Academic literature on the topic 'Pb-Zn-Ag'

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Journal articles on the topic "Pb-Zn-Ag"

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Dorleku, M. K., C. Tay, K. M. Kumi, D. K. Amoah, L. Yawson, and I. O. Hodgson. "Assessment of trace metal contamination by geochemical normalisation in sediments of two lagoons: A comparative study of the Kpeshie and Muni lagoons, Ghana." Ghana Journal of Science 62, no. 1 (2021): 37–50. http://dx.doi.org/10.4314/gjs.v62i1.4.

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Heavy metal contamination status of bottom sediments of two lagoons was compared by the employment of Enrichment Factor (EF) analysis for Iron (Fe), Manganese (Mn), Cupper (Cu), Lead (Pb), Chromium (Cr), Nickel (Ni), Silver (Ag), Zinc (Zn) and Mercury (Hg). Kpeshie Lagoon recorded enrichment (EF ≥ 1) for Cd, Pb, Ag, Hg and Zn, whilst Muni Lagoon recorded enrichment for Cd, Mn, Ag, Hg and Zn as metals of anthropogenic influence. Kpeshie, situated in a highly urbanized area, has 75% spatial distribution of Pb enrichment. The assessment shows that Ag and Hg are the most enriched metals in the sed
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Xu, Lei, Mi Yan, Xinying Wang, Wei Li, and Jinhui Peng. "The influences of silver and zinc addition on the electrochemical performances of the Pb–Ca–Sn Grids for lead acid batteries." Metallurgical Research & Technology 115, no. 6 (2018): 609. http://dx.doi.org/10.1051/metal/2018002.

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The silver and zinc addition on the electrochemical performances of the Pb–Ca–Sn Grids were investigated. The corrosion film structure, phase composition and electrochemical performances of Pb − 0.08 wt.% Ca − 1.2 wt.% Sn alloy, Pb − 0.08 wt.% Ca − 1.2 wt.% Sn − 0.03 wt.% Ag alloy and Pb − 0.08wt.% Ca − 1.2 wt.% Sn − 0.06 wt.% Zn alloy in a 1.28 g/mL of H2SO4 solution were studied by SEM observation, metallographic study, XRD, CV test and Constant DC discharge. It was found that the corrosion film of the alloy Pb – 0.08 wt.% Ca – 1.2 wt.% Sn appears as flaky crystal structure, while with the a
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Zhai, Degao, Anthony E. Williams-Jones, Jiajun Liu, et al. "The Genesis of the Giant Shuangjianzishan Epithermal Ag-Pb-Zn Deposit, Inner Mongolia, Northeastern China." Economic Geology 115, no. 1 (2020): 101–28. http://dx.doi.org/10.5382/econgeo.4695.

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Abstract The newly discovered Shuangjianzishan Ag-Pb-Zn deposit, with 145 Mt of ore grading 128.5 g/t Ag (locally up to 32,000 g/t) and 2.2 wt % Pb + Zn, is located in the Great Hinggan Range metallogenic belt, northeastern China, and is currently the largest Ag deposit in Asia. The Ag-Pb-Zn orebodies occur as veins and are hosted primarily by a Permian slate. Recent drilling and core logging have identified a partially Mo mineralized granite porphyry intrusion adjacent to the Ag-Pb-Zn mineralized veins. This well-preserved magmatic-hydrothermal system therefore offers an excellent opportunity
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Liu, Si Qing, Wan Ping Wang, Xiu Juan Li, and Min Zhang. "Differential Flotation of a Pb-Zn-CaF2 Ore in Yunnan Province, China." Advanced Materials Research 634-638 (January 2013): 3331–34. http://dx.doi.org/10.4028/www.scientific.net/amr.634-638.3331.

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A representative Pb-Zn-CaF2 ore sample subjected to this experimental study was taken from Niujie lead-zinc complex, Honghe municipality, Yunnan province, China. The ore sample assays 2.49% Pb, 1.05% Zn, 43.20% CaF2 and 136g/t Ag. In this paper, process mineralogy, Pb-Zn minerals separation and fluorite flotation were investigated, and the optimum reagent dosages for the differential flotation were determined. Three concentrates can be obtained, i.e., the lead and zinc concentrates containing 71.10% Pb (3389.65g/t Ag) and 50.06% Zn (301.23g/t Ag) at the recoveries of 89.02% and 84.20%, respect
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Kawasaki, K., and D. T. A. Symons. "Paleomagnetism of the Mt Isa Zn–Pb–Cu–Ag and George Fisher Zn–Pb–Ag deposits, Australia." Australian Journal of Earth Sciences 58, no. 4 (2011): 335–45. http://dx.doi.org/10.1080/08120099.2011.562921.

