JpGU-AGU Joint Meeting 2020

講演情報

[E] ポスター発表

セッション記号 A (大気水圏科学) » A-GE 地質環境・土壌環境

[A-GE42] Interactions between Earth Critical Zone Hydrogeological Processes and Ecosystem

コンビーナ:Wang Wenke(Chang'an University)、Yaqian Zhao(Xian University of Technology)、Jet-Chau Wen(National Yunlin University of Science and Technology)、張 銘(産業技術総合研究所地質調査総合センター地圏資源環境研究部門)

[AGE42-P02] CHARACTERIZATION OF WATER RETENTION AND HYDRAULIC CONDUCTIVITY PROPERTIES FOR GRADED RECYCLED AGGREGATES BLENDED WITH AUTOCLAVED AERATED CONCRETE GRAINS IN VIETNAM

*Nam Pham Van1Akira KATO1Akihiro MATSUNO1Hoang Giang NGUYEN2Van Tuan NGUYEN2Takeshi SAITO1Ken KAWAMOTO1,2 (1.Graduate School of Science and Engineering, Saitama University, Japan、2.National University of Civil Engineering, Vietnam)

キーワード:Recycled construction and demolition waste, Masonry, Autoclaved aerated concrete, Water retention capacity, Hydraulic conductivity

Permeable pavement systems (PPS) play a crucial role in contribution for reducing surface runoff during heavy rainfall (flood control) and mitigating road surface temperature (reduction in urban heat island).The purpose of this study is to improve water retention capacity for recycled road-base materials blending with autoclave aerated concrete (AAC) grain and to evaluate the effect of mixing proportion of AAC grains on water retention and hydraulic conductivity properties. Graded recycled concrete aggregate (RCA; 0.075-37.5 mm) and fired-clay brick (RCB; 0.075-37.5 mm) made from construction and demolition waste (CDW) masonry which was taken from the CDW dumping site in Vietnam and the graded recycled aggregates were blended with AAC grains (0.106-2 mm) from Vietnam in this study. A comprehensive laboratory evaluation of water retention and hydraulic conductivity characteristics of recycled CDW materials was carried out. The results showed that the mixing of AAC grains contributed highly to increase water retention capacity and hydraulic conductivity for both graded RCA and RCB.