HR: 0800h
AN: H51B-0455 [Abstracts]
TI: Groundwater flow system and Nitrogen cycle in volcanic aquifer of pyroclastic flow uplands, Japan
AU: * MIkami, K
EM: mikkan007@hotmail.com
AF: Graduate School of Science and Technology, Kumamoto University, 2-39-1 kurokami,
kumamoto, 8608555, Japan
AU: shimada, J
EM: jshimada@sci.kumamoto-u.ac.jp
AF: Graduate School of Science and Technology, Kumamoto University, 2-39-1 kurokami,
kumamoto, 8608555, Japan
AU: Tashiro, S
EM: hatati@city.miyakonojo.miyazaki.jp
AF: Miyakonojo City Government, 6-21 Himegityou, Miyakonojo, 8858555, Japan
AU: Niimi, H
EM: niimi@affrc.go.jp
AF: National Aglicultural Research Center for Kyushu Okinawa Region, 6651-2 Yokoichi-machi, Miyakonojo, 8850091, Japan
AB:
Study area is well-known agriculture area in Southern Kyushu, Japan and highly depends on groundwater
resources for their everyday use.
Local unconfined groundwater aquifer is widely polluted by Nitrate-Nitrogen originated from agriculture and cattle
farming. It will become serious problem if this unconfined Nitrate pollution enlarges into the confined aquifer
system which is used for local city water source. The detailed three dimensional groundwater flow system study
has been done by using existing wells in the basin to understand the three dimensional distribution pattern of
Nitrate-Nitrogen in the aquifer. However, the detailed groundwater age analysis by using Tritium for unconfined
and confined groundwater has not been succeeded because of present low atmosphere tritium concentration.
Thus we applied to challenge the CFCs dating method. Although the CFCs method has been widely used for
dating the young groundwater instead of tritium in many countries, in Japan CFCs has been used only by
Oceanographic study and has not been used in the field of Hydrology.
The history and fate of Nitrate contamination have been shown in multidisciplinary local transect studies in areas
with agricultural sources (Bohlke and Denver 1995). However, identification of Nitrogen sources can be difficult in
larger regional studies because of co-occurrence of multiple anthropogenic Nitrogen sources and uncertainty in
Nitrogen transformation pathways. Thus, the characterization of N geochemistry remains challenging, particularly
in aquifer-scale assessments (Stephen 2006). In this study, the evidence of the shallow groundwater flowing
towards deep aquifer was verified by the groundwater dating and the detailed Nitrogen reduction process was
confirmed along the groundwater flow.
DE: 0469 Nitrogen cycling
DE: 1806 Chemistry of fresh water
DE: 1831 Groundwater quality
SC: Hydrology [H]
MN: 2007 Fall Meeting