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1.
研究了废杂铜中铁含量的测定方法.试料采用盐酸、硝酸、高氯酸溶解,加入过量氨水生成氢氧化铁沉淀与铜、铬等干扰元素分离,沉淀用热盐酸溶解后,用氯化亚锡还原至溶液呈浅黄色,重铬酸钾滴定法测定铁含量.探讨了溶样方式、氯化铵用量、氨水过量的体积、硫磷混酸用量对测定结果的影响.对4个废杂铜样品中的铁含量进行测定,测定结果的相对标准...  相似文献   

2.
准确快速测定黄钠铁矾中铁的含量有利于控制铁湿法冶金的流程。采用氢氧化钠溶液分解试样,盐酸(1+9)溶解滤渣,蒸发除过量酸,氨水沉淀分离铜、镍、钴等元素,再用稀盐酸溶解沉淀。在盐酸介质中,SnCl_2将大部分Fe(Ⅲ)还原为Fe(Ⅱ),钨酸钠为指示剂,用TiCl_3还原呈钨蓝色,重铬酸钾滴定至蓝色褪去。再以二苯胺磺酸钠为指示剂,重铬酸钾标准溶液滴定测定样品中铁的含量。实验表明,黄钠铁矾中共存干扰元素绝大部分被分离,同时与酸溶解法进行比较,测定数据一致,相对标准偏差(n=9)小于0.1%。  相似文献   

3.
Kallmann S  Komarkova E 《Talanta》1982,29(8):700-702
A method for the determination of total iron in iron ores and concentrates is described which avoids the use of mercuric chloride. The sample is decomposed either by an acid attack or by fusion with sodium peroxide. The hot sample solution in about 6M hydrochloric acid is treated with hot 10% stannous chloride solution till pale yellow, followed by addition of a slight excess of 2% titanous chloride solution; the excess is then oxidized with perchloric acid (1 + 1). The solution is rapidly cooled in ice-water, and the iron (II) is titrated with potassium dichromate (sodium diphenylsulphonate as indicator). The results show the same degree of precision, accuracy, and degree of interference as those obtained by the standard stannous chloride-mercuric chloride method.  相似文献   

4.
An improved spectrophotometric method is proposed for the determination with iodide of trace amounts of bismuth in copper and cartridge brass. The sample is dissolved in nitric acid and the bismuth is separated from the copper by an ammoniacal precipitation in the presence of iron(III) hydroxide as a gathering agent. The hydroxide precipitate is dissolved in hydrochloric acid, sulfuric acid is added, the solution is evaporated to a few ml, hydrobromic acid is added to volatilize the antimony and tin, and the solution is evaporated to fumes of sulfuric acid. The bismuth iodide color is then developed with a composite potassium iodide—sodium hypophosphite reagent. Factors affecting the bismuth iodide color are investigated.  相似文献   

5.
选矿中产生的钨尾矿长期堆放,经过雨水冲刷,钨尾矿中的砷会进入到水土中,造成环境污染,准确测定钨尾矿中砷含量,利于监测钨尾矿中砷对环境的污染程度。采用硝酸-氯酸钾饱和溶液和氟化铵溶液分解样品,再用硫酸溶液冒烟赶尽硝酸,在盐酸介质中,以硫酸铜为催化剂,用次亚磷酸钠将砷离子还原成元素态,析出的砷过滤分离,除去其他杂质。在硫酸溶液中,用过量的重铬酸钾标准溶液滴定溶解单质砷,过量的重铬酸钾以二苯胺磺酸钠为指示剂,用硫酸亚铁标准溶液反滴定。通过优化样品溶解条件和砷沉淀还原条件,建立了次亚磷酸钠分离-重铬酸钾容量法测定钨尾矿中砷含量的分析方法。通过测定滤液中的砷含量,考察了滤液中砷含量对砷测定结果的影响,可忽略不计,表明实验中砷沉淀完全。通过沉淀单质砷,过滤使砷与杂质元素分离,消除了杂质元素对砷测定的影响。运用重铬酸钾容量法测定3个钨尾矿样品中的砷,并进行加标回收实验,测定结果的相对标准偏差(RSD,n=11)在0.14%~2.1%,加标回收率在97%~101%。方法操作简单、精密度高,适合钨尾矿中高含量砷的测定,测定结果与碱融分离-碘量法结果基本一致。  相似文献   

