Zink (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Zink" in German language version.

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archive.today (Global: 28th place; German: 19th place)

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bergbaumuseum.de (Global: low place; German: low place)

  • Peter Friedemann: Die Anfänge der westeuropäischen Zinkindustrie am Beispiel der Galmei-Bergwerke „Vieille Montagne“ (Altenberg): Vom französischen Bergrecht 1791/1810 zur preußischen Bergrechtsreform 1865, in: Der Anschnitt. Band 69, Heft 2, 2017, S. 74–95 (pdf).

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compendium.ch (Global: low place; German: 6,193rd place)

d-nb.info (Global: 281st place; German: 85th place)

  • Julika Krug: Effekt von Zink auf die Olfaktion und Motorik von Patienten mit Morbus Parkinson. Dissertation. Marburg 2006. (d-nb.info)

de.wikisource.org (Global: 1,415th place; German: 91st place)

deutsche-apotheker-zeitung.de (Global: low place; German: 1,049th place)

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  • Deutsche Gesetzliche Unfallversicherung (Hrsg.): Zinkexpositionen in der Metallbranche (= IFA Report. Nr. 6/2013). Berlin 2013, ISBN 978-3-86423-086-8 (dguv.de [PDF; 2,3 MB; abgerufen am 4. April 2022]).

publikationen.dguv.de

  • Deutsche Gesetzliche Unfallversicherung (Hrsg.): Gasschweißen (= DGUV Information. Nr. 209-011). Berlin Oktober 2018 (dguv.de [PDF; 2,4 MB; abgerufen am 4. April 2022]).

doi.org (Global: 2nd place; German: 3rd place)

