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Updated: Jun 29, 2026

04:36
Production of Synthetic Nuclear Melt Glass
Published on: January 4, 2016
メルトの生産量はMt.以下です. 原始的な溶融インクルージョンのボロンデータからシャスタ
まとめ
Mt.のボロン同位体. シャスタ・ラバは,沈殿板の脱水がマグマ生成に寄与したことを示唆している. これは,流体だけでマントルのが溶けるという支配的な理論に異議を唱えている.
科学分野:
- 地質化学 地質化学
- 火山学 火山学とは
- ペトロロジー・ペトロロジーとは
背景:
- 円弧マグマは通常,プレート流体によるマントルのの融解から形成されます.
- 海洋の地殻,特に若くて熱い石層を吸収させることは,円弧マグマの発生にも寄与する可能性があります.
研究 の 目的:
- Mt.でベースアルトアンデサイト溶岩の起源を調査する. シャスタ シャスタ
- マグマ生成におけるスラブ材料の潜水作用を決定する.
主な方法:
- オリヴィンに宿る溶融インクルージョンにおけるボロン同位体組成 (デルタ) (11B) のインシット測定.
- 原始的な溶融インクルージョンにおけるボロン濃度の分析.
主要な成果:
- Mt.のボロン同位体. シャスタのサンプルでは,大きな負値と変数値 (デルタ) が示されている (B = -21.3〜 -0.9 per mil).
- ボロンの濃度は比較的低い (0.7~1.6ppm).
- ボロンの濃度と同位体組成の間の相関が観察されました.
結論:
- 観測されたボロン同位体シグネチャーは,脱水した亜誘導板材がマウントに寄与していることを示している. シャスタのベースアルティック・アンデサイト・マグマ.
- この発見は,円弧マグマ形成における地殻の貢献の証拠を提供する.
- この研究は,マグマ源を理解するために,溶融インクルージョンを分析することの重要性を強調しています.
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