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首页> 外文期刊>Indian Journal of Chemical Technology >Transport of Pu(IV)across supported liquid membrane from nitric acid medium using cyanex-923 as the mobile receptor
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Transport of Pu(IV)across supported liquid membrane from nitric acid medium using cyanex-923 as the mobile receptor

机译:使用cyanex-923作为移动受体从硝酸介质跨过支持液膜运输Pu(IV)

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Based on the solvent extraction data,experiments were conducted with Flat-sheet Supported Liquid Membrane(FSSLM)to examine the transport behaviour of Pu(IV)to achieve its maximum recovery.This is necessary to optimize the conditions for further operation of Hollow Fiber Supported Liquid Membrane(HFSLM)and Compact Supported Liquid Membrane Flow Cell(CSLMFC).A laboratory scale hollow fiber module,having membrane surface area,134 cm~2,was employed in a recycling mode using 'Enka' Accurel hollow fiber polypropylene membranes as the solid support,cyanex-923 as the mobile receptor and dodecane as the membrane solvent.Dilute plutonium nitrate solutions in 1 M HNO_3 generally constituted the source phase.Among the strippants,several reagents were tried,the most efficient strippant found was dilute uranous solution in 1.0 M HNO_3 The recovery of Pu from the Pu oxalate supernatant generated during Pu reconversion operations in the PUREX process was tried,where it was observed that ~ 94% of Pu(IV)could be transported in a single run of duration of 10 h,while employing 0.1M cyanex-923/dodecane as a mobile receptor and uranous solution in 1.0 M HNO_3 as the strippant.Parameters such as source phase concentration,source and strippant phase recirculation flow rate,concentration of carrier in the membrane and strippant,and interferences of other permeants on plutonium permeation pertaining to FSSLM,HFSLM and CSLMFC were optimized.This followed the utilization of more application oriented configuration i.e.Hollow fiber membrane configuration for the above purpose.With HFSLM,the K_(obs)values increased from 3.06x10~(-5)to 6.27 X10~(-5)s~(-1)by increasing flow rate from 0.03X10~(-6)to 0.14X10~(-6)m~3/s at 1 h and the percentage permeation increased from 75 to 90%.In the case of CFSLMC,the K_(obs)increased from 5.41X10~(-5)to 5.74X10~(-5)s~(-1)while increasing flow rate from 0.27X10~(-6) to 0.42X10~(-6)m~3/s,at 1 h and the percentage permeation increased from 65 to 85% .
机译:根据溶剂萃取数据,使用平板支撑液膜(FSSLM)进行实验,以检查Pu(IV)的传输行为,以实现其最大回收率。这对于优化中空纤维支撑的进一步操作条件是必要的液膜(HFSLM)和紧凑型支撑液膜流通池(CSLMFC)。采用“ Enka” Accurel中空纤维聚丙烯膜作为回收模式,采用了实验室规模的中空纤维组件,其膜表面积为134 cm〜2。固体载体,cyanex-923作为移动受体,十二烷作为膜溶剂。通常在1 M HNO_3中稀释硝酸p溶液作为源相。在脱模剂中,尝试了多种试剂,发现最有效的脱模剂是稀尿烷溶液。 1.0 M HNO_3尝试从PUREX工艺中Pu转化操作中生成的草酸Pu上清液中回收Pu,观察到〜94%的Pu(IV )可以在10小时的单程中运输,同时使用0.1M cyanex-923 /十二烷作为移动受体,并在1.0 M HNO_3中的尿溶液作为脱模剂。源相浓度,源和脱模剂相再循环等参数对FSSLM,HFSLM和CSLMFC的流速,膜中的载体和脱模剂中的载体浓度以及其他渗透物对p渗透的干扰进行了优化。这是为了实现上述目的而采用了更多的应用导向配置,即空心纤维膜配置。 HFSLM,通过将流速从0.03X10〜(-6)增加到0.14X10〜(-6),将K_(obs)值从3.06x10〜(-5)增加到6.27 X10〜(-5)s〜(-1) 1 h时)m〜3 / s,渗透率从75%增至90%.CFSLMC的K_(obs)从5.41X10〜(-5)s增加到5.74X10〜(-5)s〜 (-1)在1 h时将流速从0.27X10〜(-6)增加到0.42X10〜(-6)m〜3 / s,并且渗透率从65%增加到85%。

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