6.
Prasad TP 《Talanta》1969,16(11):1484-1485
A simple and accurate method is described for the determination of degree of metallization in reduced iron oxide ores. Both metallic iron and total iron are determined in a single sample. The metallic iron is selectively dissolved in copper sulphate solution and the oxides are filtered off. The filtrate is titrated with potassium dichromate solution. The residue is dissolved in dilute sulphuric acid in presence of excess of copper powder and after filtration is titrated with the same dichromate solution. The first value gives the metallic iron content and the second value gives the iron content of the oxide residue. From these two values, the degree of metallization is computed.  相似文献   

7.
建立碱熔酸浸试样–碘量法测定铜冶炼白烟尘中铜的方法。采用氢氧化钾–硝酸钾混合溶剂熔融试样,用盐酸浸取,以溴消除砷、锑等元素的干扰,用碘量法测定铜的含量。对滴定条件及共存元素的干扰和消除进行了验证,从而确定了最佳测定条件。实验最佳条件:4 g氢氧化钾和0.5 g硝酸钾混合溶剂;马弗炉温度650 ℃;样品称样量0.300 0 g;硫代硫酸钠标准溶液浓度0.02 mol/L。采用该实验条件,铜冶炼白烟尘中的铜测定结果相对标准偏差在0.37%~0.83%之间(n=10),样品加标回收率为98.30%~101.40%。该方法分析时间短,测定结果准确可靠,具有良好的精密度,可用于铜冶炼白烟尘中铜的测定。  相似文献   

8.
A coulometric method was developed for the determination of microamounts of sulphur in iron and steel. Hydrogen sulphide is quantitatively evolved by reduction with iron(II) in strong phosphoric acid medium and is titrated with electrolytically generated silver ion from a silver anode. Microamounts of sulphide (2.96–224.3 μg) in sodium sulphide standard solutions could be determined with an error of only a few percent. Sulphur in a potassium sulphate standard solution is quantitatively reduced to hydrogen sulphide and could be separated from the solution by heating and determined accurately. Trace amounts of sulphur (7–100 μg g?1) in iron and steels could be determined with a standard deviation of 0.7–2.1 μg g?1.  相似文献   

9.
五氧化二钒样品用盐酸分解,在稀盐酸介质中,用原子吸收分光光度计分别于248.3,766.5,589.0 nm波长处,使用空气–乙炔火焰,测量五氧化二钒中铁及氧化钾、氧化钠含量。在最佳实验条件下,铁、氧化钾、氧化钠的质量浓度分别在0.05~0.20,0.05~0.80,0.20~1.0 mg/L范围内与吸光度线性关系良好,相关系数分别为0.998 6,0.994 3,0.994 2。方法检出限铁为6.7μg/L,氧化钾为1.0μg/L,氧化钠为1.4μg/L,加标回收率为95.9%~103.0%。铁、氧化钾、氧化钠测定结果的相对标准偏差分别为3.2%,4.2%,2.9%(n=6)。该方法适合五氧化二钒中铁及氧化钾、氧化钠的测定。  相似文献   

10.
Bear IJ  Strode PR 《Talanta》1976,23(5):400-402
In a proposed new procedure the sample is treated with bromine, the excess of bromine removed, and the residue extracted with methanol. After filtration the filtrate is evaporated to remove methanol and the bromides are dissolved in hydrochloric acid for determination of metallic iron. The oxide residue from the filtration is fused in sodium peroxide and then dissolved in hydrochloric acid for the determination of iron present either as oxide or silicate. Iron in the hydrochloric acid solutions from the residue and filtrate is determined either by titration with standard potassium dichromate solution or by atomic-absorption spectrometry.  相似文献   

11.
用消解乳化技术处理丁苯橡胶样品,先用浓硝酸消解样品,再用乙醇-甲基异丁基酮混合溶剂溶解消解产物,并用乳化剂Triton X-100乳化成乳浊液。以钡离子作为钠和钾的消电离剂,以空白溶液为参比,用工作曲线法测定,建立了快速测定丁苯橡胶中钠和钾的FAES法。对溶剂及乳化剂、试液与空白溶液粘度的一致性、干扰及检出限进行了考察。测定结果的相对标准偏差小于2.4%,加标回收率98.0%~104.7%。  相似文献   

