高濃度短期暴露リスク評価のための非定常室内濃度分布予測手法の開発(第2報):屋内での液体化学物質漏洩を想定した経気道暴露濃度予測

Author:

SUMIYOSHI Eisaku1,HARASHIMA Hiroshi1,ITO Kazuhide2

Affiliation:

1. Technology Research Institute, Obayashi Corporation

2. Faculty of Engineering Sciences, Kyushu University

Publisher

Architectural Institute of Japan

Subject

Environmental Engineering

Reference24 articles.

1. 1) Ministry of Health, Labor and Welfare: Syokubaniokerukagakubussitunadonokanrinoarikatanikansurukentoukai houkokusyo (A report of a meeting to discuss rules for handling and managing chemical substances at the workplace), https://www.mhlw.go.jp/content/11305000/000807804.pdf, 2021, (in Japanese) (accessed 2022-7-5) 厚生労働省:職場における化学物質等の管理のあり方に関する検討会 報告書, (参照 2022-7-5)

2. 2) Eisaku Sumiyoshi, Hiroshi Harashima and Kazuhide Ito: Development of Unsteady Indoor Contaminant Concentration Distributions for Risk Assessment of High Concentration and Short-Term Exposure (Part 1): Fundamental Experiments Using Small Glass Chamber and Validation of Prediction Accuracy, Journal of Environmental Engineering (Transactions of AIJ), Vol.85, No. 778, pp.985-992, 2020 (in Japanese) 住吉栄作, 原嶋寛, 伊藤一秀:高濃度短期暴露リスク評価のための非定常室内濃度分布予測手法の開発(第1報):小形ガラスチャンバーを用いた基礎実験と予測精度検証, 日本建築学会環境系論文集, 第85巻, 第778号, pp. 985-992, 2020 (DOI: https://doi.org/10.3130/aije.85.985 )

3. 3) Alicia Murga, Zhengwei Long, Sung-Jun Yoo, Eisaku Sumiyoshi and Kazuhide Ito: Decreasing inhaled contaminant dose of a factory worker through a hybrid Emergency Ventilation System: Performance evaluation in worst-case scenario, Energy and Built Environment, Vol.1, Issue3, pp.319-326, 2020 (DOI: https://doi.org/10.1016/j.enbenv.2020.04.007 )

4. 4) Shun Ichimiya, Alicia Murga, Sung-Jun Yoo, Eisaku Sumiyoshi, Hiroshi Harashima, Zhengwei Long and Kazuhide Ito: Hybrid emergency ventilation system for controlling inhaled contaminant dose in the case of chemical leakage, Indoor and Built Environment, Vol.31, Issue 3, pp.696-709, 2021 (DOI: https://doi.org/10.1177/1420326X211026360 )

5. 5) Sung-Jun Yoo and Kazuhide Ito: PBPK-CFD hybrid approach for estimating airway tissue dosimetry: Development of Computer Simulated Person with numerical respiratory tract model-part3, Journal of Environmental Engineering (Transactions of AIJ), Vol.81, No. 729, pp.971-978, 2016 (in Japanese) 劉城準, 伊藤一秀:経気道曝露リスク評価のためのPBPK- CFDモデルの統合 気道モデルを統合した数値人体モデルの開発 第3報, 日本建築学会環境系論文集, 第81巻, 第729号, pp. 971-978, 2016 (DOI: https://doi.org/10.3130/aije.81.971 )

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