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In 1936 a German chemist identified certain organic molecules that he had extracted from ancient rocks and oils as the fossil remains of chlorophyll--presumably from plants that had lived and died millions of years in the past. It was another twenty-five years before this insight was developed and the term "biomarker" coined to describe fossil molecules whose molecular structures could reveal the presence of otherwise elusive organisms and processes.Echoes of Life is the story of these molecules and how they are illuminating the history of the earth and its life. It is also the story of how a few maverick organic chemists and geologists defied the dictates of their disciplines and--at a time when the natural sciences were fragmenting into ever-more-specialized sub-disciplines--reunited chemistry, biology and geology in a common endeavor. The rare combination of rigorous science and literary style--woven into a historic narrative that moves naturally from the simple to the complex--make Echoes of Life a book to be read for pleasure and contemplation, as well as education.
This book investigates how organic molecules preserved in ancient rocks and oils serve as biomarkers to reconstruct the history of life and environmental conditions on Earth. The authors, including prominent researchers in organic geochemistry, utilize a historical narrative to explain how the identification of fossilized chlorophyll transformed our understanding of the planet's biological past. By bridging the gap between chemistry, biology, and geology, the text argues that these molecular fossils provide a unique, high-resolution record of evolutionary and geological events that traditional fossil studies often miss.
What You Will Find
Experts and readers alike praise the book for its ability to synthesize complex scientific concepts into a narrative that remains accessible to non-specialists. It is frequently cited as a foundational text for those interested in the intersection of organic chemistry and earth history.
Page Count:
355
Publication Date:
2008-11-05
Publisher:
Oxford University Press
ISBN-10:
0195176197
ISBN-13:
9780195176193
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