HR: 1340h
AN: ED43A-0269 [Abstracts]
TI: Correlation Between Surface Area and Dissolving Properties of Lead
- A Step in the Investigation of Higher than Standard Lead Concentration in Drinking Water in
Washington, D.C.
AU: * Hua, M
EM: thefallanangel@hotmail.com
AF: University of California at Berkeley, Environmental Science Research Program - Lawrence Hall of Science,
Berkeley, CA 94720
United States
AU: Garduno, L
EM: lgarduno@berkeley.edu
AF: University of California at Berkeley, Environmental Science Research Program - Lawrence Hall of Science,
Berkeley, CA 94720
United States
AU: Mondragon, J D
EM: jdm99@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:
Several recently published articles by the Washington Post exposing the alarming concentration of lead in drinking water from
schools and homes in the Washington D.C. area sparked our interest in the correlation between lead-containing materials used
in plumbing and rate of lead solubility. Elementary children who attend schools in various regions of the District were
contacted by San Francisco Bay Area- based high school students who are participants in the NSF-sponsored Environmental
Science Information Technology Activities (ESITA) project. After receiving a thorough explanation of required sampling
procedures, the elementary school children sent 500 ml water samples from their homes and schools to Berkeley along with
information on the locations from which the water samples were collected. These water samples were analyzed for lead content
at the Environmental Science Research Program laboratory at Lawrence Hall of Science. The majority of the samples contained
more than 15 ppb of lead, which is the EPA action level. We hypothesize that there are three possible sources of lead in the
drinking water: 1) lead pipes in the water main; 2) lead pipes in the service main; and 3) lead soldering that was often
previously used to connect piping. We chose to investigate the effect of lead-based solder on the overall lead concentration
in water. Using a soldering iron, we melted lead solder to create discs ranging from one to five centimeter diameter and one
to thirty-six grams of mass. These discs were then placed into a beaker with 500 ml of 7.1pH distilled water and allowed to
stand for 48 hours. At the end of 48 hours, the water samples were prepared for analysis using the EPA approved
lead-dithizone procedure. Results showed an exponential relationship between disc surface area and the concentration of
dissolved lead measured in the sample. Therefore, lead-based solder can represent a possible major source of lead
contamination.
DE: 6605 Education
SC: Education and Human Resourcese [ED]
MN: 2004 AGU Fall Meeting