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Zhang, Wan Wan, Hua Ming Peng, Jia Yong Peng, Fu Sheng Guo, and Fei Xia. "The Soil Geochemical Abnormal Characteristics in Eastern of Luonan County in Shanxi Province." Advanced Materials Research 662 (February 2013): 459–62. http://dx.doi.org/10.4028/www.scientific.net/amr.662.459.

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The study area is located in the north belt of Qingling latitudinal structural belt and contains well developed folds and faults directed EW and the iliceous carbonate sedimentary formations mainly in Lower Paleozoic Group and the sedimentary clastic rocks in Middle-upper Paleozoic Group. Tuyaowa anomaly belt, mainly with Au, As, Sb anomalies, is the favorable target for Au, As, Sb. Zhaizigou-Jianggou-Yujiagou anomaly belt, with Au, Ag, Cu, Zn, Mo anomalie, is the favorable target for Au, Ag, Cu, Zn, Mo. Miaowa-Houling abnomal belt, with Pb, Hg anomalies and Au, Ag, Zn, Mo weak anomalies, is t
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Mikulski, Stanisław Z., Sławomir Oszczepalski, Katarzyna Sadłowska, Andrzej Chmielewski, and Rafał Małek. "Trace Element Distributions in the Zn-Pb (Mississippi Valley-Type) and Cu-Ag (Kupferschiefer) Sediment-Hosted Deposits in Poland." Minerals 10, no. 1 (2020): 75. http://dx.doi.org/10.3390/min10010075.

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We applied geochemical (ICP-MS, WD-XRF, GFAAS, and AMA 254) and mineralogical (EPMA) studies of 137 samples to ore mineralization from Middle-Triassic sediment-hosted Zn-Pb (Mississippi Valley-type MVT) and Lower Zechstein sediment-hosted stratiform (SSC) Cu-Ag (Kupferschiefer-type) deposits in Poland. They contain a number of trace elements which are not recovered during the ore processing. Only Cu, Ag, Pb, Ni, Re, Se, Au, and PGE are extracted from Cu-Ag deposits while Zn and Pb are the only elements produced from Zn-Pb deposits. Zn-Pb deposits contain Cd, Ag, Ga, and Ba in slightly elevated
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Chen, Fang, Yun Fei Du, Rong Chang Zeng, Gui Sheng Gan, and Chang Hua Du. "Thermodynamics of Oxidation on Pb-Free Solders at Elevated Temperature." Materials Science Forum 610-613 (January 2009): 526–30. http://dx.doi.org/10.4028/www.scientific.net/msf.610-613.526.

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Based on the available thermodynamic and phase equilibria data, the thermodynamic criteria for oxidation in tin-based lead-free solders under soldering condition was deduced. The dependence of Gibbs free energy on temperature in Pb-free solder oxidation reaction was calculated by applying MATLAB program. The characteristics of oxidation reaction of a varity of solder alloy systems such as Sn-Ag, Sn-Cu, Sn-Sb, Sn-Zn, Sn-Ag-Cu and Sn-Pb eutectic alloys at elevated temperature were analyzed. The results suggested that zinc preferentially oxidized in Sn-Zn solder alloys in the elevated temperature
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Dinarsih, Dedeh, and Herry Rodiana Eddy. "PEMBUATAN BAHAN ACUAN BAKU UNTUK ANALISIS CONTO SEDIMEN SUNGAI AKTIF." Buletin Sumber Daya Geologi 12, no. 3 (2017): 194–209. http://dx.doi.org/10.47599/bsdg.v12i3.41.