12.
A rapid method for the determination of molybdenum in botanical, biological, geochemical and steel samples with dithiol, is described. Botanical and biological samples are ashed at 550 °C before leaching with 4 M hydrochloric acid, while geochemical samples are fused with potassium hydrogensulphate, and steels are decomposed with nitric and hydrochloric acids. The dithiol complex of molybdenum is formed by the addition of an alkaline solution of dithiol to the sample solution, and then extracted into isoamyl acetate. Ascorbic acid and citric acid are used to eliminate interferences from iron and tungsten, and the addition of potassium iodide gives the procedure very high tolerance to copper. Up to 150 geochemical samples or ashed botanical or biological samples can be analysed per man-day. Sensitivity of the method is 0.05, 0.5 and 10 p.p.m. for biological, geochemical and steel samples, respectively. The relative standard deviation is better than ±7% over the standard range used, and recovery of added molybdenum is complete.  相似文献   

13.
建立了以锌粉-氢氧化钠熔融样品,盐酸浸取,用盖氏漏斗作为还原装置,铁粉和铝粒将锡还原,碘酸钾滴定法测定ITO粉末材料中锡的分析方法。方法测定结果稳定,精密度好,相对标准偏差为0.42%~0.67%,加标回收率在99.8%~101%,能够满足ITO粉末中锡的测定要求。  相似文献   

14.
Sun B  Ye Y  Huang H  Bai Y 《Talanta》1993,40(6):891-895
A new method for determining iron is based on both nonlinear regression calibration plots and parabolic interpolation using a fluoride ion-selective electrode (ISE) and the Apple II-ISE intelligent ion Analyzer developed by ourselves. The experimental conditions for determining iron are discussed. The appropriate acidity of the experimental solution is pH 3, controlled by total ionic strength adjustment buffer (TISAB) that is composed of glycine (aminoacetic acid), nitric acid and sodium nitrate. The suitable total concentration of fluoride is equal to the highest concentration of iron in the standard series. Because the mathematical model of the method coincides with the experimental data the Apple II-ISE intelligent ion Analyzer can perform data acquisition and data processing, and the performance of fluoride electrode is excellent, the new method for determination of iron is fast and accurate. This method has been used successfully in the determination of iron in mineral samples.  相似文献   

15.
A simple procedure is described for the determination of arsenic and antimony in electrolytic copper. The copper is digested with nitric acid and copper is separated from arsenic and antimony by passing an ammoniacal solution of the sample through a column of Chelex-100 resin. After digestion with sulphuric acid and reduction to arsenic(III) and antimony(III) with sodium sulphite in 7 M sulphuric acid at 80°C, both arsenic and antimony are deposited at-0.30V and their total is determined by anodic stripping; antimony is then selectively deposited at -0.05 V for anodic stripping. The lower limits of determination are 56 ng As and 28 ng Sb per gram of copper; relative standard deviations (n = 5) are in the ranges 6.1–15.0% for 5.5—0.5 ppm arsenic in copper and 4.1–6.8% for 2.6—0.6 ppm antimony.  相似文献   

16.
采用灰化后再溶解试样的方法,成功解决了除尘灰因碳含量过高而难于溶解的问题;将灰化后的试样以HCl-HNO3-HF-HClO4混酸溶解,在氯酸钾存在下,以铁盐作载体,用氨水沉淀分离大部分铁、铝、铅等元素,以硫脲-氟化物、硫代硫酸钠、抗坏血酸作掩蔽剂,掩蔽剩余少量铜、锡、铁等干扰元素,在pH=5.5~6条件下,以二甲酚橙为指示剂,用EDTA标准溶液滴定得到锌的含量。方法的相对标准偏差在0.75%~2.8%,加标回收率在98.0%~102%。方法操作简便,且分析结果准确度、重现性较好,可以满足生产检验的需要。  相似文献   

