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Updated: Feb 13, 2026

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ナノバブル水噴霧と水浴/ワイヤメッシュ炭素を組み合わせた深井急速浄化システムの設計とパラメータ最適化
Xin Zhang1, Yixiao Xie2, Yong Jin1
1College of Architecture and Energy Engineering, Wenzhou University of Technology, Wenzhou 325000, China.
Nanomaterials (Basel, Switzerland)
|February 12, 2026
まとめ
この研究は,ナノバブル水噴霧と炭素吸収を用いた深井急速浄化システムを導入し,有毒な鉱山汚染物質を削減します. このシステムは,CO,H2S,SO2などの塵や有害ガスを大幅に削減しました.
科学分野:
- 環境科学 環境科学
- 鉱山工学 鉱山工学とは
- 化学工学は化学工学というものです.
背景:
- 鉱山の安全と健康には,爆破後に放出される有毒汚染物質の効果的な制御が必要です.
- 高濃度の有害ガスの迅速な排出は,高度な浄化ソリューションを必要とします.
研究 の 目的:
- 鉱山環境のための深い井戸の急速浄化システムを提案し,最適化します.
- 塵や有毒ガスの削減におけるシステムの効率を評価する.
主な方法:
- ナノバブル水噴霧と水浴/ワイヤメッシュ炭素吸収を組み合わせたシステムを開発しました.
- マイクロナノバブルウォーターとノズルパラメータの単変数最適化テストを実施しました.
- 湿気スプレーファイバーグリッドと炭素吸収ネットワークの最適なパラメータを使用して,検証された浄化効率.
主要な成果:
- 最適化されたパラメータには,マイクロナノバブルウォーター,0.4mmのノズル直径,3.0MPaの水圧,二重層10マッシュワイヤグリッド,および5mmの活性炭繊維綿が含まれる.
- 合計72.90%の塵の減少と79.17%の呼気塵の減少を達成しました.
- COの84.39%,H2Sの78.75%,SO2の55.54%の浄化効率を達成しました.
結論:
- 提案されている深井の急速浄化システムは,鉱山における塵や有毒ガスを効果的に削減します.
- 最適化されたパラメータは,効率的な鉱山汚染制御のための基準を提供します.
- このシステムは,鉱山の作業環境を改善するための重要な実用的な価値を持っています.
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