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Pembuatan bahan acuan baku untuk analisis conto sedimen sungai aktif (standard reference material for stream sediment) merupakan bahan acuan sekunder dalam analisis laboratorium pengujian yang dapat menunjang akurasi serta presisi hasil analisis conto sedimen sungai sesuai SNI ISO/IEC 17025 : 2008 Komite Akreditasi Nasional.Pemercontoan bahan acuan baku ini dilakukan di wilayah Nagari Surian, Kecamatan Pantai Cermin, serta di wilayah Nagari Air Dingin dan Nagari Kotabaru, Kecamatan Lembah Gumanti, Kabupaten Solok, Provinsi Sumatera Barat dengan metode pengambilan secara acak. Parameter yang di
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Du, Shengjiang, Hanjie Wen, Shirong Liu, et al. "Mineralogy and Metallogenesis of the Sanbao Mn–Ag (Zn-Pb) Deposit in the Laojunshan Ore District, SE Yunnan Province, China." Minerals 10, no. 8 (2020): 650. http://dx.doi.org/10.3390/min10080650.

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The Sanbao Mn–Ag (Zn-Pb) deposit located in the Laojunshan ore district is one of the most important deposits that has produced most Ag and Mn metals in southeastern Yunnan Province, China. Few studies are available concerning the distribution and mineralization of Ag, restricting further resource exploration. In this study, detailed mineralogy, chronology, and geochemistry are examined with the aim of revealing Ag occurrence and its associated primary base-metal and supergene mineralization. Results show that manganite and romanèchite are the major Ag-bearing minerals. Cassiterite from the Mn
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Dissertations / Theses on the topic "Pb-Zn-Ag"

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Zänker, Harald, and Gudrun Hüttig. "Kolloidgetragene Schwermetalle im Entwässerungsstollen einer stillgelegten Zn-Pb-Ag Grube." Forschungszentrum Dresden, 2010. http://nbn-resolving.de/urn:nbn:de:bsz:d120-qucosa-28971.

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Colloid-borne Heavy Metals in the Drainage Gallery of an Abandoned Zn-Pb-Ag Mine (in German). The colloid inventories and the colloid-borne heavy metals in the Rothschönberger Stolln adit, the main drainage gallery of the Freiberg, Germany, mining district, were investigated. This adit runs from Freiberg to the village of Rothschönberg, where it flows into the river Triebisch, a tributary of the river Elbe. The water of the adit is a typical mine water from a flooded ore mine. The main reason for choosing the Rothschönberger Stolln adit for colloid investigations was that ample knowledge conce
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Zänker, Harald, and Gudrun Hüttig. "Kolloidgetragene Schwermetalle im Entwässerungsstollen einer stillgelegten Zn-Pb-Ag Grube." Forschungszentrum Rossendorf, 2004. https://hzdr.qucosa.de/id/qucosa%3A21724.

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Colloid-borne Heavy Metals in the Drainage Gallery of an Abandoned Zn-Pb-Ag Mine (in German). The colloid inventories and the colloid-borne heavy metals in the Rothschönberger Stolln adit, the main drainage gallery of the Freiberg, Germany, mining district, were investigated. This adit runs from Freiberg to the village of Rothschönberg, where it flows into the river Triebisch, a tributary of the river Elbe. The water of the adit is a typical mine water from a flooded ore mine. The main reason for choosing the Rothschönberger Stolln adit for colloid investigations was that ample knowledge conce
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Deakin, Michelle Kyle. "Métallogénie du gîte à PB-ZN-AG Nicholas-Denys, Nouveau-Brunswick." Thesis, Université Laval, 2011. http://www.theses.ulaval.ca/2011/27096/27096.pdf.

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Le gîte à Pb–Zn–Ag de Nicholas-Denys, dans le camp minier de Bathurst (Nouveau-Brunswick), est constitué de plusieurs lentilles à pyrrhotite–sphalérite–galène, encaissées par le mudstone de la Formation de Millstream du Groupe de Fournier, déposé dans un bassin d’arrière-arc ordovicien. Les lentilles de sulfures sont concordantes avec la foliation régional S1, et sont boudinées parallèlement à la faille de Rocky-Brook Millstream, indiquant que les sulfures prédatent la déformation décrochante dévonienne. Le soufre provient de la réduction bactérienne de l’eau de mer ordovicienne dans un systèm
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Hynes, Sheila E. "Geochemistry of tertiary epithermal Ag-Pb-Zn veins in Taxco, Guerrero, Mexico." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1999. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape8/PQDD_0021/MQ46484.pdf.

