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1

United States International Trade Commission. Manganese metal from the People's Republic of China. Washington, DC: U.S. International Trade Commission, 1994.

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2

South Africaʼs chrome, manganese, platinum and vanadium: Foreign views of the mineral dependancy issue, 1970-1984 : a select and annotated bibliography. Braamfontein, South Africa: South African Institute of International Affairs, 1985.

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3

Lis, Jadwiga. Mikrosegregacja manganu w stalach niskowęglowych w trakcie obróbki cieplnej. Częstochowa: Wydawn. WIPMiFS, 2005.

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4

Foster, Russell J. Technological alternatives for the conservation of strategic and critical minerals--cobalt, chromium, manganese, and platinum-group metals: A review. [Avondale, Md.]: U.S. Dept. of the Interior, Bureau of Mines, 1985.

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5

Jaagumagi, R. Development of the Ontario provincial sediment quality guidelines for arsenic, cadmium, chromium, copper, iron, lead, manganese, mercury, nickel, and zinc: Report. [Toronto]: Water Resources Branch, Ontario Ministry of the Environment, 1992.

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6

Conference on Manganese Containing Stainless Steels. High manganese high nitrogen austenitic steels: Proceedings of two Conferences on High Manganese Austenitic Steels, the First Conference held in conjunction with ASM International's Materials Week '87, Cincinnati, Ohio, 10-15 October 1987, the Second Conference held in conjunction with ASM International's Materials Week '92, Chicago, Illinois, 2-4 November 1992. Materials Park, Ohio: ASM International, 1992.

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7

Mukhopadhyay, Ranadhir. The Indian Ocean nodule field: Geology and resource potential. Amsterdam: Elsevier, 2008.

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8

Sigel, Helmut, and Astrid Sigel. Metal Ions in Biological Systems: Volume 37: Manganese and Its Role in Biological Processes (Metal Ions in Biological Systems). CRC, 2000.

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9

Tuschl, Karin, Peter T. Clayton, and Philippa B. Mills. Disorders of Manganese Metabolism. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199972135.003.0045.

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Manganese is an essential trace metal for numerous metalloenzymes. Manganese homeostasis requires tight regulation in vivo and disruption of this balance can lead to manganese overload and subsequent accumulation of manganese in brain, liver, and blood. Mutations in SLC30A10, a cell surface-localized manganese efflux transporter, cause an autosomal recessive hypermanganesemia syndrome with two distinct phenotypes: childhood onset dystonia and adult onset Parkinsonism, associated with chronic liver disease, polycythemia and features of iron depletion. MRI brain appearances are characteristic of Mn deposition with hyperintense basal ganglia on T1-weighted images. Chelation therapy with disodium calcium edetate and iron supplementation effectively lower blood manganese levels, halt liver disease progression and improve neurological symptoms.The inherited form of hypermanganesemia can be distinguished from acquired causes of manganese overload including environmental overexposure and acquired hepatocerebral degeneration in cases of end stage liver disease.
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10

Beller, Matthias, Xiao-Feng Wu, and James Spivey. Economic Synthesis of Heterocycles: Zinc, Iron, Copper, Cobalt, Manganese and Nickel Catalysts. Royal Society of Chemistry, The, 2014.

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11

Crowther, Donna Jean. Ring-opening reactions of cyclopropyl and cyclobutyl complexes of manganese and iron. 1989.

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12

Jolivet, Jean-Pierre. Metal Oxide Nanostructures Chemistry. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780190928117.001.0001.

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This much-anticipated new edition of Jolivet's work builds on the edition published in 2000. It is entirely updated, restructured and increased in content. The book focuses on the formation by techniques of green chemistry of oxide nanoparticles having a technological interest. Jolivet introduces the most recent concepts and modelings such as dynamics of particle growth, ordered aggregation, ionic and electronic interfacial transfers. A general view of the metal hydroxides, oxy-hydroxides and oxides through the periodic table is given, highlighting the influence of the synthesis conditions on crystalline structure, size and morphology of nanoparticles. The formation of aluminum, iron, titanium, manganese and zirconium oxides are specifically studied. These nanomaterials have a special interest in many technological fields such as ceramic powders, catalysis and photocatalysis, colored pigments, polymers, cosmetics and also in some biological or environmental phenomena.
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13

The 2006-2011 World Outlook for Silvery Iron, Ferromanganese, Manganese Metal, Silicomanganese and Ferrospiegeleisen. Icon Group International, Inc., 2005.

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14

Parker, Philip M. The 2007-2012 World Outlook for Silvery Iron, Ferromanganese, Manganese Metal, Silicomanganese and Ferrospiegeleisen. ICON Group International, Inc., 2006.

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15

Manganese Metal From the People's Republic of China, Investigation No. 731-TA-724 (Final), U.S. International Trade Commission (Microfiche). International Trade Commission, 1997.

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16

United States International Trade Commission., ed. Manganese Metal From The People's Republic Of China... Investigation No. 731-TA-724 (FINAL)... U.S. International Trade Commission... Dec. 1995. [S.l: s.n., 1997.

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17

General Motors Research and Development Center. and United States. National Aeronautics and Space Administration., eds. Spitfire-1: A cooperative agreement for the development of rapid low-cost superplastic forming of aluminum : progress report, twelve-month deliverables, March 1, 1995-May 31, 1995. Warren, MI: The Center, 1995.

