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浓缩铀UO_2F_2对脾淋巴细胞DNA合成影响的研究
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作者 王六一 朱寿彭 《苏州医学院学报》 1995年第6期1001-1002,1199,共2页
研究了浓缩铀UO2F2对BALB/C小鼠脾淋巴细胞DNA合成的影响,结果发现:脾B淋巴细胞LPS转化反应在浓缩铀UO2F2作用下细胞增殖受到明显抑制,^3H-TdR掺入显著减少,而脾脏T淋巴细胞PHA转化反应在浓缩铀... 研究了浓缩铀UO2F2对BALB/C小鼠脾淋巴细胞DNA合成的影响,结果发现:脾B淋巴细胞LPS转化反应在浓缩铀UO2F2作用下细胞增殖受到明显抑制,^3H-TdR掺入显著减少,而脾脏T淋巴细胞PHA转化反应在浓缩铀UO2F2注入1天时细胞增殖受抑,但到第2、3天时细胞增殖有所增加,^3H-TdR掺入显著高于对照组。 展开更多
关键词 浓缩铀 UO_2F_2 脾淋巴细胞 DNA 合成
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Construction of nanospace-confined adsorption electrocatalyst for efficient uranium extraction from fluoride-containing wastewater
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作者 Xiaolu Liu Muliang Xiao +7 位作者 Xinyi Yang Li Wang He Gu Yinghui Xie Mengjie Hao Geoffrey I.N.Waterhouse Xishi Tai Hui Yang 《Science China Chemistry》 2025年第12期6503-6512,共10页
Efficient extraction of uranyl [U(VI)O_(2)^(2+)] from fluoride-containing wastewater is important for both uranium mining and fuel rod manufacturing.However,it remains challenging due to the strong interaction between... Efficient extraction of uranyl [U(VI)O_(2)^(2+)] from fluoride-containing wastewater is important for both uranium mining and fuel rod manufacturing.However,it remains challenging due to the strong interaction between U(VI)O_(2)^(2+)and F^(-),which results in the formation of water-soluble and stable [UO_(2)F_(n)]^(2-n)(n = 0,1,2,3,4) complexes.Herein,we propose an innovative nanospaceconfined adsorption electrocatalytic strategy(NAES) that enables efficient extraction of U(VI)O_(2)^(2+)from fluoride-containing wastewater.This is realized by rationally introducing amidoxime groups(R) into the interlayer region of a cobalt layered double hydroxide electrocatalyst(creating Co-LDH-R).The amidoxime groups selectively bind U(VI)O_(2)^(2+),which is further electrocatalytically converted to a K_(5)(UO_(2))_(2) F_(9) solid by the action of the Co^(2+)sites of Co-LDH-R through an electrocatalytic redox process in the presence of K^(+) and F^(-).Co-LDH-R can stably extract U(VI)O_(2)^(2+)from fluoride-containing wastewater streams,with a remarkable capacity of 7255.15 mg/g after 72 h,positioning it as one of the most effective U(VI) extractants reported to date.The generated solid K_(5)(UO_(2))_(2) F_(9) can be collected for storage or further processing.Therefore,our work offers a promising new pathway for uranium resource recovery under practical conditions. 展开更多
关键词 fluoride-containing wastewater nanospace-confined adsorption electrocatalytic strategy Co-LDH-R K_(5)(UO_(2))_(2)F_(9)
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