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作 者:周红艳[1] 石鹏远 王晶[1] 王珂 李于教 ZHOU Hongyan;SHI Pengyuan;WANG Jing;WANG Ke;LI Yujiao(Institute of Physical and Chemical Engineering of Nuclear Industry,Science and Technology on Particle Transport Separation Laboratory,Tianjin 300180,China)
机构地区:[1]核工业理化工程研究院粒子输运与富集技术重点实验室,天津300180
出 处:《同位素》2023年第5期550-556,共7页Journal of Isotopes
摘 要:富集氧化钨是^(186)W的稳定同位素产品之一,主要用于制备放射性医用同位素产品^(188)WO_(3),^(188)WO_(3)能够用作^(188)W/^(188)Re发生器的靶料,生产^(188)Re医用同位素产品,用于生物医学标记、骨癌治疗等医学应用。为满足当前富集^(186)WO_(3)市场需求,以富集六氟化钨-186(^(186)WF_(6))为原料,确定富集^(186)WO_(3)的制备工艺路线,探究工艺参数对^(186)WO_(3)纯度和工艺收率的影响规律,确定最佳工艺参数。在最佳工艺条件下,^(186)WO_(3)样品的化学纯度达到99.91%~99.93%,制备工艺收率达到89.8%~90.5%。以上结果为^(186)WO_(3)样品制备提供了理论和实验依据,并为其他气相氟化物制备金属氧化物的工艺过程提供参考和借鉴。Enriched tungsten-186 oxide is one of the stable isotope products of tungsten.It is used to prepare the radioactive medical isotope product^(188)WO_(3),which can be used as the target material of^(188)W/^(188)Re generator to produce medical^(188)Re isotope product,so as to meet the increasing requirements of biomedical markers,bone cancer treatment and other medical related fields.In order to satisfy the current market demand for^(186)WO_(3),the preparation process of^(186)WO_(3)with tungsten-186 hexafluoride(^(186)WF_(6))as the raw material was studied and determined.The key parameters of preparation processes were systematically optimized,and the influence of essential parameters on the^(186)WO_(3)product purity and process yield was obtained,which determined the optimal process parameters.Finally,the high conversion rate process route was achieved,and the enriched^(186)WO_(3)products were obtained.The chemical purity of^(186)WO_(3)can reach 99.91%-99.93%with the process yield of 89.8%-90.5%under the optimal process conditions.The research consequences of this article can provide a theoretical and experimental basis for the batch preparation of^(186)WO_(3),and give the technical reference for the process of preparing metal oxides from other similar gas-phase fluorides.
关 键 词:氧化钨-186 六氟化钨-186 制备工艺 工艺参数
分 类 号:TL259[核科学技术—核燃料循环与材料] TQ11[化学工程—无机化工]
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