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Utilization of coal fly ash in solidification of liquid radioactive waste from research reactor

机译:粉煤灰在研究堆液态放射性废物固化中的利用

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In this study, the potential utilization of fly ash was investigated as an additive in solidification process of radioactive waste sludge from research reactor. Coal formations include various percentages of natural radioactive elements; therefore, coal fly ash includes various levels of radioactivity. For this reason, fly ashes have to be evaluated for potential environmental implications in case of further usage in any construction material. But for use in solidification of radioactive sludge, the radiological effects of fly ash are in the range of radioactive waste management limits. The results show that fly ash has a strong fixing capacity for radioactive isotopes. Specimens with addition of 5-15% fly ash to concrete was observed to be sufficient to achieve the target compressive strength of 20 MPa required for near-surface disposal. An optimum mixture comprising 15% fly ash, 35% cement, and 50% radioactive waste sludge could provide the solidification required for long-term storage and disposal. The codisposal of radioactive fly ash with radioactive sludge by solidification decreases the usage of cement in solidification process. By this method, radioactive fly ash can become a valuable additive instead of industrial waste. This study supports the utilization of fly ash in industry and the solidification of radioactive waste in the nuclear industry.
机译:在这项研究中,研究了粉煤灰作为添加剂在研究堆放射性废物污泥固化过程中的潜在利用。煤层中包括各种百分比的天然放射性元素。因此,粉煤灰具有各种放射性。因此,在任何建筑材料中进一步使用飞灰时,必须评估其对环境的潜在影响。但是用于固化放射性污泥时,粉煤灰的放射学影响在放射性废物管理限值的范围内。结果表明,粉煤灰对放射性同位素具有很强的固定能力。观察到向混凝土中添加5-15%粉煤灰的样品足以达到近地表处理所需的20 MPa的目标抗压强度。包含15%的粉煤灰,35%的水泥和50%的放射性废渣的最佳混合物可以提供长期存储和处置所需的固化作用。固化过程中放射性粉煤灰与放射性污泥的共处置减少了固化过程中水泥的使用。通过这种方法,放射性粉煤灰可以代替工业废料成为有价值的添加剂。这项研究支持粉煤灰在工业中的利用以及核工业中放射性废物的固化。

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