2004 AGU Fall Meeting