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"Particles & Transfer" Lab. 微粒子・移動現象

A Lab for Environment‑Conscious Processes and Student Learning. 環境配慮型プロセスと学びを重視する研究室

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Tag: Biomimicry

Consistent particle deposition & localization in leaf structures. 様々な葉の構造で一貫した粒子の沈着と局在

堆積した粒子は凝集せず、葉の構造に依存性がないことを確認した
The particles were deposited on the leaves and needles in the same manner, regardless of leaf structure.

Does the leaf structure prevent the aerosol deposition?植物葉の構造はエアロゾルの沈着を妨げるのか? We learn an engineering thing.

Epicuticular “wax” crystals affect distribution of incoming aerosol particles on leaf surfaces. 気孔の機能を保持するために密に分布されたワックスは、微粒子の付着を防止する役割?

植物の気孔から学ぶ粒子挿入技術 / Particle Infiltration Method Inspired by Stomata

植物葉の気孔が微小粒子を通さない理由を解明 We have solved a long‑standing question in plant biology

植物に学ぶ粒子の付着技術 Plant‑Inspired Particle Deposition

植物が電界を設計?葉の親水性の違いが、空気中の粒子の行き先を決める Hydrophilicity of plant leaves guides where airborne particles land -Design of electrical-field?

Charged Aerosols Behind the Leaf 🍃葉の裏側に沈着する帯電微粒子:堆積のメカニズム

電荷を帯びたサブミクロン粒子(空気中の微小粒子)が、葉面モデルとなる平板の“表面と裏面の両方”に付着する仕組みを世界で初めて実験的に解明しました。Experimentally demonstrated, for the first time, that submicron charged aerosols can deposit on both the front and back surfaces of a leaf‑model plate.

Top in 48-hour.人気記事

  • EMPAT Lab at TUAT
  • Join us ?
  • 装置がアイデアを待つとき When Equipment Waits for an Idea
  • W. Lenggoro レンゴロ TUAT Professor. 東京農工大学
  • A Last Lecture (March 2026): Prof. Takeshi Izuta’s Pioneering Research on Environmental Stress and Plant Responses 最終講義:環境ストレスと植物応答研究を牽引してきた伊豆田猛教授
  • Soot Particles Enhance Tomato Seed Germination under Salinity Stress すす粒子がトマト種子の耐塩性を向上する可能性
  • News
  • Graduates' fields 卒業生の分野
  • 修士課程学生、南極大陸を訪問 Master's Student Visits the Antarctic Continent
  • Does the leaf structure prevent the aerosol deposition?植物葉の構造はエアロゾルの沈着を妨げるのか? We learn an engineering thing.

Applied Physics & Chemical Engineering

 

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