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The Carbon Cycle01:14

The Carbon Cycle

Carbon is the basis of all organic matter on Earth, and is recycled through the ecosystem in two primary processes: one in which carbon is exchanged among living organisms, and one in which carbon is cycled over long periods of time through fossilized organic remains, weathering of rocks, and volcanic activity. Human activities, including increased agricultural practices and the burning of fossil fuels, has greatly affected the balance of the natural carbon cycle.
The Sulfur Cycle01:22

The Sulfur Cycle

Sulfur, an important element in the chemical makeup of proteins, is recycled through the atmosphere and aquatic and terrestrial environments. Found in the atmosphere as sulfur dioxide (SO2), sulfur is released by decaying organisms, weathered rocks, geothermal vents, volcanos, and burning fossil fuels. It is deposited into the ecosystem, cycled through the biotic community, and either released back into the atmosphere as gas or deposited in marine sediment for long-term storage and eventual...
Global Climate Change01:50

Global Climate Change

Throughout its ~4.5 billion year history, the Earth has experienced periods of warming and cooling. However, the current drastic increase in global temperatures is well outside of the Earth’s cyclic norms, and evidence for human-caused global climate change is compelling. Paleoclimatology, the study of ancient climate conditions, provides ample evidence for human-caused global climate change by comparing recent conditions with those in the past.
Chemical Factors Affecting Respiration Centers01:31

Chemical Factors Affecting Respiration Centers

Chemical factors such as changing CO2, O2, and H+ levels in arterial blood play a critical role in influencing respiration depth and rates. These variations are detected by chemoreceptors—specialized sensors located in two primary body areas. Central chemoreceptors are found throughout the brain stem, including the ventrolateral medulla, while peripheral chemoreceptors are located in the aortic arch and carotid arteries.
CO2 has a potent influence on respiration and is strictly regulated. Under...
Microbes and the Carbon Cycle01:24

Microbes and the Carbon Cycle

The carbon cycle is a fundamental Earth process involving the transfer of carbon among the biosphere, lithosphere, atmosphere, and hydrosphere. It plays a critical role in regulating the planet’s climate and supporting life by cycling carbon through various chemical forms and reservoirs. Carbon primarily circulates as carbon dioxide (CO₂), representing its oxidized form, while reduced forms such as methane (CH₄) and organic compounds also play essential roles.Microbial activity is central to...
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Microbes and Climate Change

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Video Experimental Relacionado

Updated: Jul 5, 2026

Split Point Analysis and Uncertainty Quantification of Thermal-Optical Organic/Elemental Carbon Measurements
10:22

Split Point Analysis and Uncertainty Quantification of Thermal-Optical Organic/Elemental Carbon Measurements

Published on: September 7, 2019

Elevado CO2 atmosférico del Eoceno y su posterior disminución.

Tim K Lowenstein1, Robert V Demicco

  • 1Department of Geological Sciences and Environmental Studies, State University of New York at Binghamton, Binghamton, NY 13902, USA. lowenst@binghamton.edu

Science (New York, N.Y.)
|September 30, 2006
PubMed
Resumen

Los niveles de dióxido de carbono atmosférico ([CO2]atm) durante el Eoceno temprano excedieron las 1125 ppm, lo que indica que las altas concentraciones coincidieron con el prolongado calentamiento global. Estos datos climáticos antiguos son cruciales para comprender los futuros escenarios de cambio climático.

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Área de la Ciencia:

  • Paleoclimatología Paleoclimatología
  • La geoquímica es la geoquímica.

Sus antecedentes:

  • Comprender las concentraciones pasadas de dióxido de carbono atmosférico ([CO2]atm) es vital para predecir el cambio climático futuro, especialmente cuando las emisiones antropogénicas se acercan a 1000 partes por millón en volumen (ppm).
  • La época temprana del Eoceno (hace 56-49 millones de años) representa un período de temperaturas globales prolongadas y altas en la historia reciente de la Tierra.

Objetivo del estudio:

  • Para cuantificar las concentraciones atmosféricas de CO2 durante el período cálido del Eoceno temprano.
  • Establecer un vínculo entre el alto nivel de CO2 atmosférico y el calor del Eoceno.

Principales métodos:

  • Análisis de minerales de carbonato de sodio (nahcolita y halita) precipitados en lagos salinos.
  • Examen geoquímico de muestras de minerales conservados en la Formación del Río Verde.

Principales resultados:

  • La coprecipitación de nahcolita (NaHCO3) y halita (NaCl) indica que los niveles de CO2 atmosférico son mayores de 1125 ppm.
  • Esta concentración es más de cuatro veces los niveles preindustriales.

Conclusiones:

  • Las altas concentraciones de CO2 atmosférico estuvieron presentes durante el Eoceno temprano.
  • Los hallazgos confirman que los niveles elevados de CO2 coincidieron con el prolongado calor de la época del Eoceno.