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1.
对负载铁的P204[二(2-乙基己基)磷酸]-Nspa磺化煤油溶液中铁的反萃过程进行了研究。考察了反萃剂种类、反萃剂浓度、反萃时间、反萃温度、反萃转速和反萃相比O/A(有机相与水相的体积比)等对铁的反萃率的影响。结果表明:以14 mol/L磷酸为反萃剂,反萃时间为50 min,反萃温度为303 K,反萃转速为200rpm,反萃相比O/A为1∶1时,铁的反萃率可达85.56%。反萃后得到的萃取剂仍具有较优的萃取性能,可循环利用。  相似文献   

2.
采用简单的反萃取法回收二壬基萘磺酸-磺化煤油溶液中的镁。考察了反萃剂种类、反萃时间、反萃转速、反萃剂浓度、反萃相比(有机相与水相的体积比)O/A值对反萃取率的影响。研究结果表明:在常温下,以硫酸作反萃取剂,反萃剂浓度为4 mol·L-1,反萃时间为20 min,反萃取震荡转速为200 rpm,反萃相比O/A值为5时,镁的反萃率可达93.98%,经过反萃后得到的二壬基萘磺酸-磺化煤油溶液可以重复萃取冶金废水的镁离子,镁的萃取率保持不变。这一研究结果对于冶金行业废水的处理与综合利用具有重要参考价值。  相似文献   

3.
粉煤灰硫酸浸出液中钛和铁的萃取分离   总被引:1,自引:0,他引:1  
薛茹君 《应用化学》2011,28(7):804-808
将粉煤灰的硫酸浸出液,用氨水调节pH值后,用三正辛基氧膦-煤油、磷酸二异辛酯-煤油萃取分离溶液中的Ti4+和Fe3+。 考察了萃取剂、水相阳离子浓度、pH值及萃取温度和时间等实验条件对萃取率的影响;讨论了萃取剂再生条件对提取率及分离产物纯度的影响。 用XRD表征了反萃取煅烧产物的物相组成,用X射线荧光分析测定了煅烧产物TiO2和Fe2O3的纯度。 分析结果表明,钛的萃取率达到97%,提取率>92%;铁的萃取率达到97%,提取率达到96%;TiO2 和Fe2O3的纯度分别为98%和97%,均可以用作涂料的颜料。  相似文献   

4.
因铁离子具有强烈的水解倾向及易与其他离子形成配合物的性质,在溶剂萃取体系中的存在形式极为复杂。在稀土萃取体系中,采用P204或N235除铁,经盐酸反萃后,有机相中铁的反萃率较低,不能深度除去,影响萃取剂的萃取性能。而在P507-N235盐酸萃取体系中,Fe3+在低酸度下可被P507萃取,在高酸度下形成Fe Cl-4配合物被N235萃取,萃取率达99%以上,且难被反萃下来。研究采用草酸和EDTA络合法除去有机相中的铁,结果表明:草酸络合法除铁率较低,较难用草酸络合法将有机相中的铁反萃下来;在温度25℃、反萃时间14 min,相比1∶1的条件下,用EDTA络合法除铁,铁的反萃率可达97.51%,经4次错流反萃后,可将有机相中铁的浓度降至0.002 g·L-1,达到深度除铁的目的。  相似文献   

5.
以磷酸三丁酯(TBP)作为主要萃取剂,4-甲基2-戊酮(MIBK)作为协助萃取剂,三氯化铁(FeCl3)作为共萃剂,以铝锂溶液体系作为试验对象,全面系统的研究了萃取剂的各组成成分、水相溶液的pH值、铁锂原子比、萃取相比、萃取时间以及静置时间对铝锂溶液中锂的萃取效果的影响。通过正交试验确定了萃取反应的最佳反应参数:萃取相比为5∶2,铁锂原子比为2∶1,pH值为1.5,TBP体积分数为70%,MIBK体积分数为15%,萃取时间为10 min。在此条件下,锂的单级萃取率可达82%,锂铝单级分离因数可达51。对萃取分离过程的反应机理进行了研究,深入探索了铁锂共萃取效应,确定了反应产生的萃合物形态为LiFeCl4·2TBP·MIBK,并探究了萃合物形成过程中的键合方式。该萃取方法经济高效,适用于铝锂溶液中锂的分离。  相似文献   