  • Eintrag zu zinc in Kramida, A., Ralchenko, Yu., Reader, J. und NIST ASD Team (2019): NIST Atomic Spectra Database (ver. 5.7.1). Hrsg.: National Institute of Standards and Technology, Gaithersburg, MD. doi:10.18434/T4W30F (physics.nist.gov/asd). Abgerufen am 11. Juni 2020.
  • Yiming Zhang, Julian R. G. Evans, Shoufeng Yang: Corrected Values for Boiling Points and Enthalpies of Vaporization of Elements in Handbooks. In: Journal of Chemical & Engineering Data. 56, 2011, S. 328–337, doi:10.1021/je1011086
  • G. G. Graf: Zinc. In: Ullmann's Encyclopedia of Industrial Chemistry. Wiley-VCH Verlag, Weinheim 2005, doi:10.1002/14356007.a28_509
  • P.T. Craddock: The early history of zinc. In: Endeavour. 1987, Band 11, Nummer 4, S. 183–191, doi:10.1016/0160-9327(87)90282-1.
  • Marie Farnsworth, Cyril Stanley Smith, J. L. Rodda: Metallographic Examination of a Sample of Metallic Zinc from Ancient Athens. In: Hesperia Supplements. 1949, Band 8, S. 126 doi:10.2307/1353889.
  • Melania Di Fazio, Anna Candida Felici, Fiorenzo Catalli, Caterina De Vito: Microstructure and chemical composition of Roman orichalcum coins emitted after the monetary reform of Augustus (23 B.C.). In: Scientific Reports. 2019, Band 9, Nummer 1 doi:10.1038/s41598-019-48941-4.
  • Stephen Merkel: Calamine of the Bergamasque Alps as a possible source of zinc for Roman brass: Theoretical considerations and preliminary results. In: Periodico di mineralogia. 2021, Band 90, Nummer 2 doi:10.13133/2239-1002/16993.
  • Wenli Zhou: Zinc Production in China. In: Encyclopaedia of the History of Science, Technology, and Medicine in Non-Western Cultures. 2014, S. 1–4 doi:10.1007/978-94-007-3934-5_10083-1.
  • Elke Grab-Kempf: Tin and Brass make alchmy. Zur Etymologie von deutsch Zink. In: Beiträge zur Geschichte der deutschen Sprache und Literatur. 2001, Band 123, S. 1–23, doi:10.1515/bgsl.2001.2001.123.1.
  • Bruno Schwab, Andreas Ruh, Jens Manthey, Marek Drosik: Zinc. In: Ullmann’s Encyclopedia of Industrial Chemistry. 2015, S. 1–25, doi:10.1002/14356007.a28_509.pub2.
  • Hailian Chen: Zinc Transfer from China to Europe via Trade, ca. 1600–1800: A Transnational Perspective. In: Technikgeschichte. 2013, Band 80, Nummer 1, S. 71–94 doi:10.5771/0040-117X-2013-1-71.
  • Brandon Mahan, Julien Siebert, Emily A. Pringle, Frédéric Moynier: Elemental partitioning and isotopic fractionation of Zn between metal and silicate and geochemical estimation of the S content of the Earth’s core. In: Geochimica et Cosmochimica Acta. Band 196, 2017, S. 252–270, doi:10.1016/j.gca.2016.09.013.
  • Harvey Pickard et al.: The cadmium and zinc isotope compositions of the silicate Earth – Implications for terrestrial volatile accretion. In: Geochimica et Cosmochimica Acta. Band 338, 2022, S. 165–180, doi:10.1016/j.gca.2022.09.041.
  • Zhongxing Sun, Xiaolin Xiong, Hugh St.C. O’Neill, Li Li, Mingdi Gao, Wei Chen, Xingcheng Liu: Zinc partitioning between minerals and melts: Implications for the origins of the iron-depletion trend in convergent-margin magmatism. In: Geochimica et Cosmochimica Acta. Band 408, 2025, S. 212–232, doi:10.1016/j.gca.2025.08.034.
  • G. M. Anderson: The Hydrothermal Transport and Deposition of Galena and Sphalerite Near 100 degrees. In: Economic Geology. Band 68, Nr. 4, 1973, S. 480–492, doi:10.2113/gsecongeo.68.4.480.
  • Lorenzo Tavazzani, Marcel Guillong, Andrea Giuliani, Lluís Fontboté, Cyril Chelle-Michou: Not so fast: Million-years of metal precipitation in Mississippi Valley type deposits inferred from in-situ petrochronology of hydrothermal carbonates. In: Earth and Planetary Science Letters. Band 636, 2024, Artikel 118718, doi:10.1016/j.epsl.2024.118718.
