Fossilization processes in siliceous thermal springs: Trends in preservation along thermal gradients

S. L. Cady, J. D. Farmer

Research output: Contribution to journalArticlepeer-review

268 Scopus citations


To enhance our ability to extract palaeobiological and palaeoenvironmental information from ancient thermal spring deposits, we have studied the processes responsible for the development and preservation of stromatolites in modern subaerial thermal spring systems in Yellowstone National Park (USA). We investigated specimens collected from silica-depositing thermal springs along the thermal gradient using petrographic techniques and scanning electron microscopy. Although it is known that thermophilic cyanobacteria control the morphogenesis of thermal spring stromatolites below 73°C, we have found that biofilms which contain filamentous thermophiles contribute to the microstructural development of subaerial geyserites that occur along the inner rims of thermal spring pools and geyser effluents. Biofilms intermittently colonize the surfaces of subaerial geyserites and provide a favoured substrate for opaline silica precipitation. We have also found that the preservation of biotically produced microfabrics of thermal spring sinters reflects dynamic balances between rates of population growth, decomposition of organic matter, silica deposition and early diagenesis. Major trends in preservation of thermophilic organisms along the thermal gradient are defined by differences in the mode of fossilization, including replacement, encrustation and permineralization.

Original languageEnglish (US)
Pages (from-to)150-173
Number of pages24
JournalCIBA Foundation Symposia
Issue number202
StatePublished - Dec 1 1996
Externally publishedYes

ASJC Scopus subject areas

  • General


Dive into the research topics of 'Fossilization processes in siliceous thermal springs: Trends in preservation along thermal gradients'. Together they form a unique fingerprint.

Cite this