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Method for decontamination of nickel-fluoride-coated nickel containing actinide-metal fluorides

机译:氟化镍涂覆的含act系元素金属氟化物的镍的去污方法

摘要

The invention is a process for decontaminating particulate nickel contaminated with actinide-metal fluorides. In one aspect, the invention comprises contacting nickel-fluoride-coated nickel with gaseous ammonia at a temperature effecting nickel-catalyzed dissociation thereof and effecting hydrogen-reduction of the nickel fluoride. The resulting nickel is heated to form a melt and a slag and to effect transfer of actinide metals from the melt into the slag. The melt and slag are then separated. In another aspect, nickel containing nickel oxide and actinide metals is contacted with ammonia at a temperature effecting nickel- catalyzed dissociation to effect conversion of the nickel oxide to the metal. The resulting nickel is then melted and separated as described. In another aspect nickel-fluoride-coated nickel containing actinide-metal fluorides is contacted with both steam and ammonia. The resulting nickel then is melted and separated as described. The invention is characterized by higher nickel recovery, efficient use of ammonia, a substantial decrease in slag formation and fuming, and a valuable increase in the service life of the furnace liners used for melting.
机译:本发明是一种对被act系元素金属氟化物污染的镍颗粒进行净化的方法。一方面,本发明包括在实现镍催化的离解和实现氟化镍的氢还原的温度下,使氟化镍涂覆的镍与气态氨接触。加热所得的镍以形成熔体和炉渣,并使act系元素金属从熔体转移到炉渣中。然后将熔体和炉渣分离。在另一方面,在实现镍催化的离解的温度下,使含镍的氧化镍和oci系金属的镍与氨接触,以实现氧化镍向金属的转化。然后将所得的镍按所述方法熔化并分离。在另一方面,涂覆有氟化镍的含镍的act系元素金属氟化物与蒸汽和氨接触。然后将所得的镍按所述方法熔化并分离。本发明的特征在于更高的镍回收率,氨的有效利用,炉渣形成和发烟的显着减少以及用于熔化的炉衬的使用寿命的可观增加。

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