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Geological Disposal of Carbon Dioxideand Radioactive Waste in the GeotectonicallyActive Country of Japan

机译:日本大地构造 r n活跃国家中二氧化碳 r n和放射性废物的地质处置

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In Japan, site selection for geological disposal of radioactive waste (RW) and carbon dioxide (CO_2) is very important because of the large regional differences in tectonic activity. Assessment of the long-term stability of geological environments is key to geological RW disposal in Japan. A comprehensive system of long-term prediction of crustal movement and the groundwater regime around the virtual RW disposal sites has been developed in Japan. CO_2 is naturally abundant, but geological disposal of the gigantic volumes of CO_2 may have big impacts on the environment. One of the adverse effects of underground fluid injection is that it may induce earthquakes. Underground carbon microbubble injection accelerates advanced geological disposal mechanisms. The autogenously sealed 'CO_2 capsules' can be formed in large basaltic sheets, ophiolite complex and oceanic crust. Sub-seabed aquifers under the deep sea floor can provide very safe and virtually limitless CO_2 disposal. Different disposal strategies for CO_2 and RW are needed because of the extreme difference in their toxicity and volume. The dispersion and dilution principle is possible for the CO_2 disposal, while RW is strictly contained by the multiple barrier system. The stability of the geological environment is important for both CO_2 and RW disposal.
机译:在日本,由于构造活动的区域差异很大,因此选择放射性废物(RW)和二氧化碳(CO_2)进行地质处置的地点非常重要。评估地质环境的长期稳定性是日本处置地质遗迹的关键。在日本,已经开发出了一个完整的长期预测地壳运动和虚拟RW处理场周围地下水状况的系统。 CO_2自然丰富,但地质处理大量的CO_2可能会对环境产生重大影响。地下注水的不利影响之一是它可能引发地震。地下碳微泡注入加速了先进的地质处置机制。自生密封的“ CO_2胶囊”可以形成大型的玄武岩片,蛇绿岩复合物和洋壳。深海底下的海底含水层可以提供非常安全且几乎无限的CO_2处置。由于CO_2和RW的毒性和体积存在极大差异,因此需要采取不同的处置策略。分散和稀释原理对于CO_2的处理是可能的,而RW被严格限制在多重屏障系统中。地质环境的稳定性对于CO_2和RW处置都至关重要。

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