6.
采用磷酸三丁酯(TBP)作为萃取剂、NaClO4作为共萃剂从高镁锂比盐湖卤水中提取锂,考察了萃取温度、溶液pH值、相比和ClO-4用量等因素对Li+萃取率的影响.结果表明,卤水一次萃取的最佳操作条件为:萃取时间10 min,温度25℃,Vo/Vw=2.0,n(ClO-4)/n(Li+)=2.0,pH=5~8,Li+和Mg2+的最高萃取率分别为65.41%和13.31%,锂镁分离系数达到12.32.用水在Vw/Vo=1.0、50℃时进行反相萃取,Li+的反萃率达到81.52%,此时镁锂质量比由45.61下降至8.45.锂镁离子萃取过程呈放热效应,金属离子的萃入对TBP中H的化学位移没有影响,但会导致P O双键的红外伸缩振动吸收峰从1280 cm-1移至1264 cm-1.25℃时用斜率法测定Li+萃合物的组成接近2LiClO4.5TBP,反萃液经深度除镁后可制备碳酸锂.  相似文献   

7.
酸法浸出石煤提钒因具有环保、金属收率高的特点而备受关注,但同时进入母液的铁(高含量的Fe3+)严重影响了钒的富集和产品生产。 对此,本文提出一种基于“抑制-萃取”效应的钒/铁分离混合萃取体系(P507(2-乙基己基磷酸-单2-乙基己基酯)+ N235(三辛/癸烷基叔胺)+磺化煤油),并详细研究了各因素对钒铁分离和钒富集的影响规律。 结果表明,P507是钒铁萃取的主体,N235不具萃Fe3+能力,是产生抑制铁萃取的关键因素,其浓度越高铁萃取率越低;对于酸度较高(pH≤0.4)的原料液钒/铁的分离效果仍较好,这表明了该“抑制-萃取”混合萃取体系对高酸度浸出液钒/铁分离的适用性。 采用氨水从负载有机相中反萃取钒铁,当氨水浓度为6 mol/L时钒的反萃率99%以上,25 ℃,V(有机相)∶V(水相)=2∶1时的反萃液中钒质量浓度14.73 g/L,铁质量浓度小于0.022 g/L,m(V)/m(Fe)=669.5。 该“抑制-萃取”法分离钒/铁操作简单、经济高效,极具工业化前景。  相似文献   

8.
针对太平洋中部深海粘土HCl浸出液酸度高、成分复杂等特点,克服现有萃取剂不足,采用新型萃取剂P535从高浓度HCl浸出液中直接萃取回收Y~(3+),考察料液酸度、萃取剂浓度、萃取时间和相比对萃取的影响以及HCl,H2SO4反萃剂对反萃的影响,分别绘制萃取平衡等温线和反萃平衡等温线,确定反萃方案并完成转型。结果表明:以有机相组成为10%P535(质量分数)+磺化煤油作为萃取剂,料液酸度为1.12 mol·L-1HCl,其最佳萃取条件为:萃取时间5 min,相比O/A=1∶2。经过3级逆流萃取,Y~(3+)萃取率达到98%,Fe~(3+)共萃进入有机相,其他金属基本不萃取。负载有机相用2 mol·L-1的H2SO4溶液可选择性反萃Y~(3+),得到Y_2(SO_4)_3溶液,反萃Y~(3+)的有机相再用8 mol·L-1HCl溶液反萃共萃的Fe~(3+),完成转型。  相似文献   

9.
研究了含钍HEH/EHP(2-乙基己基膦酸单-2-乙基己基脂)萃取剂中钍的反萃性能。采用HCl,HNO3和H2SO4三种矿物酸分别对钍进行了反萃试验研究,结果表明,当反萃酸浓度为[H+]=6 mol.L-1时,HCl和HNO3反钍率小于1%,而硫酸的反钍率接近69%,表明H2SO4是钍的有效反萃剂。以H2SO4作为反萃剂,研究了相比、反萃酸浓度、酸用量、萃取剂浓度及钍负载量对钍的反萃性能的影响。在此基础上,对钍的逆流反萃过程进行了研究,当起始酸浓度为7 mol.L-1时,分别采用1∶1和4∶1的相比进行3级逆流反萃,反萃率分别为92.10%和53.29%。  相似文献   

