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Trace metal chemistry and silicification of microorganisms in geothermal sinter, Taupo Volcanic Zone, New Zealand

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CONTRIBUTORS:
  Author McKenzie, Elizabeth J (University of Auckland)
  Author Brown, Kevin L
  Author Cady, SherryL
  Author Campbell, Kathleen A
JOURNAL:
  Geothermics, 30(4), 483 - 502.
YEAR: 2001
PUB TYPE: Journal Article
SUBJECT(S): silica sinter, arsenic, boron, antimony, geothermal biogeochemistry, hyperthermophiles, tokaanu, waikite, ohaaki, wairakei, fossil hydrothermal systems.
DISCIPLINE: Geology
HTTP: http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6VCN-436VYJV-5&_user=10&_handle=W-WA-A-A-D-MsSAYVW-UUW-AUZDEYAAZY-DDUWEVWU-D-U&_fmt=summary&_coverDate=08%2F31%2F2001&_rdoc=5&_orig=browse&_srch=%23toc%235959%232001%23999699995%23252419!&_cdi=5959&
LANGUAGE: English
PUB ID: 103-396-229 (Last edited on 2003/11/04 08:24:02 US/Mountain)
SPONSOR(S):
 
ABSTRACT:
As part of a pilot study investigating the role of microorganisms in the immobilisation of As, Sb, B, Tl and Hg, the inorganic geochemistry of seven different active sinter deposits and their contact fluids were characterised. A comprehensive series of sequential extractions for a suite of trace elements was carried out on siliceous sinter and a mixed silica-carbonate sinter. The extractions showed whether metals were loosely exchangeable or bound to carbonate, oxide, organic or crystalline fractions. Hyperthermophilic microbial communities associated with sinters deposited from high temperature (92–94°C) fluids at a variety of geothermal sources were investigated using SEM. The rapidity and style of silicification of the hyperthermophiles can be correlated with the dissolved silica content of the fluid. Although high concentrations of Hg and Tl were found associated with the organic fraction of the sinters, there was no evidence to suggest that any of the heavy metals were associated preferentially with the hyperthermophiles at the high temperature (92–94°C) ends of the terrestrial thermal spring ecosystems studied.
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