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1.
EDTA络合滴定法快速测定含钡铅矿石中的铅   总被引:1,自引:1,他引:0  
李志伟 《岩矿测试》2013,32(6):920-923
对于含钡铅矿石中铅的测定,采用EDTA容量法由于在分析流程中生成硫酸铅钡复盐使铅的分析结果偏低;采用钡铬酸铅容量法可以消除钡的干扰,但分析方法流程繁杂,耗时长。本文对现有的EDTA容量法进行改进,建立了一种快速测定含钡铅矿石样品中铅含量的分析方法。样品在盐酸体系中溶解,用硫酸沉淀分离可溶性钡离子,再用硫酸沉淀铅,所得的硫酸铅沉淀用pH=5.7的乙酸-乙酸钠缓冲溶液溶解,EDTA络合滴定法测定铅的含量。分析结果表明,盐酸用量为40 mL,50%硫酸用量为2滴时可以消除钡对铅测定的干扰,样品分解后硫酸铅沉淀20 min即可分离测定。本法的测定值与国家标准方法的测定值基本一致,方法精密度为0.1%~0.8%。方法中沉淀放置时间只有20 min,与国家标准方法和其他方法的沉淀放置时间(4 h或过夜)相比较,缩短了样品处理流程,满足了矿山企业选冶生产现场样品的快速检测要求。  相似文献   

2.
稀土元素在矿石中有多种不同的赋存形式,主要有离子吸附型和矿物晶格型,稀土不同赋存形态对其本身准确分析测定有很大的影响。本文从稀土元素在矿石中不同赋存形态的角度出发,探讨了不同前处理方法对稀土准确测试结果的影响,采用盐酸-硝酸-氢氟酸-高氯酸(四酸)敞开酸溶、盐酸-硝酸-氢氟酸-高氯酸-硫酸(五酸)敞开酸溶、氢氟酸-硝酸封闭压力酸溶、氢氧化钠-过氧化钠碱熔四种方法对离子吸附型和矿物晶格型两类赋存类型的稀土矿石样品进行前处理,电感耦合等离子体发射光谱法测定其中的15种稀土元素。结果表明:对于离子吸附型的稀土矿石标准物质(GBW 07161、GBW 07188),四酸敞开酸溶法测定的结果明显偏低,15种稀土元素大都偏低10%~20%,五酸敞开酸溶法、封闭压力酸溶法和碱熔法的测定值与标准值吻合;而对于稀土以离子化合物及类质同象置换的形式赋存于矿物晶格中的白云鄂博轻稀土矿石样品,三种酸溶法结果较碱熔法均偏低,其中四酸敞开酸溶法偏低最多,约偏低20%左右,五酸敞开酸溶法和封闭压力酸溶法偏低5%~15%。本文提出,对于离子吸附型稀土矿,五酸敞开酸溶法和封闭压力酸溶法可以代替传统操作复杂的碱熔法,但对于稀土以离子形式赋存于矿物晶格型的稀土矿,目前最合适的前处理法是传统的碱熔法。  相似文献   

3.
微波酸溶消解方法是测定固体废物中金属元素最主要的前处理方法,消解时使用不同的酸体系对测定结果有较大的影响。本文以国家土壤标准样品、固体废物标准样品和固体废物实际样品为材料,比较了在硝酸-盐酸、硝酸-氢氟酸、硝酸-盐酸-双氧水、硝酸-盐酸-氢氟酸-双氧水4种酸体系下,16种金属元素测定结果的差异以及在硝酸-盐酸和硝酸-盐酸-氢氟酸-双氧水酸体系下各元素的精密度和准确度。研究表明:一些土壤基体中加入氢氟酸能使Mo和Sb的回收率提高40%左右,固体废物样品中只有Sb的回收率能提高33%~50%。对于含氢氟酸的酸消解体系,改变硝酸和盐酸的比例,其测定结果没有明显差异;对于元素含量相差悬殊的铬渣样品,由于空间电荷效应,高浓度的Cr对V的测定有抑制作用。从方法的准确度和精密度来看,硝酸-氢氟酸-盐酸-双氧水的消解效果最好。  相似文献   

