The number of dismantled nuclear facilities is increasing globally. Dismantling of nuclear facilities generates large amount of waste such as concrete, soil, and metal. Concrete waste accounts for 70% of the total amount of waste. Since hundreds of thousansds of tons of concrete waste generated, securing technology of reduction and recycling of waste is emerging as a very important issue. The objective of this study is to synthesize geopolymer using inorganic materials from cement fine powder in concrete waste. Dismantled concrete waste contains a large amount of calcium silicate hydrate(C-S-H), Ca(OH)2, SiO2, etc., which is an inorganic material required for the synthesis of geopolymer. SiO2 affects the compressive strength of the geopolymer and Ca(OH)2 affects the curing rate. A high concentration of alkali solution is used as an alkali activator, and alkali activator is necessary for the polymerzation reaction of metakaolinite. The experiment consists of three steps. The first step is to react with concrete waste and hydrochloric acid to extract ions. In the solid after filtration, SiO2 and Al2O3 are composed of 84.10%. It can be used instead of commercial SiO2 required for the synthesis of geopolymer. The second step is to add NaOH up to pH 10, impurities can be removed to extract Ca(OH)2 with high purity. The final step is to add NaOH up to pH 13, and Ca(OH)2 extraction. The alkali solution generated after the last reaction can be recycled into an alkali activator during the synthesis of the geopolymer. If dismantled concrete waste is recycled during geopolymer synthesized, the volume reduction rate of dismantled concrete waste is more than 50%. If you put the radioactive waste in the recycled solidification materials synthesis from concrete waste by dismantling of nuclear facilities, it is possible to reduce the amount of waste generated and disposal costs.
추출크로마토그래피법과 액체섬광계수법을 이용하여 고체 시료중의 와 방사능을 측정할 수 있는 분석법을 확립하고 연구로 2호기의 해체시 발생되는 방사화된 콘크리트 폐기물을 분석하였다. 침전법과 추출크로마토그래피법으로 화학분리를 하면, 경우 Fe의 화학적 회수율은 대부분의 시료에서 90%이상이었으나 Ni의 회수율은 43.6과 46.5%를 나타낸 시료가 있으며 나머지는 62% 이상을 나타내었다. Spiked 시료를 이용하여 분리과정과 액체섬광계수법의 과정을 확인한 결과 의 경우는 3.7% 오차내의, 의 경우는 0.7% 오차내의 결과가 얻어졌다. 연구로 2호기의 해체 콘크리트 시료중 방사능은 MDA이하의 값도 있으나 TC3시료의 경우는 362Bq/g의 값이 얻어졌다. 그리고 의 경우는 모든 시료에서 MDA이하 값이 얻어져 이 존재하지 않음을 알 수 있었다. 그리고 콘크리트 벽의 해체시 표면의 시료는 의 방사능이 높다가 표면으로부터 깊은 시료일수록 의 방사능이 급격히 줄어들었다.