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Increased biomass and carbon burial 2 billion years ago triggered mountain building

Earth Sciences

Increased biomass and carbon burial 2 billion years ago triggered mountain building

J. Parnell and C. Brolly

Discover groundbreaking insights into the geological transformations following the Great Oxidation Event, as research by John Parnell and Connor Brolly reveals the pivotal role of high organic carbon burial in shaping ancient mountain ranges and influencing Earth's crustal evolution.... show more
Abstract
The geological record following the c. 2.3 billion years old Great Oxidation Event includes evidence for anomalously high burial of organic carbon and the emergence of widespread mountain building. Both carbon burial and orogeny occurred globally over the period 2.1 to 1.8 billion years ago. Prolific cyanobacteria were preserved as peak black shale sedimentation and abundant graphite. In numerous orogens, the exceptionally carbonaceous sediments were strongly deformed by thrusting, folding, and shearing. Here an assessment of the timing of Palaeoproterozoic carbon burial and peak deformation/metamorphism in 20 orogens shows that orogeny consistently occurred less than 200 million years after sedimentation, in a time frame comparable to that of orogens through the Phanerozoic. This implies that the high carbon burial played a critical role in reducing frictional strength and lubricating compressive deformation, which allowed crustal thickening to build Palaeoproterozoic mountain belts. Further, this episode left a legacy of weakening and deformation in 2 billion year-old crust which has supported subsequent orogenies up to the building of the Himalayas today. The link between Palaeoproterozoic biomass and long-term deformation of the Earth’s crust demonstrates the integral relationship between biosphere and lithosphere.
Publisher
Communications Earth & Environment
Published On
Dec 22, 2021
Authors
John Parnell, Connor Brolly
Tags
Great Oxidation Event
organic carbon burial
mountain building
Palaeoproterozoic
orogeny
crust deformation
geological record
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