地球の構造的な炭素輸送ベルトの進化
R Dietmar Müller1, Ben Mather2, Adriana Dutkiewicz2
1EarthByte Group, School of Geosciences, The University of Sydney, Sydney, New South Wales, Australia. dietmar.muller@sydney.edu.au.
Nature
|May 25, 2022
まとめ
プレート構造は炭素を 地球の内陸と海の間に移動させます この研究により 地質学的な活動と 深海の炭素貯蔵庫が 何百万年もの間 気候変動に影響を及ぼしてきたことが 明らかになりました
科学分野:
- 地化学
- 古代気候学
- 構造学
背景:
- プレート構造は 地質的な時間尺度では 十分に量化されていない 深海の炭素サイクルを駆動します
- 過去の炭素サイクルの変化を理解することは 気候モデリングに不可欠です
研究 の 目的:
- 海洋プレートの炭素貯蔵庫を再構築する
- 地質学的な時間を通して 吸収された炭素の運命をモデル化するために
- 過去の気候変動と 構造変化を結びつけるため
主な方法:
- 熱力学モデルで 炭素を吸収する
- 海洋プレート炭素貯蔵庫の再構築
- メソゾイクからケノゾイクまでの地質学的時間スケールの分析.
主要な成果:
- メソゾイク期の冷却はガスの排出量減少に繋がり,白亜紀の温暖化は高速地質学によるガスの排出量増加に繋がった.
- 亜紀大陸の衝突により 海底の広がりと排出が減りました
- 深海の炭酸塩は主要な沈殿地となり,沈殿は火山の弧を通じたケノゾイク期の放出ガスを増加させた.
結論:
- 固体地球からの炭素排出は 過去の気候変動に影響を与えました
- 氷河期のガスの放出が増加したため,冷却の説明として シリケート気象が強化されたことが必要である.
- この研究は 将来の炭素循環モデルに 重要なデータを提供します
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