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相关概念视频

What are Biogeochemical Cycles?00:54

What are Biogeochemical Cycles?

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The most common elements in organic molecules, carbon, hydrogen, oxygen, nitrogen, sulfur, and phosphorus, are only available in the ecosystem in limited amounts. Therefore, these nutrients must be recycled through both biotic and abiotic components of the ecosystem, in processes generally called biogeochemical cycles.
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The Carbon Cycle01:14

The Carbon Cycle

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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.
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What is Climate?01:16

What is Climate?

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Climate refers to the prevailing weather conditions in a specific area over an extended period. As the saying goes, “Climate is what you expect. Weather is what you get.” Climate is influenced by geographic factors, such as latitude, terrain, and proximity to bodies of water.
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Global Climate Change01:50

Global Climate Change

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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.
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Isothermal Processes01:21

Isothermal Processes

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A thermodynamic process that occurs at constant temperature is called an isothermal process. Heat slowly flows into the system or out of the system to maintain thermal equilibrium. Processes involving phase changes like water evaporation into steam or freezing water into ice at a constant temperature are examples of Isothermal Processes.
An ideal gas can also undergo isothermal expansion or compression.
For example, consider 1 mole of an ideal gas inside an isolated cylinder at initial volume V...
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Microbes and Climate Change01:27

Microbes and Climate Change

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Microorganisms are pivotal agents in Earth's biogeochemical cycles, significantly influencing climate dynamics through their metabolic activities. These microbes modulate the levels of key greenhouse gases by both contributing to and helping mitigate climate change.Microbial Contributions to Greenhouse Gas EmissionsRising global temperatures accelerate microbial metabolism, which, in turn, speeds up the decomposition of organic matter. This process releases carbon dioxide (CO₂) through...
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相关实验视频

Updated: May 2, 2026

Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside
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Removal of Exogenous Materials from the Outer Portion of Frozen Cores to Investigate the Ancient Biological Communities Harbored Inside

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与全球碳循环变化相关的二极冰期双极冰期.

Aradhna Tripati1, Jan Backman, Henry Elderfield

  • 1Department of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, UK. atri02@esc.cam.ac.uk

Nature
|July 22, 2005
PubMed
概括

纪的温室气体向冰室气体的转变涉及全球显著的冷却和冰盖的增长,这是大气中二氧化碳和海洋学变化的下降所推动的. 有证据表明,负碳循环反可能调节了冰盖的膨胀.

科学领域:

  • 古气候学 古气候学
  • 海洋学 海洋学 海洋学
  • 地质化学 地质化学

背景情况:

  • 地球的气候从极端温暖 (纪温室) 过渡到冰川.
  • 南极冰盖出现于大约3400万年前,与二氧化碳下降和海洋石灰岩补偿深度 (CCD) 变化有关.
  • 北半球的冰期发生得更晚 (大约1000万-600万年前).

研究的目的:

  • 通过沉积物和类生物的地化学记录,研究温室气候转变为冰室气候.
  • 在这个关键的气候转变期间重建海洋化学和海平面的变化.

主要方法:

  • 沉积物和类生物地质化学的分析.
  • 在热带太平洋和南大西洋的石补偿深度 (CCD) 的重建.
  • 测量海水中的氧气和本土碳同位素比率.

主要成果:

  • 证据表明,CCD在关键海洋盆地中的同步深化和振荡始于大约4200万年前,永久深化在3400万年前.
  • 海水氧同位素的显著变化 (高达每毫升1.5) 表明100-125米的冰存储.
  • 盆地碳同位素 (高达每毫升1.4) 的同时大变化表明碳循环的主要扰动.

结论:

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  • 温室气体变成冰室的转变与大气中二氧化碳的演变密切相关.
  • 负碳循环反可能推迟了大规模冰河的出现,直到3400万年前.
  • 这些发现为推动长期气候变化和冰盖动态的机制提供了洞察力.