4.
测定银铅矿中的铅,常规分解方法是采用酸溶法(王水和四酸)处理样品。当银铅矿中重晶石含量为40%~80%时,酸溶法不能完全分解样品,造成铅的测定结果偏低;且样品中大量硫酸钡的存在易与铅生成铅钡复盐沉淀而影响铅的准确测定。本文采用过氧化钠碱熔法分解样品,在试液中加入氯化钡,应用电感耦合等离子体发射光谱法测定重晶石含量高的银铅矿中铅的含量,通过优化取样量与稀释倍数等参数,配合高盐雾化器的使用有效避免了基体干扰。方法检出限为0.013%,相对标准偏差(RSD)为1.1%~1.6%,回收率为97.9%~102.9%,标准样品的测定结果可靠。本法采用过氧化钠碱熔,可完全彻底地分解样品;氯化钡的加入使重晶石含量高的银铅矿样品中硫酸钡对铅的干扰被消除,而对不含重晶石的铅矿样品中铅的测定无影响。本法解决了银铅矿与高含量重晶石共生时样品难分解的问题,同时解决了硫酸钡干扰测定铅的问题。  相似文献   

5.
杨载明 《岩矿测试》2011,30(3):315-317
采用四酸(盐酸-硝酸-氢氟酸-高氯酸)溶矿、三酸(氢氟酸-硝酸-硫酸)溶矿及氢氧化钠碱熔法3种前处理方法对铝土矿样品进行分解,电感耦合等离子体发射光谱法(ICP-AES)测定样品中的镓。结果表明,四酸溶矿法的分解产物中存在较多的不溶物,镓与盐酸生成GaCl3导致挥损,镓的测定结果严重偏低;三酸溶矿法的分解产物中也存在较多的不溶物,导致测定结果严重偏低;氢氧化钠碱熔法处理铝土矿样品,酸化后所得溶液清澈透明,由于大量NaCl的存在,镓不会挥损,测定值准确度高。采用氢氧化钠碱熔,盐酸酸化提取,ICP-AES法测定镓的准确度高,精密度好,方法检出限为3.21μg/g,相对标准偏差(RSD,n=11)小于5%。经国家一级和二级标准物质分析验证,测定结果与标准值基本一致。  相似文献   

6.
贾天增 《岩矿测试》1984,(3):280-281
以碘化钾-抗坏血酸为络合剂,MIBK萃取原子吸收法测定铅,结果均系统偏低。我们认为铅的结果偏低是因为制备溶液时铅没有完全转入溶液,因而影响了碘离子与铅的络合,致使结果偏低。 为了解决这一问题,我们用HCl-HNO_3-HClO_4-HF溶矿的同时,加入1:1H_2SO_4 1.0ml,以提高分解温度,使铅基本上以硫酸铅的形式沉淀。用盐酸浸取时,加入一定量的醋酸钠,使硫酸铅或其它形式沉淀的铅均被溶解生成醋酸铅进入溶液。  相似文献   

7.
采用王水溶解锑矿石常出现溶矿不彻底、提取过程中锑水解的问题,导致测定结果偏低;虽然原子荧光光谱法广泛应用于锑的测定,但是该方法由于仪器线性范围窄,对于高含量锑(5%)的测定容易引入较大稀释误差。本文对样品采用氢氟酸-硝酸-盐酸混合酸溶后,在提取过程中加入酒石酸与锑络合,充分抑制了锑的水解。实验结果表明:采用氢氟酸、硝酸、盐酸混合酸体系的溶矿方式,能够有效分解矿石中的硅酸盐组分,使溶解更加彻底,锑的测定结果优于王水溶矿,且检出限更低(1.10μg/g);通过酒石酸与锑的络合及盐酸对锑水解的抑制,锑的测定结果优于王水介质及盐酸介质的结果,且方法精密度(RSD,n=6)为0.11%~1.11%,较其他介质更稳定。在ICP-OES分析中通过对锑元素分析谱线的优选,可以获得更宽的线性范围,从而实现了对较高含量锑的准确测定。本方法能快速、有效溶解锑矿石并避免锑元素水解,经国家一级标物验证,所得结果与认定值相符,适用于分析锑矿石中含量范围在0.7%~40%的锑。  相似文献   

