バイオフィジカル制約下における人工放射性物質の状況
Fanny Böse1, Friederike Frieß2
1Workgroup for Economic and Infrastructure Policy, Technische Universität Berlin, Straße des 17. Juni 135, 10623 Berlin, Germany.
ACS omega
|February 23, 2026
まとめ
核分裂および採掘からの放射性物質は、世界的なリスクをもたらす。惑星境界フレームワークは、原子力および兵器のリスクを考慮し、軍縮と慎重なエネルギー利用を提唱する必要がある。
科学分野:
- 地球システム科学
- 環境科学
- 核科学
背景:
- 約1世紀前に発見された核分裂は、大量の放射性物質を生成する。
- 採掘活動により、自然界に存在する放射性物質が地表にもたらされた。
- 核兵器開発は、爆発に対する地球システムの応答に関する研究を推進した。
研究 の 目的:
- 放射性物質が惑星境界フレームワーク内で過小評価されていることを強調すること。
- 核のリスクに対する安全な運用空間を定義する上での課題を議論すること。
- 原子力および兵器に対する予防原則を提唱すること。
主な方法:
- 放射性物質とその環境への影響に関する既存の文献のレビュー。
- 惑星境界フレームワークと、核のリスクに関するその限界の分析。
- 原子力技術への予防原則の適用。
主要な成果:
- 核分裂および採掘に由来する放射性物質は、地球規模のリスクをもたらす。
- 惑星境界フレームワークは、現在、核のリスクを十分に考慮していない。
- 原子力事故および爆発の制御変数を定義することは困難である。
結論:
- 核兵器のない世界が提唱されている。
- 原子力利用に対する慎重かつ十分な検討に基づくアプローチが推奨される。
- 放射性物質のリスクを地球規模の環境評価に統合することが不可欠である。
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