  • Gavin M. Mudd, Simon M. Jowitt, Timothy T. Werner: The world's lead-zinc mineral resources: Scarcity, data, issues and opportunities. In: Ore Geology Reviews. Band 80, 2017, S. 1160–1190, doi:10.1016/j.oregeorev.2016.08.010.
  • Maria Boni, Nicola Mondillo: The “Calamines” and the “Others”: The great family of supergene nonsulfide zinc ores. In: Ore Geology Reviews. Band 67, 2015, S. 208–233, doi:10.1016/j.oregeorev.2014.10.025.
  • Paul G. Spry, Ryan D. Mathur, Graham S. Teale, Linda V. Godfrey: Zinc, sulfur and cadmium isotopes and Zn/Cd ratios as indicators of the origin of the supergiant Broken Hill Pb–Zn–Ag deposit and other Broken Hill-type deposits, New South Wales, Australia. In: Geological Magazine. Band 159, 2022, S. 1787–1808, doi:10.1017/S0016756822000590.
  • D. Large, E. Walcher: The Rammelsberg massive sulphide Cu-Zn-Pb-Ba-Deposit, Germany: an example of sediment-hosted, massive sulphide mineralisation. In: Mineralium Deposita. Band 34, 1999, S. 522–538, doi:10.1007/s001260050218.
  • Christos Noulas, Miltiadis Tziouvalekas, Theodore Karyotis: Zinc in soils, water and food crops. In: Biology. Band 49, 2018, S. 252–260, doi:10.1016/j.jtemb.2018.02.009.
  • B. J. Alloway: Soil factors associated with zinc deficiency in crops and humans. In: Environmental Geochemistry and Health. Band 31, 2009, S. 537–548, doi:10.1007/s10653-009-9255-4.
  • Camilla Stanton, Dale Sanders, Ute Krämer, Dorina Podar: Zinc in plants: Integrating homeostasis and biofortification. In: Molecular Plant. Band 15, Nr. 1, 2022, S. 65–85, doi:10.1016/j.molp.2021.12.008.
  • Laurence N. Warr: IMA–CNMNC approved mineral symbols. In: Mineralogical Magazine. Band 85, 2021, S. 291–320, doi:10.1180/mgm.2021.43 (englisch, cambridge.org [PDF; 351 kB; abgerufen am 27. April 2024]).
  • G. Audi, F. G. Kondev, Meng Wang, W.J. Huang, S. Naimi: The NUBASE2016 evaluation of nuclear properties. In: Chinese Physics C. 41, 2017, S. 030001, doi:10.1088/1674-1137/41/3/030001 (Volltext)
  • Oliver Fitz, Christian Bischoff, Manuel Bauer, Harald Gentischer, Kai Peter Birke, Hans-Martin Henning, Daniel Biro: Electrolyte Study with in Operando pH Tracking Providing Insight into the Reaction Mechanism of Aqueous Acidic Zn//MnO2 Batteries. In: ChemElectroChem. Band 8, Nr. 18, 2021, S. 3553–3566, doi:10.1002/celc.202100888.
  • I. Elphimoff-Felkin, P. Sarda: Reductive Cleavage of Allylic Alcohols, Ethers, or Acetates to Olefins: 3-Methylcyclohexene In: Organic Syntheses. 56, 1977, S. 101, doi:10.15227/orgsyn.056.0101; Coll. Vol. 6, 1988, S. 769 (PDF).
  • Oliver Kamm: β-Phenylhydroxylamine In: Organic Syntheses. 4, 1925, S. 57, doi:10.15227/orgsyn.004.0057; Coll. Vol. 1, 1941, S. 445 (PDF).
  • H. E. Bigelow, D. B. Robinson: Azobenzene In: Organic Syntheses. 22, 1942, S. 28, doi:10.15227/orgsyn.022.0028; Coll. Vol. 3, 1955, S. 103 (PDF).
  • J. C. Sauer: 1,1-Dichloro-2,2-Difluoroethylene In: Organic Syntheses. 36, 1956, S. 19, doi:10.15227/orgsyn.036.0019; Coll. Vol. 4, 1963, S. 268 (PDF).
  • Louis F. Fieser: Cholesterol, Δ5-Cholesten-3-One, and Δ4-Cholesten-3-One In: Organic Syntheses. 35, 1955, S. 43, doi:10.15227/orgsyn.035.0043; Coll. Vol. 4, 1963, S. 195 (PDF).
  • S. Gronowitz, T. Raznikiewicz: 3-Bromothiophene In: Organic Syntheses. 44, 1964, S. 9, doi:10.15227/orgsyn.044.0009; Coll. Vol. 5, 1973, S. 149 (PDF).
  • Wolfgang Maret: Interrelations between Essential Metal Ions and Human Diseases. Hrsg.: Astrid Sigel, Helmut Sigel, Roland K. O. Sigel (= Metal Ions in Life Sciences. Band 13). Springer, 2013, ISBN 978-94-007-7499-5, Chapter 12. Zinc and Human Disease, S. 389–414, doi:10.1007/978-94-007-7500-8_12, PMID 24470098.