8.
矽卡岩型铜多金属富矿石是西藏特有矿产,具有成矿元素多样且含量普遍较高的特点,矿物类型主要为硫化物型,成矿元素有Cu、Pb、Zn、Fe、Ag、Bi、Cd、Co等。采用湿法处理此类样品时常因银、铅等元素含量较高出现难溶解、易沉淀现象,导致测定结果偏低。本文采用盐酸预处理、硝酸-氢氟酸-高氯酸溶矿体系,能有效除去样品中的硫,样品分解效果好,选择稀释倍数为1000、溶液介质为10%盐酸,样品溶液不会产生沉淀,采用电感耦合等离子体发射光谱法测定各待测元素均可获得较好的准确度、精密度。方法测定范围为:Cu 0.0056%~20.0%,Pb 0.0087%~20.0%,Zn 0.0031%~20.0%,Fe 0.0090%~20.0%,Ag 5.40~3000μg/g,Bi 10.8~5000μg/g,Cd 0.69~5000μg/g,Co 2.09~5000μg/g。用国家标准物质进行验证,方法准确度小于5.40%,精密度(RSD,n=11)小于4.41%。该方法具有前处理流程简单、分析速度快、同时测定元素多、线性范围宽等优点,经实际样品测试与不同方法分析数据吻合。  相似文献   

9.
钨矿石和锡矿石成分复杂,具有丰富的共生或伴生元素。在国家标准方法中,对其中的微量共生或伴生元素含量多采用单元素测定,分析强度大,效率低。本文采用混合酸在敞开体系中消解样品,以50%盐酸提取盐类,电感耦合等离子体质谱仪(ICP-MS)同时测定钨矿石和锡矿石中的锂钪铬钴镍铜铅锌铷钼铯锑铋钍等14种微量元素。通过比较碱熔法、盐酸+氢氟酸+硝酸+高氯酸四酸溶矿法、氢氟酸+硝酸+高氯酸三酸溶矿法这三种样品前处理方法,确定选择使用氢氟酸+硝酸+高氯酸三酸溶矿法溶解样品。ICPMS测定过程中,选择铑和铼作为内标元素,有效监控分析信号的漂移。测定结果表明,各元素的检出限为0.003~1.64μg/g,相对标准偏差在0.1%~3.1%,方法回收率在93.1%~104.3%。方法应用于实际钨矿石和锡矿石分析,测定结果与各元素标准测定值吻合较好。相对于传统处理方法,本法一次溶样,多元素同时测定,使分析效率得到了有效提高,更适合大批量多元素钨矿石和锡矿石样品的分析。  相似文献   

10.
从实验结果看出,实验采用盐酸-硝酸-氢氟酸-高氯酸酸溶及过氧化钠碱熔分解样品结果大部分元素无显著性差别,建议日常分析采用盐酸-硝酸-氢氟酸-高氯酸分解样品即可,溶液用原子吸收测量。  相似文献   

11.
Lead- and Pb-As-jarosites are minerals common to acidic, sulphate-rich environments, including weathering zones of sulphide ore deposits and acid rock or acid mine drainage (ARD/AMD) sites, and often form on or near galena. The structures of these jarosites are based on linear tetrahedral-octahedral-tetrahedral (T-O-T) sheets, comprised of slightly distorted FeO6 octahedra and SO42− (-AsO43− in Pb-As-jarosites) tetrahedra. To better understand the dissolution mechanisms and products of the break down of Pb- and Pb-As-jarosite, preliminary batch dissolution experiments were conducted on synthetic Pb- and Pb-As-jarosite at pH 2 and 20 °C, to mimic environments affected by ARD/AMD, and at pH 8 and 20 °C, to simulate ARD/AMD environments recently remediated with slaked lime (Ca(OH)2). All four dissolutions are incongruent. Dissolution of Pb-jarosite at pH 2 yields aqueous Pb, Fe and SO42−. The pH 8 Pb-jarosite dissolution yields aqueous Pb, SO42− and poorly crystalline Fe(OH)3, which does not appear to resorb Pb or SO42−, possibly due to the low solution pH (3.44-3.54) at the end of the experiment. The pH 2 and 8 dissolutions of Pb-As-jarosite result in the formation of secondary compounds (poorly crystalline PbSO4 for pH 2 dissolution; poorly crystalline PbSO4 and Fe(OH)3 for pH 8 dissolution), which may act as dissolution inhibitors after 250 to 300 h of dissolution. In the pH 2 dissolution, aqueous Fe, SO42− and AsO43− also form, and in the pH 8 dissolution, Fe(OH)3 precipitates then subsequently resorbs aqueous AsO43−. The dissolutions probably proceed by preferred dissolution of the A- and T-sites, which contain Pb, and SO42− and AsO43−, respectively, rather than Fe, which is sterically remote, within the T-O-T Pb- and Pb-As-jarosite structures. These data provide the foundation necessary for further, more detailed investigations into the dissolution of Pb- and Pb-As-jarosites.  相似文献   