10.
以对氯苯酚稀溶液为研究对象,以正辛醇为稀释剂,研究了萃取剂种类及其浓度、水相平衡pH、对氯苯酚初始浓度等因素对萃取分配比的影响,并用NaOH对其负载溶质的有机相进行反萃.结果表明,络合萃取对处理高浓度对氯苯酚废水具有优势;磷酸三丁酯(TBP)的浓度和体系的pH是影响络合萃取的关键因素;采用NaOH对有机相进行反萃,当NaOH浓度为0.5mol/L时反萃率达到98.55%.红外光谱分析表明,TBP萃取对氯苯酚基于氢键作用机理.  相似文献   

11.
铬铁矿中铁的快速测定方法研究   总被引:1,自引:0,他引:1  
研究了铬铁矿中铁的测定方法问题。基于测定铬铁矿中铬的溶样方法原理和对传统无汞测铁程序的改进研究,推荐了一个测定铬铁矿中铁的快速方法模式:试样经沸腾硫酸湿烧(~330℃)、磷-硫混合酸溶解、直接用三氯化钛溶液还原铁(Ⅲ→Ⅱ)、过量钛(Ⅲ)自然被氧化后,用常规法滴定之。所提供的快速方法测得之结果准确可靠(RSD=0.55%~0.80%,n=8),适于普遍推广应用。  相似文献   

12.
In this study, the effects of various extraction parameters such as extractant types (Cyanex302, Cyanex272, TBP), acid type (nitric, sulfuric, hydrochloric) and their concentrations were studied on the thorium separation efficiency from uranium(VI), titanium(IV), lanthanum(III), iron(III) using Taguchi??s method. Results showed that, all these variables had significant effects on the selective thorium separation. The optimum separations of thorium from uranium, titanium and iron were achieved by Cyanex302. The aqueous solutions of 0.01 and 1 M nitric acid were found as the best aqueous conditions for separating of thorium from titanium (or iron) and uranium, respectively. The combination of 0.01 M nitric acid and Cyanex272 were found that to be the optimum conditions for the selective separation of thorium from lanthanum. The results also showed that TBP could selectively extract all studied elements into organic phase leaving thorium behind in the aqueous phase. Detailed experiments showed that 0.5 M HNO3 is the optimum acid concentration for separating of thorium from other elements with acidic extractants such as Cyanex272 and Cyanex302. The two-stage process containing TBP-Cyanex302 was proposed for separation thorium and uranium from Zarigan ore leachate.  相似文献   

13.
Generally the metallurgical industries generate huge amounts of harmful environmental wastes, which may be solids, liquids, or gases in their nature. The present study aims to recovery sulfuric acid (227 g/l) from wastes generated during hydrometallurgical digestion of titanium ores with sulfuric acid for TiO2 production. For this purpose Alamine 336/kerosene solvent was used. Various extraction parameters as Alamine 336 concentration, shaking time, type of diluent, and O/A phase ratio were studied and optimized. Under the optimum conditions, Mc-Cabe Thiele diagram results indicated that, after four extraction stages the acid concentration in aqueous phase was reduced from the initial value of 227 g/l to about 17 g/l. Stripping of the loaded sulfuric acid from the organic phase was done with warm water (60°C). Stripping parameters as water temperature, stripping time, and A/O phase ratio were studied. Under the stripping the loaded acid concentration in organic phase was reduced from 210 to 6 g/l which matched theoretically by McCabe Thiele diagram.  相似文献   

14.
Acid leaching of uranium deposits is not a selective process. Sulfuric acid solubilizes iron(III) and half or more of the thorium depending on the mineralog of this element. In uranium recovery by solvent extraction process, uranium is separated from iron by an organic phase consisting of 10 vol% tributylphosphate(TBP) in kerosine diluent. Provided that the aqueous phase is saturated with ammonium nitrate or made 4–5 M in nitric acid prior to extraction. Nitric acid or ammonium nitrate is added to the leach solution in order to obtain a uranyl nitrate product. Leach solutions containing thorium(IV) besides iron are treated in an analogous fashion. Uranium can be extracted away from thorium using 10 vol% TBP in kerosine diluent. The aqueous phase should be saturated with ammonium nitrate and the pH of the solution lowered to 0.5 with sufficient amount of sulfuric acid. In other words, the separation of uranium and thorium depends on the way the relative distributions of the two materials between aqueous solutions and TBP vary with sulfuric acid concentration. Thorium is later recovered from the waste leach liquor, after removal of sulfate ions. Uranium can be stripped from the organic phase by distilled water, and precipitated as ammonium diuranate.  相似文献   