  • Prasad A. S.: Zinc in Human Health: Effect of Zinc on Immune Cells. In: Mol. Med. Band 14, Nr. 5–6, 2008, S. 353–7, doi:10.2119/2008-00033.Prasad, PMID 18385818, PMC 2277319 (freier Volltext).
  • M. R. Broadley, P. J. White, J. P. Hammond, I. Zelko, A. Lux: Zinc in plants. In: New Phytologist. Band 173, Nr. 4, 2007, S. 677–702, doi:10.1111/j.1469-8137.2007.01996.x, PMID 17286818.
  • Zinc’s role in microorganisms is particularly reviewed in: Sugarman B: Zinc and infection. In: Reviews of Infectious Diseases. Band 5, Nr. 1, 1983, S. 137–47, doi:10.1093/clinids/5.1.137, PMID 6338570.
  • Anke Weißenborn et al.: Höchstmengen für Vitamine und Mineralstoffe in Nahrungsergänzungsmitteln. In: Journal of Consumer Protection and Food Safety. Band 13, Nr. 1, 1. März 2018, S. 25–39, doi:10.1007/s00003-017-1140-y.
  • Geoffrey Michael Gadd: Metals, minerals and microbes: geomicrobiology and bioremediation. In: Microbiology. Band 156, Nr. 3, März 2010, S. 609–643, doi:10.1099/mic.0.037143-0, PMID 20019082 (usarx.com).
  • Meenu Singh, Rashmi R Das: Zinc for the common cold. In: Cochrane Database of Systematic Reviews. doi:10.1002/14651858.CD001364.pub5
  • Jennifer Hunter et al.: Zinc for the prevention or treatment of acute viral respiratory tract infections in adults: a rapid systematic review and meta-analysis of randomised controlled trials. In: BMJ Open. Nr. 11, 2021, doi:10.1136/bmjopen-2020-047474, PMID 34728441, PMC 8578211 (freier Volltext) (englisch).
  • Thomas J. Caruso et al.: Treatment of Naturally Acquired Common Colds with Zinc: A Structured Review. In: Clinical Infectious Diseases. Band 45, Nr. 5, 1. September 2007, S. 569–574, doi:10.1086/520031, PMID 17682990 (englisch).
  • Ian Marshall: Zinc for the common cold. In: Cochrane Database of Systematic Reviews. John Wiley & Sons, Ltd, Chichester, UK 26. April 1999, doi:10.1002/14651858.cd001364, PMID 10796643 (englisch).
  • Daryl Nault et al.: Zinc for prevention and treatment of the common cold. In: The Cochrane Database of Systematic Reviews. Band 5, Nr. 5, 9. Mai 2024, S. CD014914, doi:10.1002/14651858.CD014914.pub2, PMID 38719213, PMC 11078591 (freier Volltext) (englisch).
  • Marzia Lazzerini, Humphrey Wanzira: Oral zinc for treating diarrhoea in children. In: Cochrane Database of Systematic Reviews. Nr. 12, 20. Dezember 2016, doi:10.1002/14651858.CD005436.pub5View (Art. No.: CD005436).

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  • Deborah Stein: Smelting zinc and housing the divine at jawar. In: Artibus Asiae. Band 72, Nr. 1, 2012, S. 141–158 (JSTOR:124574).
  • P. T. Craddock, L. K. Gurjar, K. T. M. Hegde: Zinc Production in Medieval India. In: World Archaeology. Band 15, Nr. 2, Industrial Archaeology, S. 211–217 (JSTOR:124653).

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orgsyn.org (Global: 3,535th place; German: 1,453rd place)

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redirecter.toolforge.org (Global: 29th place; German: 2nd place)

thieme.de (Global: 2,800th place; German: 167th place)

roempp.thieme.de

  • Eintrag zu Zink. In: Römpp Online. Georg Thieme Verlag, abgerufen am 18. Juni 2014.

units.it (Global: 7,324th place; German: 1,158th place)

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webmineral.com (Global: 3,342nd place; German: 2,001st place)

  • David Barthelmy: Zinc Mineral Data. In: webmineral.com. Abgerufen am 27. April 2024 (englisch).

who.int (Global: 213th place; German: 245th place)

world-mining-data.info (Global: low place; German: low place)

zink.de (Global: low place; German: low place)

zinkmangel.de (Global: low place; German: low place)