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Turner, Tom. "Petrography, alteration and structure of the Bronäs Zn-Pb-Ag deposits, Bergslagen, Sweden." Thesis, Luleå tekniska universitet, Institutionen för samhällsbyggnad och naturresurser, 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-78822.

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This report aims to characterize the alteration styles and mineralization of the Zn-Pb-Ag Bronäs deposit, in the Sala area of the Bergslagen mining district, Sweden.  It presents data collected through 237m of lithological logging and subsequent lithogeochemical data, which, coupled with thin section and SEM analysis has led to the first geological descriptions of the rocks in the deposit.  The results are presented in the report through logs and a cross-section interpreted from these logs.  The Bronäs deposit, mined between 1945 and 1962, is a satellite deposit to the well-known Sala mine, an
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Nysten, Christina. "Malmmineralogisk undersökning av Pb-, Zn-, Cu- och Ag-förande kvartsgångar i Värmskogsområdet, mellersta Värmland." Thesis, Uppsala universitet, Berggrundsgeologi, 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-196047.

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Abstract Polymetallic (Pb-Zn-Cu-Ag-Au-Sb-As-Bi-Cd-Te-Se-Ge…) quartz veins occur in an area from Eidsvoll in southeastern Norway to west of LakeVänern in southwestern Sweden. They most likely formed during the waning stage of the c. 1 Ga Sveconorwegian orogeny. In Värmskog parish, Värmland county, several mineralized quartz veins of different types are known. Of these, three of the larger vein deposits, Vegerbol, Karlsbol and Södra Gärdsjön, have been investigated. Despite a history of mining activities (mostly for silver) and exploration from the mid-1800s up until the present day, details abo
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Logan, James Metcalfe. "Geochemical constraints on the genesis of AG-PB and ZN deposits, Sandon, British Columbia." Thesis, University of British Columbia, 1986. http://hdl.handle.net/2429/25914.

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Deposits of Slocan mining camp are Ag-rich, Pb- and Zn-bearing veins localized around Sandon, southeastern British Columbia. These small to medium tonnage (to 10⁶ tonnes) deposits occupy a major lode/fault system which crosscuts the regional fold structure of the enclosing Upper Triassic Slocan Group. The Late Jurassic Nelson batholith intrudes this clastic sequence and contains fewer and mineralogically different deposits than the sedimentary unit. Ore paragenesis and deposit-scale metal zonation patterns for the Hallmac deposit reveal two stages of silver mineralization. An early stage is c
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Paiement, Jean-Philippe. "Géochimie et métallogénie des veines à Ag-Pb-Zn du bassin de Purcell, Colombie-Britannique." Thesis, Université Laval, 2010. http://www.theses.ulaval.ca/2010/27218/27218.pdf.

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Le bassin du Belt-Purcell est connu pour le gîte de type SEDEX de Sullivan et ses veines à Ag-Pb-Zn. Les veines du bassin de Purcell sont classées en trois types : 1) riches en Pb-Zn composées de sphalérite, galène, pyrrhotite, freibergite et pyrite; 2) riches en Pb-Ag-Cu-Au et composées de galène, pyrite, freibergite et d’or et; 3) veines et remplacements riches en Ag-Pb-Zn et composées de sphalérite, galène, pyrite et freibergite. La datation Ar/Ar de séricite hydrothermale du gîte de Type 3 Ptarmigan donne un âge de 133,1 ±0,7 Ma. Le soufre des veines de Type 1 et 2 encaissées par les roch
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Jansson, Nils. "The origin of the Ryllshyttan stratabound Zn-Pb-Ag-(Cu) + magnetite deposit, Garpenberg, Bergslagen, Sweden." Licentiate thesis, Luleå, 2009. http://www.ltu.se/forskning/1.16009?pureId=3378647&pureFamily=dk.atira.pure.families.publication.shared.model.Publication.

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Filgueiras, Bernardo de Carvalho. "Depósito vulcanogênico polimetálico (Zn, Pb, Cu ± (Ag-Bi)) Artulândia, Arco Magmático Paleoproterozóico Campinorte, Brasil Central." reponame:Repositório Institucional da UnB, 2015. http://dx.doi.org/10.26512/2015.05.D.18711.