12.
The carbonate-hosted Pb–Zn deposits in the Sanjiang metallogenic belt on the Tibetan Plateau are typical of MVT Pb–Zn deposits that form in thrust-fold belts. The Jiamoshan Pb–Zn deposit is located in the Changdu area in the middle part of the Sanjiang belt, and it represents a new style of MVT deposit that was controlled by karst structures in a thrust–fold system. Such a karst-controlled MVT Pb–Zn deposit in thrust settings has not previously been described in detail, and we therefore mapped the geology of the deposit and undertook a detailed study of its genesis. The karst structures that host the Jiamoshan deposit were formed in Triassic limestones along secondary reverse faults, and the orebodies have irregular tubular shapes. The main sulfide minerals are galena, sphalerite, and pyrite that occur in massive and lamellar form. The ore-forming fluids belonged to a Mg2+–Na+–K+–SO2-4–Cl-–F-–NO-3–H2 O system at low temperatures(120–130°C) but with high salinities(19–22% NaCl eq.). We have recognized basinal brine as the source of the ore-forming fluids on the basis of their H–O isotopic compositions(-145‰ to-93‰ for δDV-SMOW and-2.22‰ to 13.00‰ for δ18 Ofluid), the ratios of Cl/Br(14–1196) and Na/Br(16–586) in the hydrothermal fluids, and the C–O isotopic compositions of calcite(-5.0‰ to 3.7‰ for δ13 CV-PDB and 15.1‰ to 22.3‰ for δ18 OV-SMOW). These fluids may have been derived from evaporated seawater trapped in marine strata at depth or from Paleogene–Neogene basins on the surface. The δ34 S values are low in the galena(-3.2‰ to 0.6‰) but high in the barite(27.1‰), indicating that the reduced sulfur came from gypsum in the regional Cenozoic basins and from sulfates in trapped paleo-seawater by bacterial sulfate reduction. The Pb isotopic compositions of the galena samples(18.3270–18.3482 for 206 Pb/204 Pb, 15.6345–15.6390 for 207 Pb/204 Pb, and 38.5503–38.5582 for 208 Pb/204 Pb) are similar to those of the regional Triassic volcanic-arc rocks that formed during the closure of the Paleo-Tethys, indicating these arc rocks were the source of the metals in the deposit. Taking into account our new observations and data, as well as regional Pb–Zn metallogenic processes, we present here a new model for MVT deposits controlled by karst structures in thrust–fold systems.  相似文献   

13.
《International Geology Review》2012,54(13):1478-1507
The Central and Eastern Taurides contain numerous carbonate-hosted Pb–Zn deposits, mainly in Devonian and Permian dolomitized reefal–stramatolitic limestones, and in massive Jurassic limestones. We present and compare new fluid inclusion and isotopic data from these ore deposits, and propose for the first time a Mississippi Valley-type (MVT) mode of origin for them.

Fluid inclusion studies reveal that the ore fluids were highly saline (13–26% NaCl equiv.), chloride-rich (CaCl2) brines, and have average homogenization temperatures of 112°C, 174.5°C, and 211°C for the Celal Da?, Delikkaya, and Ayrakl? deposits, respectively. Furthermore, the δ34S values of carbonate-hosted Pb–Zn deposits in the Central and Eastern Taurides vary between –5.4‰ and?+13.70‰. This indicates a possible source of sulphur from both organic compounds and crustal materials. In contrast, stable sulphur isotope data (average δ34S –0.15‰) for the Çad?rkaya deposit, which is related to a late Eocene–Oligocene (?) granodioritic intrusion, indicates a magmatic source. The lead isotope ratios of galena for all investigated deposits are heterogeneous. In particular, with the exception of the Suçat? district, all deposits in the Eastern (Delikkaya, Ayrakl?, Denizovas?, Çad?rkaya) and Central (Katranba??, Küçüksu) Taurides have high radiogenic lead isotope values (206Pb/204Pb between 19.058 and 18.622; 207Pb/204Pb between 16.058 and 15.568; and 208Pb/204Pb between 39.869 and 38.748), typical of the upper continental crust and orogenic belts.

