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本研究采用以D80为稀释剂的t-BAMBP萃取体系,从高钾卤水中萃取分离铷。考察了稀释剂种类、萃取剂浓度、萃取相比、碱度、萃取时间、水洗相比、反萃剂酸度、反萃相比、反萃时间等相关因素对分离的影响。选定萃取剂浓度为0.8 mol/L t-BAMBP,碱度0.8 mol/L NaOH,萃取相比2.5/1,萃取时间1 min,水洗相比2.5/1,反萃酸度1mol/L HCl,反萃时间1 min,反萃相比5/1等条件。经两次四级萃取,一次五级水洗,两次两级反萃获得纯度达97.5%的RbCl,铷总萃取率达92.7%。 相似文献
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萃取光度法测定微量铜 总被引:3,自引:0,他引:3
以三氯甲烷作萃取剂,PAN作显色剂,通过光度法测定镀铜废水中的微量铜,选择了适合的测量波长,讨论了酸度,萃取剂用量及振荡时间对萃取率的影响,分析了干扰元素的影响及消除,该方法准确度高,可测量0.01-1.00μg/mL的微量铜。 相似文献
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研究了t-BAMBP[4-叔丁基-2-(α-甲基苄基)苯酚]/磺化煤油萃取体系,从提铯后的母液中,萃取分离钾铷的过程。考察了萃取时间、萃取剂浓度、萃取相比等萃取条件、水洗条件和反萃取条件对铷钾分离的影响。确定了适宜的工艺条件为:t-BAMBP浓度为0.7 mol/L,相比O/A=3∶1,萃取时间为5 min;以0.1 mol/L氯化钠溶液为洗涤剂,洗涤相比O/A=4∶1;以0.5 mol/L 氯化氢溶液为反萃剂,反萃相比O/A=5∶1。经过5级逆流反萃,铷的反萃率达到95.6%以上,铷钾的分离系数较高,实现了铷钾分离。 相似文献
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从制盐母液中直接提取铯和铷的新方法 总被引:7,自引:0,他引:7
利用自制的新型离子交换剂从制盐母液中直接提取铯和铷。介绍了磷钼酸铵离子交换剂的制备工艺及其对离子交换吸附作用的验证。和利用此离子交换剂提取铯和铷的操作过程。结果表明,此离子交换剂可直接提取制盐母液中的铯和铷,相应的氯化铯和氯化铷的提取率以原制盐母液汁,均超过92%;此离子交换剂经氯化铵再生处理,可反复使用,解吸率近100%。 相似文献
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4-甲基-2-(α-甲基苄基)酚铷钾萃取反应机理及热力学研究 总被引:1,自引:0,他引:1
为使卤水中的铷钾得到有效分离,文中研究了4-甲基-2-(α-甲基苄基)酚/脱芳溶剂油在碱性溶液中萃取铷、钾中的反应机理。通过考查分配比与p H值以及萃取剂浓度的关系,采用斜率法与饱和容量法测得了萃合物的组成为MOR·2ROH(M为K~+或Rb~+),确定了萃取反应方程式,证明了该萃取反应为阳离子交换机理,求得表观平衡常数K(Rb)=30.20,K(K)=14.79。通过考查分配比与温度的关系,求得萃取熵ΔS(Rb)=-128.94 J/(K·mol),ΔS(K)=-85.83 J/(K·mol);萃取焓ΔH(Rb)=-29.49 kJ/mol,ΔH(K)=-18.59 kJ/mol;吉布斯自由能ΔG(Rb)=-8.31 kJ/mol,ΔG(K)=-6.57 kJ/mol,证明萃取反应为放热反应,铷的萃取能力大于钾。 相似文献
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《无机盐工业》2017,(11)
采用t-BAMBP[4-叔丁基-2-(α-甲苄基)酚]+磺化煤油的萃取体系,从回收钠盐后的浓缩液中萃取分离低浓度的铷,考察了料液碱度、t-BAMBP浓度、萃取相比、洗涤相比等影响因素对铷萃取以及反萃的影响。通过实验获得了适宜的单级萃取、洗涤和反萃的工艺条件:t-BAMBP浓度为1 mol/L,料液碱度为0.6 mol/L,萃取相比O/A=3,萃取时间为2 min;洗水用0.1 mol/L的氯化钠溶液,相比O/A=3,振荡时间为5 min;反萃剂盐酸浓度为1.0 mol/L,反萃相比O/A=5,反萃时间为8 min。以此条件进行9级分馏萃取(3级萃取、6级洗涤),铷萃取率达92.95%,钾100%留在水相中;进行5级逆流反萃,铷反萃率达99.62%。该萃取工艺成功地实现了低浓度铷的高效分离。 相似文献
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《化学工程》2017,(2):17-20
世界上92%以上的铷资源存在于盐湖卤水及地下卤水中,但卤水中铷与大量的物理化学性质极为相近的钾共存,致使铷的提取技术难度极大。文中以新型铷萃取剂4-甲基-2-(α-甲苄基)酚为研究对象,探讨新型萃取剂对铷钾萃取分离的工艺条件。实验通过单因素控制法得到铷钾分离最佳工艺条件:有机相组成为1.0 mol/L萃取剂和D60溶剂油,水相中碱度为0.5 mol/L的氢氧化钠,萃取时间3 min,相比(体积比)O/A=2.5/1(相比皆为体积比);水洗相比O/A=4/1,水洗时间2 min;反萃剂为2 mol/L的HCl,反萃相比O/A=5/1,反萃时间2 min。铷单级萃取率可达到75%以上,一级萃取后铷钾分离系数可达到25以上,铷的反萃率可以达到88.5%以上。4-甲基-2-(α-甲苄基)酚具有高效的铷钾萃取分离性能,为建立高钾卤水中铷的萃取分离技术提供了一条新的途径。 相似文献
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Extraction of rubidium by t-BAMBP in cyclohexane 总被引:3,自引:0,他引:3