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Geociências, Programa de Pós-Graduação, 2015.<br>Submitted by Raquel Viana (raquelviana@bce.unb.br) on 2015-10-20T18:19:11Z No. of bitstreams: 1 2015_BernardodeCarvalhoFilgueiras.pdf: 10205948 bytes, checksum: 5831ce95b5868213c1b82d073a3c7a65 (MD5)<br>Approved for entry into archive by Marília Freitas(marilia@bce.unb.br) on 2015-11-11T11:19:04Z (GMT) No. of bitstreams: 1 2015_BernardodeCarvalhoFilgueiras.pdf: 10205948 bytes, checksum: 5831ce95b5868213c1b82d073a3c7a65 (MD5)<br>Made available in DSpace on 2015-11-11T11:19:05Z (GMT)
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Books on the topic "Pb-Zn-Ag"

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E, Hynes Sheila. Geochemistry of tertiary epithermal Ag-Pb-Zn veins in Taxco, Guerrero, Mexico. Laurentian University, Department of Earth Sciences, 1999.

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O'Connor, W. K. Characterization of the Sheep Creek Pb-Zn-Ag-Sn prospect, north-central Alaska Range. Dept. of the Interior, 1989.

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O'Connor, William K. Characterization of the Sheep Creek Pb-Zn-Ag-Sn prospect, north-central Alaska Range. U.S. Dept. of the Interior, Bureau of Mines, 1989.

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Tarasenko, I. A. Ėkologicheskie posledstvii︠a︡ mineralogo-geokhimicheskikh preobrazovaniĭ khvostov obogashchenii︠a︡ Sn-Ag-Pb-Zn rud (Primorʹe, Dalʹnegorskiĭ raĭon). Dalʹnauka, 2001.

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Gray, Michael J. The geological setting of the Vermilion Zn-Cu-Pb-Ag-Au massive sulphide deposit, Sudbury Basin, Ontario, Canada. Laurentian University, 1995.

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Williams, P. F. A detailed structural study of the Heath Steele Zn-Pb-Cu-Ag deposit Northumberland County, province of New Brunswick. New Brunswick Dept. of Natural Resouces & Energy, Minerals and Energy Disision, 1989.

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Williams, Patrick J. Alteration in the Cloncurry District: Roles of recognition and interpretation in exploration for Cu-Au and Pb-Zn-Ag deposits. Economic Geology Research Unit, Geology Dept., James Cook University of North Queensland, 1993.

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Lardeau, Maria. Minéralogie et pétrogenèse du minerai sulfuré du gisement volcano-sédimentaire à Zn-Cu-Ba-(Pb-Ag) de Chessy-les-Mines (Rhône): Application à l'étude des amas sulfurés métamorphisés. Editions du BRGM, 1989.

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Allen, Rodney L., Olof Martinsson, and Pär Weihed. Svecofennian Ore-Forming EnvironmentsVolcanic-Associated Zn-Cu-Au-Ag, Intrusion-Associated Cu-Au, Sediment-Hosted Pb-Zn, and Magnetite-Apatite Deposits in Northern Sweden of Northern Sweden. Society of Economic Geologists, 2000. http://dx.doi.org/10.5382/gb.33.

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Anne, Grouhel, Thébaud Marie-Jo, Chiffoleau Jean-François, and Institut français de recherche pour l'exploitation de la mer., eds. Dosage de certains métaux traces: (Ag, Cd, Cr, Cu, Ni, Pb, V, Zn) dans les organismes marins par absorption atomique. Ifremer, 2003.

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Book chapters on the topic "Pb-Zn-Ag"

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Maier, Rodney C. "Pyrite trace element halos to northern Australian sediment-hosted Zn-Pb-Ag deposits." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_42.

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Gantumur, H., D. Batulzii, Wang Lijuan, and Zhu Heping. "Tsav: A shoshonite-hosted intermediate sulfidation epithermal Ag-Pb-Zn deposit, eastern Mongolia." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_102.

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McCuaig, Thompson C., and Stephen A. Kissin. "The Port Coldwell Veins, Northern Ontario: Pb-Zn-Ag Deposits in a Rift Setting." In Basement Tectonics 10. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-017-0831-9_4.

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Ye, Huishou, Jingwen Mao, Caisheng Zhao, et al. "Mesozoic Mo-W-Ag-Pb-Zn mineralization in the Nannihu area, western Henan Province, China." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_308.