Fluid inclusion, stable sulphur, and radiogenic lead isotope studies indicate that carbonate-hosted metal deposits in the Eastern (except for the Çad?rkaya deposit) and the Central Taurides are similar to MVT Pb–Zn deposits described elsewhere. The primary MVT deposits are associated with the Late Cretaceous–Palaeocene closure of the Tethyan Ocean, and formed during the transition from an extensional to a compressional regime. Palaeogene nappes that typically limit the exposure of ore bodies indicate a pre-Palaeocene age of ore formation. Host rock lithology, ore mineralogy, fluid inclusion, and sulphur?+?lead isotope data indicate that the metals were most probably leached from a crustal source such as clastic rocks or a crystalline massif, and transported by chloride-rich hydrothermal solutions to the site of deposition. Localization of the ore deposits on autochthonous basement highs indicates long-term basinal fluid migration, characteristic of MVT depositional processes. The primary MVT ores were oxidized in the Miocene, resulting in deposition of Zn-carbonate and Pb-sulphate–carbonate during karstification. The ores underwent multiple cycles of oxidation and, in places, were re-deposited to form clastic deposits. Modified deposits resemble the ‘wall-rock replacement’ and the ‘residual and karst fill’ of non-sulphide zinc deposits and are predominantly composed of smithsonite.  相似文献   

14.
Complex sulfides containing sphalerite, galena, chalcopyrite, and small amounts of silver in a matrix of pyrite can be decomposed at 120°C and oxygen pressure of 1000 kPa in 1–2 N HCl for 90 min to yield > 97% of the zinc and > 95% of the copper in solution while about 83% of the lead remains in the residue as PbCl2 and PbSO4 and 85% of the silver, together with most of the pyrite. The recovery of elemental sulfur is nearly 100% with respect to ZnS, PbS, and CuFeS2. Leaching in HCl is faster than in H2SO4 at the same acid normality, and the process is diffusion-controlled (strongly dependant on agitation speed and having an activation energy of 3.6 kcal/mole). Lead jarosite, Pb0.5Fe3 (SO4)2?(OH)6, is mainly formed when H2SO4 is used as a leaching agent.  相似文献   

15.
Supergene jarosite-group minerals are widespread in weathering profiles overlying Pb-Zn sulfide ores at Xitieshan, northern Tibetan Plateau, China. They consist predominantly of K-deficient natrojarosite, with lesser amounts of K-rich natrojarosite and plumbojarosite. Electron microprobe (EMP) analyses, scanning electron microcopy (SEM) investigation, and X-ray mapping reveal that the jarosite-group minerals are characterized by spectacular oscillatory zoning composed of alternating growth bands of K-deficient and K-bearing natrojarosite (K2O >1 wt.%). Plumbojarosite, whenever present, occurs as an overgrowth in the outermost bands, and its composition can be best represented by K0.29Na0.19Pb0.31Fe2.66Al0.22(SO4)1.65(PO4)0.31(AsO4)0.04(OH)7.37. The substitution of monovalent for divalent cations at the A site of plumbojarosite is charge balanced by the substitution of five-valent for six-valent anions in XO4 at the X site. Thermogravimetric analysis (TGA) of representative samples reveal mass losses of 11.46 wt.% at 446.6 °C and 21.42 wt.% at 683.4 °C due to dehydroxylation and desulfidation, respectively. TGA data also indicate that the natrojarosite structure collapses at 446.6 °C, resulting in the formation of NaFe(SO4)2 and minor hematite. The decomposition products of NaFe(SO4)2 are hematite and Na2SO4. Powder X-ray diffraction (XRD) analyses show that the jarosite-group minerals have mean unit-cell parameters of a?=?7.315 Å and c?=?016.598 Å. XRD and EMP data support the view that substitutions of Na for K in the A site and full Fe occupancy in the B site can considerably decrease the unit-cell parameter c, but only slightly increase a. The results from this study suggest that the observed oscillatory zoning of jarosite-group minerals at Xitieshan resulted mainly from substitutions of K for Na at the A site and P for S at the X site.  相似文献   