15.
磷酸三丁酯萃取脱硫废液中硫氰酸根的初步研究   总被引:2,自引:0,他引:2  
焦炉煤气含污染物H_2S 5g/m~3-8gm~3、HCN1g/m~3-2.5g/m~(3[1]),目前主要用催化氧化-氨水吸收法(NH_3-OMC)工艺处理.由此产生的脱硫脱氰废液中主要含有NH_4SCN、(NH_4)_2S_2O_3等无机盐,其中,SCN~-及S_2O_3~(2-)浓度均影响脱硫催化剂的效率,规定其总浓度不得超过250g/L.  相似文献   

16.
Extraction of rhenium(VII) and molybdenum(VI) from sulfuric, hydrochloric, and nitric acid solutions with hexabutyltriamide of phosphoric acid was studied. The influence exerted on the extraction of Re(VII) and Mo(VI) by the nature and concentration of an acid in the aqueous phase, temperature, time of contact between phases, and concentration of the extracting agent in the organic phase was analyzed. Isotherms of extraction of rhenium(VII) and molybdenum(VI) with solutions of hexabutyltriamide phosphoric acid in kerosene were obtained, the composition of the complexes being extracted was determined, the enthalpies and entropies were evaluated, and the concentration constants of extraction of the metals were found.  相似文献   

17.
Extraction of arsenic(V) from sulfuric acid solutions with various extractants in multistage counter-current extraction-stripping systems was compared. The extraction ability of the extractants studied showed the following order: ENIM 100>TBP=CYANEX 923>2-methylhexanol. The extraction depends significantly on the number of extraction stages and the phase ratios in extraction. The effects of the number of stripping stages and the phase ratio in stripping are less important.  相似文献   

18.
N1923从碱性氰化液中萃取金(Ⅰ)的研究   总被引:6,自引:0,他引:6  
采用放射性同位素198Au示踪法研究了伯胺N1923和TBP从碱性氰化液中萃取金(Ⅰ),考察了酸化率、水相pH值、萃取剂浓度等对萃取率的影响,以及NaOH对载金有机相的反萃作用。结果表明,TBP含量大于20%,酸化的N1923与KAu(CN)2摩尔比值在11时,金能够完全被萃取。载金有机相可采用0.1mol·L-1的NaOH溶液定量反萃。机理研究表明,伯胺和TBP萃取Au(CN)2-,符合BC类协同萃取机理。当金浓度大于10g·L-1时,在萃取有机相中形成纳米级的聚集体。  相似文献   

19.
Fundamental aspects of the extractive recovery of copper(II) in the presence of accompanying metals from sulfuric acid solutions with hydrazides of Versatic (GVIK 509) α-branched tertiary carboxylic acids in kerosene or its mixture with modifying agents: 2-ethylhexanol or alkylphenol. The selective extraction of copper(II) in the presence of nickel(II), cobalt(II), zinc(II), and iron(III) with hydrazides in kerosene is possible at pH 0.1–0.6. The separation coefficients of element pairs were calculated. It was found that the modifiers have no effect on the quantitative extraction of copper(II), but strongly change the extraction pattern of the metals under study. It was shown that the re-extraction of copper(II) with sulfuric acid solutions is in principle possible.  相似文献   

20.
金属萃取平衡与软-硬酸碱规则   总被引:7,自引:0,他引:7  
软硬酸碱规则从宏观角度描述化合物的形成及性质,在配合物稳定性的判断方面有广泛应用.前文[1]报道了萃取速率常数与金属离子的软硬酸碱强度的关系,本文研究了萃取平衡常数与金属离子的软硬酸碱强度的关系.  相似文献   

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