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Beaudoin, G., R. Hébert, C. S. Wang, and J. Tang. "Epithermal Au-Ag-Cu, porphyry Cu-(Au-Mo) and Cu-Au-Ag-Zn-Pb skarn deposits of the Gangdese Arc, Tibet." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_311.

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Davis, Taby P. "A scale-integrated structural analysis of the Mount Isa Zn-Pb-Ag deposit and implications for genesis." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_27.

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Herrington, R. J., N. A. Achmedov, and W. J. Charter. "The Khandiza Zn-Pb-Cu-Ag VMS deposit: Part of a new ‘Bathurst District’ in southern Uzbekistan?" In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_157.

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Dalheimer, M. "The Zn-Pb-(Ag) Deposits Huaripampa and Carahuacra in the Mining District of San Cristóbal, Central Peru." In Stratabound Ore Deposits in the Andes. Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-88282-1_20.

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Rossi, Magali, Leïla Tarrieu, Alain Cheilletz, et al. "The Polymetallic (W–Au and Pb–Zn–Ag) Tighza District (Central Morocco): Ages of Magmatic and Hydrothermal Events." In Mineral Deposits of North Africa. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-31733-5_3.

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Chengyou, Feng, Zhang Dequan, She Hongquan, Li Daxin, and Wu Jianshe. "Geological features and sulphur isotope study of the Meixian-style Pb-Zn-(Ag) deposits in Fujian Province, South China." In Mineral Deposit Research: Meeting the Global Challenge. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/3-540-27946-6_155.

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Conference papers on the topic "Pb-Zn-Ag"

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Milkereit, B., W. Qian, H. Ugalde, E. Bongajum, and M. Gräber. "Geophysical Imaging of a "Blind" Zn-Pb-Ag Deposit." In 70th EAGE Conference and Exhibition - Workshops and Fieldtrips. European Association of Geoscientists & Engineers, 2008. http://dx.doi.org/10.3997/2214-4609.20147628.

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Sinani, Berat. "STATISTICAL ANALYSIS OF DISTRIBUTION OF Ag, Au, Pb AND Zn IN TREPCA MINE." In 18th International Multidisciplinary Scientific GeoConference SGEM2018. Stef92 Technology, 2018. http://dx.doi.org/10.5593/sgem2018/1.1/s01.063.

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Blakemore, Daniel R., Nathaniel H. Bos, and C. Renee Sparks. "CONCENTRATIONS OF PB, ZN, AND AG ASSOCIATED WITH NATIVE COPPER DEPOSITION, KEWEENAW MI." In Joint 52nd Northeastern Annual Section and 51st North-Central Annual GSA Section Meeting - 2017. Geological Society of America, 2017. http://dx.doi.org/10.1130/abs/2017ne-289240.

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Yu, Qiang, Doseop Kim, Jaechul Jin, Yasuhiro Takahashi, and Masaki Shiratori. "Fatigue Strength Evaluation for Sn-Zn-Bi Lead-Free Solder Joints." In ASME 2002 International Mechanical Engineering Congress and Exposition. ASMEDC, 2002. http://dx.doi.org/10.1115/imece2002-39686.

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In this paper, the authors have investigated mechanical fatigue strength of Sn-Zn-Bi lead-free solder joints. The use of Sn-Zn-Bi solder is increasing for the advantage of low cost and low melting point. Therefore, it becomes important to ensure the fatigue strength of Sn-Zn-Bi solder joint. However, when the Sn-Zn-Bi solder was used as a solder material, there is serious problem that the fatigue crack is easy to generate at the interface between intermetallic compound layer and the solder matrix, and it makes the fatigue life of solder joint lower. Because the yield strength of Sn-Zn-Bi solde
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Zhang, Mingchao, Yongsheng Li, Xiaofei Yu, and Wenbin Jia. "C, H, O, S, Pb Isotope Geochemistry and the Implications of Qixiashan Pb-Zn-Ag Polymetallic Deposit in Jiangsu Province." In 2015 Asia-Pacific Energy Equipment Engineering Research Conference. Atlantis Press, 2015. http://dx.doi.org/10.2991/ap3er-15.2015.50.

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Mostofizadeh, M., and L. Frisk. "Corrosion behavior of Sn-Zn-Bi and Sn-Pb-Ag solders in a salt spray test." In 2014 Electronics System-Integration Technology Conference (ESTC). IEEE, 2014. http://dx.doi.org/10.1109/estc.2014.6962850.