16.
The Mayuan stratabound Pb-Zn deposit in Nanzheng,Shaanxi Province,is located in the northern margin of the Yangtze Plate,in the southern margin of the Beiba Arch.The orebodies are stratiform and hosted in breciated dolostone of the Sinian Dengying Formation.The ore minerals are primarily sphalerite and galena,and the gangue minerals comprise of dolomite,quartz,barite,calcite and solid bitumen.Fluid inclusions from ore-stage quartz and calcite have homogenization tempreatures from 98 to 337℃ and salinities from 7.7 wt%to 22.2 wt%(NaCl equiv.).The vapor phase of the inclusions is mainly composed of CH_4 with minor CO_2 and H_2S.The δD_(fluid) values of fluid inclusions in quartz and calcite display a range from-68‰ to-113‰(SMOW),and the δ~(18)O_(fluid)values calculated from δ~(18)O_(quartz) and δ~(18)O_(calcite) values range from 4.5‰ to 16.7‰(SMOW).These data suggest that the ore-forming fluids may have been derived from evaporitic sea water that had reacted with organic matter.The δ~(13)C_(CH4) values of CH_4 in fluid inclusions range from-37.2‰ to-21.0‰(PDB),suggesting that the CH_4 in the ore-forming fluids was mainly derived from organic matter.This,together with the abundance of solid bitumen in the ores,suggest that organic matter played an important role in mineralization,and that the thermochemical sulfate reduction(TSR) was the main mechanism of sulfide precipitation.The Mayuan Pb-Zn deposit is a carbonate-hosted epigenetic deposit that may be classified as a Mississippi Valley type(MVT) deposit.  相似文献   

17.
Total concentrations of and binding capacities for Cd, Cu, and Pb were measured in selected surface waters from northwestern Europe. Linear multiple regression predictive models explained 97, 93, and 96% of the observed variation in Cd, Cu and Pb binding capacities, respectively. The models constructed used (CO23?) and (SO22?) to predict Cd binding capacity, (OH?) and (SO42?) to predict Cu binding capacity and (OH?), (CO32?) and (SO42?) to predict Pb binding capacity. Organic carbon was not significantly correlated with binding capacities for Cd, Cu, and Pb and was unimportant in explaining a significant amount of the variability in binding capacities for the metals of northern European surface waters. Thus, the effects of these organics on trace metal speciation can be ignored and predictive models of trace metal speciation constructed, using inorganic solubility equilibria only. Ratios of total Cd, Cu, and Pb concentrations to their respective binding capacities were much less than unity for all waters studied. Copper exhibited the greatest metal concentrations: binding capacity ratio in all waters investigated.  相似文献   

18.
为探究不同浓度H_2SO_4溶液活化的坡缕石对土壤中Cd的钝化效果,使用浓度分别为5%、7.5%、10%、12.5%、15%的H_2SO_4溶液对坡缕石进行活化,加入Cd污染土壤进行钝化实验和盆栽实验。结果表明:施加不同浓度H_2SO_4溶液活化的坡缕石均能显著降低土壤有效态Cd含量,10%的H_2SO_4活化的坡缕石钝化效果最显著,毒性浸出(TCLP)和二乙烯三胺五乙酸(DTPA)提取态Cd含量分别降低31.11%和37.33%。通过欧洲共同体参考机构(BCR)连续提取法测定结果表明酸活化坡缕石能显著降低土壤中Cd的酸溶态含量和还原态含量,酸活化坡缕石能显著抑制玉米对土壤中Cd的吸收和地下部分向地上部分的转移,使玉米地上部分Cd的含量相比对照组降低26.99%~43.97%,玉米地下部分Cd的含量相比对照组降低15.36%~27.40%。酸活化坡缕石对土壤中的Cd有明显的钝化效果。  相似文献   

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