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Long- Term Durability of Construction Structure and Effective Use of Technology for Construction Waste  

Kim, Gyu-Yong (Dept. of Architecture Engineering, Chungnam National University)
Choi, Hyeong-Gil (Dept. of Architecture Engineering, Chungnam National University)
Nam, Jung-Su (Dept. of Architecture Engineering, Chungnam National University)
Song, Ha-Young (Dept. of Architecture Engineering, Hanbat National University)
Lee, Do-Heun (Housing & Urban Research Institute, KNHC)
Publication Information
Resources Recycling / v.18, no.3, 2009 , pp. 11-19 More about this Journal
Abstract
Recently the problem of global environment is became by social issue. Accordingly the interests to recycling and saving of resources are growing from daily life to varieties field of industry. To preserve the global environment, prevent global warming, environmental destruction, environmental pollution by wastes, the drain of aggregate, plasticity energy of cement and decrease in carbon dioxide are an urgent problem that must be resolved. So there is to a field of building industry and stands but on the inside of the building the many double meaning resources usefully, applies. Also the seller masterpiece building where the service life is long planned is safe and comfortably, maintenance, suppresses the construction which is not necessary is unnecessary. Also the seller masterpiece building where the service life is long planned is safe and comfortably, maintenance, suppresses the construction which is not necessary is unnecessary. By revitalizing effective use of limited earth resources, recycling and controling production of construction waste, this study introduced to a method for Long-Term Durability of Construction Structure and Effective Use of Technology for Construction Waste considering architectural demand and earth environment. It is for reduction of an earth environment load from the side of construction production and performance design of a structure.
Keywords
Effective Use of Resources; Construction Waste; Performance Design; Long-Term Durability; Earth Environment Load;
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