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Lu, Minhua, Da-Yuan Shih, Paul Lauro, Sung Kang, Charles Goldsmith, and Sun-Kyoung Seo. "The effects of Ag, Cu compositions and Zn doping on the electromigration performance of Pb-free solders." In 2009 IEEE 59th Electronic Components and Technology Conference (ECTC 2009). IEEE, 2009. http://dx.doi.org/10.1109/ectc.2009.5074123.

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Lin, Kwang-Lung, and Ger-Pin Lin. "The Electromigration Investigation on the Newly Developed Pb-free Sn-Zn-Ag-Al-Ga Solder Ball Interconnect." In 2007 Proceedings 57th Electronic Components and Technology Conference. IEEE, 2007. http://dx.doi.org/10.1109/ectc.2007.373989.

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Siman, Filip, Nils Jansson, Tobias Kampmann, and Foteini Liwicki. "Rock Classification with Machine Learning: a Case Study from the Zinkgruvan Zn-Pb-Ag Deposit, Bergslagen, Sweden." In 2021 Swedish Artificial Intelligence Society Workshop (SAIS). IEEE, 2021. http://dx.doi.org/10.1109/sais53221.2021.9483959.

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Kahya, Asuman. "GEOLOGY AND MINERALOGY OF CARBONATE-HOSTED AU-AG�PB-ZN DEPOSITS IN THE MADEN VILLAGE (ULUKISLA), NIGDE, SE TURKEY." In 14th SGEM GeoConference on SCIENCE AND TECHNOLOGIES IN GEOLOGY, EXPLORATION AND MINING. Stef92 Technology, 2014. http://dx.doi.org/10.5593/sgem2014/b11/s1.022.

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Reports on the topic "Pb-Zn-Ag"

1

Pigage, L. C. Field Guide Anvil Pb - Zn - Ag District Yukon Territory, Canada. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132336.

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Brown, D., and K. Mcclay. Structure of the Vangorda Pb-Zn-Ag deposit, Anvil Range, Yukon Territory. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1992. http://dx.doi.org/10.4095/132795.

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Paiement, J. P., G. Beaudoin, and S. Paradis. Geological setting of Ag-Pb-Zn veins in the Purcell Basin, British Columbia. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2007. http://dx.doi.org/10.4095/223693.

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Goodfellow, W. D., and D. Rhodes. Geological Setting, Geochemistry and Origin of the Tom Stratiform Zn - Pb - Ag - Barite Deposits. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132332.

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Hicken, A. K., M. B. McClenaghan, R. C. Paulen, and D. Layton-Matthews. Till geochemical signatures of the Izok Lake Zn-Cu-Pb-Ag volcanogenic massive sulphide deposit, Nunavut. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2012. http://dx.doi.org/10.4095/292140.

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Pilote, P., and J. Guha. L'indice Du Lac Berrigan [Tache], Un Exemple De Mineralisation Epithermale En Au - Ag - Pb - Zn D'age Archeen. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132281.

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McClenaghan, M. B., A. K. Hicken, R. C. Paulen, and D. Layton-Matthews. Indicator mineral counts for regional till samples around the Izok Lake Zn-Cu-Pb-Ag VMS deposit, Nunavut. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2012. http://dx.doi.org/10.4095/289837.

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Hicken, A. K., M. B. McClenaghan, R. C. Paulen, D. Layton-Matthews, S. A. Averill, and D. Crabtree. Indicator mineral signatures of the Izok Lake Zn-Cu-Pb-Ag volcanogenic massive sulphide deposit, Nunavut: Part 2 till. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2013. http://dx.doi.org/10.4095/293033.

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Yergeau, D., P. Mercier-Langevin, B. Dubé, et al. Synvolcanic Au-Ag±Cu-Zn-Pb massive sulphides, veins and disseminations of the Westwood deposit, Abitibi greenstone belt, Québec. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2014. http://dx.doi.org/10.4095/293117.

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McClenaghan, M. B., D. R. S. Holmes, S. A. Averill, R. C. Paulen, and D. Layton-Matthews. Physical features indicating the glacial transport distance of gahnite from the Izok Lake Cu-Zn-Pb-Ag VMS deposit, Nunavut. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2014. http://dx.doi.org/10.4095/293878.

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