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HERO ID
2645006
Reference Type
Journal Article
Title
Geochemical processes controlling the groundwater transport of contaminants released by a dump in an arid region of Mexico
Author(s)
Gomez-Puentes, FJ; Reyes-Lopez, JA; Lopez, DL; Carreon-Diazconti, C; Belmonte-Jimenez, S
Year
2014
Is Peer Reviewed?
Yes
Journal
Environmental Earth Sciences
ISSN:
1866-6280
EISSN:
1866-6299
Volume
71
Issue
2
Page Numbers
609-621
DOI
10.1007/s12665-013-2456-2
Web of Science Id
WOS:000329996200011
Abstract
The Vado Carranza dump, located in the Mexicali Valley, Baja California, northwest Mexico, was operated for more than 15 years receiving about 30 tons/day of solid wastes. The disposed wastes were periodically burned in open air. The presence of a shallow aquifer in the area makes the groundwater vulnerable to contamination processes. The purpose of this study was the evaluation of heavy metals content (Cu, Cd, Ni, Pb and Zn) in soil and groundwater in the vicinity of this dump. The results indicate high content of metals in soil, mainly at a superficial level, with the highest concentrations in the areas where burning of wastes occurred. Elevated concentrations of cadmium and copper were detected in groundwater with the highest concentrations occurring in monitoring wells located in the north side of the dump, downward of groundwater flow. Although the high content of metals in soil can be attributed to the burning of waste, other sources of pollution could be the agricultural irrigation in the vicinity of the dump. The program PHREEQC was used to model the geochemical evolution of groundwater. Results suggest that evaporation of the contaminated waters circulating below the landfill is one of the key processes that explain the increased concentration of contaminants in groundwater and its seasonal variations. As groundwater flows away from the dump, evaporation can concentrate the chemicals making the water more toxic. These results are important because they illustrate processes that are likely to occur in landfills located in other desert areas of the world.
Keywords
Dump site; Groundwater evaporation; Semiarid zones; Heavy metals; PHREEQC; Mexicali
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