상세 보기
Submarine groundwater discharge into the coast revealed by water chemistry of man-made undersea liquefied petroleum gas cavern
- Lee, Jin-Yong;
- Cho, Byung Wook
WEB OF SCIENCE
11SCOPUS
13초록
The occurrence of submarine groundwater discharge (SGD) as well as its supply of many nutrients and metals to coastal seawaters is now generally known. However, previous studies have focused on the chemical and radiological analysis of groundwater, surface seawater, shallow marine sediments and their pore waters, as welt as the measurement of upward flow through the marine sediments, as end members of the discharge process. In this study, chemical and isotopic analysis results of marine subsurface waters are reported. These were obtained from deep boreholes of an undersea liquefied petroleum gas (LPG) storage cavern, located about 8 km off the western coast of Korea. The cavern is about 130-150 m below the sea bottom, which is covered by a 4.8-19.5 m silty clay stratum. An isotopic composition (delta H-2 and delta O-18) of the marine subsurface waters falls on a mixing line between terrestrial groundwater and seawater. Vertical EC profiting at the cavern boreholes revealed the existence of a fresh water zone. An increase in the contents of ferrous iron and manganese and a decrease in Levels of nitrate, bicarbonate and cavern seepage were recorded in August 2006, indicating a decreased submarine groundwater flux originating from land, mainly caused by an elevated cavern gas pressure. It is suggested in this study that the main source of fresh waters in the man-made undersea cavern is the submarine groundwater discharge mainly originating from the land. 2008 Elsevier B.V. All rights reserved.
키워드
- 제목
- Submarine groundwater discharge into the coast revealed by water chemistry of man-made undersea liquefied petroleum gas cavern
- 저자
- Lee, Jin-Yong; Cho, Byung Wook
- 발행일
- 2008-10-15
- 유형
- Article
- 권
- 360
- 호
- 1-4
- 페이지
- 195 ~ 206