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核电常规岛超流量凝结水精处理设备运行试验及应用 被引量:1
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作者 朱来松 袁劲梅 《给水排水》 CSCD 北大核心 2022年第3期80-82,共3页
随着核电机组百万化,核电凝结水精处理的处理水量不断提升,水质要求提高。为了适应处理更大的水量、更高的水质和延长树脂床的运行周期,研究现有规格柱形设备的处理能力和树脂的装填高度的关系,通过工程应用验证其可行性。
关键词 核电 百万机组 凝结水精处理 柱形设备 树脂层高度 超流速 出水硅
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Kinetics of uranium extraction from coffinite——A comparison with other common uranium minerals 被引量:4
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作者 H.S.REYNOLDS R.RAM +5 位作者 M.I.POWNCEBY Y.YANG M.CHEN J.TARDIO L.JONES S.K.BHARGAVA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第10期2135-2142,共8页
A synthetic coffinite was hydrothermally prepared and characterized before conducting a series of acid sulfate leach tests under conditions of relevance to uranium extraction.The results were then compared with simila... A synthetic coffinite was hydrothermally prepared and characterized before conducting a series of acid sulfate leach tests under conditions of relevance to uranium extraction.The results were then compared with similar studies on synthetic versions of the related U4+minerals uraninite(UO2)and brannerite(UTi2O6)to identify and differentiate the rate and U extraction among these important uranium minerals.Tests examining the influence of residence time on uranium dissolution from synthetic coffinite,uraninite and brannerite showed that under similar experimental conditions,complete dissolution of uranium from coffinite was obtained between 36 and 48 h.The activation energy for this reaction was calculated to be 38.4 kJ/mol.This represented a significantly slower rate of dissolution than that indicated for uraninite which dissolved in 3 h(Ea=15.2 kJ/mol).The synthetic brannerite was leached at a much slower rate than the coffinite and reached a maximum dissolution of^18%U in 144 h(Ea=42-84 kJ/mol).The clear differentiation in rates and U extraction among the three minerals is consistent with previous literatures which suggest that in terms of leachability,uraninite>coffinite>brannerite.It is expected that the presence of impurities in natural coffinites would further inhibit leachability. 展开更多
关键词 COFFINITE URANINITE BRANNERITE acid leaching extraction kinetics
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