4-Tert-butyl-2-(α-methylbenzyl) phenol (t-BAMBP) was used in cyclohexane in the extraction of rubidium from brine sources containing lithium. The effect of t-BAMBP concentration and aqueous phase pH on the rubidium and lithium extraction equilibrium was studied. t-BAMBP/cyclohexane was efficient and selective for rubidium extraction with optimal operating conditions being pH of 13.0 and initial t-BAMBP concentration of 1.0 mol·L?1. The stoichiometry of the complex of t-BAMBP with rubidium is 4:1. The apparent extraction equilibrium constant of rubidium was calculated by fitting the experimental data. 相似文献
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《分离科学与技术》2012,47(7):1076-1085
In this work, a composite spherical adsorbent, which employs potassium titanium silicate as an adsorption active component, and calcium alginate as a carrier, was successfully prepared. Scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) were used to characterize the adsorbent. The kinetics and thermodynamics of rubidium and cesium ions adsorption were investigated comprehensively, by considering the effects of initial concentration, temperature, solution pH, and coexisting NaCl. According to the determination coefficients, the pseudo second-order kinetic model provided an impressive and comparable correlation, and the second-order rate constant and the initial adsorption rate increase with increasing temperature. In general, the equilibrium adsorption amount increases with the increasing initial metal ion concentration, but decreases with increasing coexisting NaCl. The adsorption capacity keeps constant in the pH value range 3-12 and slightly fades when the temperature increases from 25 to 55°C. Under similar conditions, rubidium and cesium show the similar adsorption amount. The adsorbent has a fast adsorption rate and an adsorption capacity of about 1.55 mmol g?1 for rubidium and 1.47 mmol g?1 for cesium when the initial metal ion concentration is 0.10 mol L?1. The composite adsorbent is effective for the adsorption of rubidium or cesium ions from simulated brines. 相似文献
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Masao Kodama 《Journal of the American Ceramic Society》1991,74(10):2603-2609
By use of the ultrasonic pulse echo overlap method, ultrasonic velocity in rubidium borate glasses is measured as a function of composition at a temperature of 298 K, which is found to exhibit a maximum, a minimum, and another maximum in succession as the rubidium oxide content increases. This behavior is remarkable among the borate anomalies. The elastic property of these glasses is analyzed in terms of the three structural units defined as BØ3 , Rb+ BØ2 O− , and Rb+ BØ− 4 , where Ø represents a bridging oxygen and O− a nonbridging oxygen, from which the cause of this anomalous behavior is elucidated. 相似文献
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