17.
建立了以邻菲罗啉(Phen)、氢氟酸(HF)和硫酸(H2 SO4)为溶剂溶解试样,用重铬酸钾滴定法测定铁矿中亚铁含量的新方法.在强酸(H2 SO4)介质中,Fe2与邻菲罗啉和氟离子形成稳定的络合物,有效地防止了亚铁离子的氧化.在硼酸、硫磷混酸溶液中,以重铬酸钾溶液滴定,并对溶样过程以及滴定过程中的一些条件进行了优化.方法用于铁矿中氧化亚铁的测定,经过国家标准样品以及单位管理样品分析数据对比,方法的重现性较好,相对标准偏差(RSD)<1%,方法无需在铂金坩埚进行熔样,具有准确度高、重现性好、简单、快速、经济等优点,在实际应用中得到满意的结果.  相似文献   

18.
A simple in situ visual and tristimulus colorimetric method for the determination of trace arsenic in environmental water after collecting arsenic on a test paper impregnated with mercury(II) bromide and rosaniline chloride by its reduction aeration has been developed. The color development on the test paper is based on the formations of AsH(HgBr)2 (yellow) and/or As(HgBr)3 (brownish yellow) by a reaction between mercury(II) bromide and arsine (AsH3), which is produced through the reduction of As(III) (arsenite ion) and/or As(V) (arsenate ion) in a sample solution. To a sample solution, potassium iodide, tin(II) chloride, zinc sand and 4 ml of 6 M hydrochloric acid solution were added successively. The liberated arsine was collected on the test paper. The yellow or brownish-yellow color intensity on the test paper was measured by a tristimulus colorimeter and also by a visual method. The established method is applicable to the determination of arsenic in environmental water sample such as river, brackish, and seawater types.  相似文献   

19.
针对选矿废水中的铜离子和铁离子,在滴定铜离子含量的基础上,向滴定液中继续加入三氯化铝溶液作为解蔽剂将铁离子解蔽,此时溶液呈深棕色,以硫代硫酸钠标准溶液继续滴定铁,溶液深棕色消失转为奶白色即为滴定终点,避免了单独滴定铜铁含量的麻烦,且在滴定铁离子含量时无需除铜。经实验验证,对选矿废水中铁含量进行滴定与重铬酸钾滴定铁含量的结果一致,相对误差小于2.03%,加标回收率在95.8%~101.9%,相对标准偏差(RSD,n=10)在0.48%~1.5%。方法精密度高,重现性好,简便快捷,可以满足选矿废水中铜、铁含量的测定要求。  相似文献   

20.
Donaldson EM 《Talanta》1990,37(10):955-964
A continuous hydride-generation atomic-absorption spectrometric method for determining approximately 0.02 mug/g or more of antimony in ores, concentrates, rocks, soils and sediments is described. The method involves the reduction of antimony(V) to antimony(III) by heating with hypophosphorous acid in a 4.5M hydrochloric acid-tartaric acid medium and its separation by filtration, if necessary, from any elemental arsenic, selenium and tellurium produced during the reduction step. Antimony is subsequently separated from iron, lead, zinc, tin and various other elements by a single cyclohexane extraction of its xanthate complex from approximately 4.5M hydrochloric acid/0.2M sulphuric acid in the presence of ascorbic acid as a reluctant for iron(III). After the extract is washed, if necessary, with 10% hydrochloric acid-2% thiourea solution to remove co-extracted copper, followed by 4.5M hydrochloric acid to remove residual iron and other elements, antimony(III) in the extract is oxidized to antimony(V) with bromine solution in carbon tetrachloride and stripped into dilute sulphuric acid containing tartaric acid. Following the removal of bromine by evaporation of the solution, antimony(V) is reduced to antimony(III) with potassium iodide in approximately 3M hydrochloric acid and finally determined by hydride-generation atomic-absorption spectrometry at 217.8 nm with sodium borohydride as reluctant. Interference from platinum and palladium, which are partly co-extracted as xanthates under the proposed conditions, is eliminated by complexing them with thiosemicarbazide during the iodide reduction step. Interference from gold is avoided by using a 3M hydrochloric acid medium for the hydride-generation step. Under these conditions gold forms a stable iodide complex.  相似文献   

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