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LIP printing: Use of immobile element proxies to characterize Large Igneous Provinces in the geologic record
LIP printing is a term adapted from forensic science to describe the use of geochemical
proxies for tectonic and petrogenetic fingerprinting of Large Igneous Provinces (LIPs). Here …
proxies for tectonic and petrogenetic fingerprinting of Large Igneous Provinces (LIPs). Here …
[HTML][HTML] The development of carbon capture and storage (CCS) in India: A critical review
Carbon capture and sequestration (CCS) is a three-tier process-carbon capture, transport
and storage. The capture consists of pre-combustion, oxy-combustion and post-combustion …
and storage. The capture consists of pre-combustion, oxy-combustion and post-combustion …
[HTML][HTML] On the causes of mass extinctions
The temporal link between large igneous province (LIP) eruptions and at least half of the
major extinctions of the Phanerozoic implies that large scale volcanism is the main driver of …
major extinctions of the Phanerozoic implies that large scale volcanism is the main driver of …
Intensified continental chemical weathering and carbon-cycle perturbations linked to volcanism during the Triassic–Jurassic transition
Direct evidence of intense chemical weathering induced by volcanism is rare in sedimentary
successions. Here, we undertake a multiproxy analysis (including organic carbon isotopes …
successions. Here, we undertake a multiproxy analysis (including organic carbon isotopes …
How Large Igneous Provinces affect global climate, sometimes cause mass extinctions, and represent natural markers in the geological record
Abstract Large Igneous Provinces (LIPs) can have a significant global climatic effect as
monitored by sedimentary trace and isotopic compositions that record paleo …
monitored by sedimentary trace and isotopic compositions that record paleo …
Initial pulse of Siberian Traps sills as the trigger of the end-Permian mass extinction
Mass extinction events are short-lived and characterized by catastrophic biosphere collapse
and subsequent reorganization. Their abrupt nature necessitates a similarly short-lived …
and subsequent reorganization. Their abrupt nature necessitates a similarly short-lived …
High-precision geochronology confirms voluminous magmatism before, during, and after Earth's most severe extinction
The end-Permian mass extinction was the most severe in the Phanerozoic, extinguishing
more than 90% of marine and 75% of terrestrial species in a maximum of 61±48 ky. Because …
more than 90% of marine and 75% of terrestrial species in a maximum of 61±48 ky. Because …
Climate change and the past, present, and future of biotic interactions
Biotic interactions drive key ecological and evolutionary processes and mediate ecosystem
responses to climate change. The direction, frequency, and intensity of biotic interactions …
responses to climate change. The direction, frequency, and intensity of biotic interactions …
High-precision timeline for Earth's most severe extinction
The end-Permian mass extinction was the most severe loss of marine and terrestrial biota in
the last 542 My. Understanding its cause and the controls on extinction/recovery dynamics …
the last 542 My. Understanding its cause and the controls on extinction/recovery dynamics …
End-Triassic mass extinction started by intrusive CAMP activity
The end-Triassic extinction is one of the Phanerozoic's largest mass extinctions. This
extinction is typically attributed to climate change associated with degassing of basalt flows …
extinction is typically attributed to climate change associated with degassing of basalt flows …