Research theme for competitive and other funds (13):
2023 - 2026 Dynamic visualization of the penetration and fixation mechanisms of oil-borne wood preservatives into wood
2017 - 2020 CLTを使った構造物の施工コストを他工法並みにする技術開発
2017 - 2020 国産材CLTの製造コストを1/2にするための技術開発
2014 - 2017 Atomic-level imaging in wood cell walls treated with amine-copper solution
2013 - 2016 The effects of wood surface penetrability on the improvement of weatherability of exterior wood coatings
2012 - 2016 Comprehensive approaches from the wood science toward the realization of the next-generation type wood preservation
2012 - 2014 Nano-scale analysis of copper in wood cell walls treated with amine-copper solution
2010 - 2012 Elucidation of the performance enhancement expression mechanism by additives for high wood loaded wood-plastic-composites
2010 - 2012 The effects of penetration and distribution of wood preservative semi-transparent coatings in wood on the mechanism of weatherability performance
2007 - 2009 In-situ microspectroscopic analysis of wood preservatives in wood
2006 - 2009 Study on mechanism of performance degradation of fire-retardant wood in exterior applications
2004 - 2009 木製道路施設の耐久設計・維持管理指針策定のための技術開発
2005 - 2007 Clarification of Influence of Moisture on Weather Resistance and Decay Resistance of Wood Flour-Plastic Composites
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Papers (64):
Ikuo Momohara, Kohei Kambara, Hiroshi Matsunaga, Koichi Yamamoto. Re-evaluation of the Assessment Done by FFPRI to Elucidate the Natural Durability of Heartwood. Mokuzai Gakkaishi. 2023. 69. 1. 41-48
Philip D. Evans, Hiroshi Matsunaga, Alan F. Preston, Cameron M. Kewish. Wood Protection for Carbon Sequestration - a Review of Existing Approaches and Future Directions. CURRENT FORESTRY REPORTS. 2022. 8. 2. 181-198
Philip D. Evans, Hiroshi Matsunaga, Dengcheng Feng, Michael Turner, Richard W. Henley, Cameron M. Kewish. Inorganic compounds in the marine borer resistant timber turpentine (Syncarpia glomulifera). JOURNAL OF WOOD CHEMISTRY AND TECHNOLOGY. 2021. 41. 4. 185-197
Hiroshi MATSUNAGA. World trend in research of wood protection from IRG (International Research Group on Wood Protection) III. Focusing on IRG41 (2010) ~IRG44 (2013). MOKUZAI HOZON (Wood Protection). 2020. 46. 3. 121-126
Method for Drying Lumber, Method of Impregnating Lumber with Chemicals, and Drying Apparatus
Books (2):
森林学の百科事典
丸善出版 2021 ISBN:9784621305843
The liquid flow pathways in Japanese larch(Larix Kaempferi)heartwood: the difference between vacuum and pressure treatments
In: Y.S. Kim (Edts), "New Horizons in Wood Anatomy", Chonnam National University, Kwangju, South Korea 2000 ISBN:8975982106
Lectures and oral presentations (30):
Preliminary investigation for preservation method of CLT using non-pressure treatment
(International Research Group on Wood Protection, IRG/WP 21-40919 2021)
Development of wooden fireproof structures for mid- and high-rise buildings in Japan
(International Research Group on Wood Protection, IRG/WP 21-30757 2021)
Development of accelerated decay test for CLT using a fungus grown on agar medium
(International Research Group on Wood Protection, IRG/WP 19-20664 2019)
Evaluation of heat-treated wood using supercritical carbon dioxide
(International Symposium on Wood Science and Technology 2015 (IAWPS 2015), Proceedings 3WC-P10 2015)
Measurement of penetration of wood preservative semi-transparent coatings into wood
(International Symposium on Wood Science and Technology 2015 (IAWPS 2015)、Proceedings 6BP-P06 2015)
医学生物学電子顕微鏡技術学会
, IAWA (International Association of Wood Anatomists)
, IRG (International Reseaech Group on Wood Protection)
, 日本木材保存協会
, 日本木材学会
, 日本建築学会
, 日本木材加工技術協会