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18

Spitfire-1: A cooperative agreement for the development of rapid low-cost superplastic forming of aluminum : progress report, twelve-month deliverables, March 1, 1995-May 31, 1995. Warren, MI: The Center, 1995.

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19

General Motors Research and Development Center. and United States. National Aeronautics and Space Administration., eds. Spitfire-1: A cooperative agreement for the development of rapid low-cost superplastic forming of aluminum : progress report, twelve-month deliverables, March 1, 1995-May 31, 1995. Warren, MI: The Center, 1995.

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20

Ohio) Asm's Materials Week 8 (1987 Cincinnati and Ill.) Materials Week 92 (1992 : Chicago. High Manganese High Nitrogen Austenitic Steels: Proceedings of Two Conferences on High Manganese Austenitic Steels. Asm Intl, 1994.

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21

M, LeVine Steven, Connor James R, and Schipper Hyman M. 1954-, eds. Redox-active metals in neurological disorders. New York, N.Y: New York Academy of Sciences, 2004.

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22

Redox-active metals in neurological disorders. New York, N.Y: New York Academy of Sciences, 2004.

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23

Kirchman, David L. Introduction to geomicrobiology. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198789406.003.0013.

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Geomicrobiology, the marriage of geology and microbiology, is about the impact of microbes on Earth materials in terrestrial systems and sediments. Many geomicrobiological processes occur over long timescales. Even the slow growth and low activity of microbes, however, have big effects when added up over millennia. After reviewing the basics of bacteria–surface interactions, the chapter moves on to discussing biomineralization, which is the microbially mediated formation of solid minerals from soluble ions. The role of microbes can vary from merely providing passive surfaces for mineral formation, to active control of the entire precipitation process. The formation of carbonate-containing minerals by coccolithophorids and other marine organisms is especially important because of the role of these minerals in the carbon cycle. Iron minerals can be formed by chemolithoautotrophic bacteria, which gain a small amount of energy from iron oxidation. Similarly, manganese-rich minerals are formed during manganese oxidation, although how this reaction benefits microbes is unclear. These minerals and others give geologists and geomicrobiologists clues about early life on Earth. In addition to forming minerals, microbes help to dissolve them, a process called weathering. Microbes contribute to weathering and mineral dissolution through several mechanisms: production of protons (acidity) or hydroxides that dissolve minerals; production of ligands that chelate metals in minerals thereby breaking up the solid phase; and direct reduction of mineral-bound metals to more soluble forms. The chapter ends with some comments about the role of microbes in degrading oil and other fossil fuels.
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24

Leaching basic oxygen furnace slag with fluosilicic acid to recover manganese and byproducts. Washington, D.C: U.S. Dept. of the Interior, Bureau of Mines, 1991.

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25

(Editor), Steven M. Levine, James R. Connor (Editor), and Hyman M. Schipper (Editor), eds. Redox-Active Metals in Neurological Disorders (Annals of the New York Academy of Sciences). New York Academy of Sciences, 2004.

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26

(Editor), Steven M. Levine, James R. Connor (Editor), and Hyman M. Schipper (Editor), eds. Redox-Active Metals in Neurological Disorders (Annals of the New York Academy of Sciences, V. 1012). New York Academy of Sciences, 2004.

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27

C, Watts K., and Geological Survey (U.S.), eds. Analytical results and sample locality map for selected metals in Mn-Fe oxide-coated stream gravels, and the ratios of metals to iron and to manganese, Glen Falls 1. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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28

C, Watts K., and Geological Survey (U.S.), eds. Analytical results and sample locality map for selected metals in Mn-Fe oxide-coated stream gravels, and the ratios of metals to iron and to manganese, Glen Falls 1⁰. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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29

C, Watts K., and Geological Survey (U.S.), eds. Analytical results and sample locality map for selected metals in Mn-Fe oxide-coated stream gravels, and the ratios of metals to iron and to manganese, Glen Falls 1p0s. [Reston, Va.?]: U.S. Dept. of the Interior, Geological Survey, 1986.

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30

A, Lula R., ASM's Materials Week '87 (1987 : Cincinnati, Ohio), and Materials Week '92 (1992 : Chicago, Ill.), eds. High manganese, high nitrogen austenitic steels: Proceedings of two conferences on high manganese austenitic steels : the first conference held in conjunction with ASM International's Materials Week '87, Cincinnati, Ohio, 10-15 October 1987 : the second conference held in conjunction with ASM International's Materials Week '92, Chicago, Illinois, 2-4 November 1992. Materials Park, OH: ASM International, 1993.

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31

Mukhopadhyay, Ranadhir, Anil Kumar Ghosh, and Sridhar D. Iyer. Indian Ocean Nodule Field: Geology and Resource Potential. Elsevier Science & Technology Books, 2017.

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32

The Indian Ocean Nodule Field, Volume 10: Geology and Resource Potential (Handbook of Exploration and Environmental Geochemistry) (Handbook of Exploration and Environmental Geochemistry). Elsevier Science, 2008.

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33

Great Britain. Standing Committee of Analysts., ed. Methods for the determination of the metals aluminium, cadmium, chromium, cobalt, copper, iron, lead, manganese, nickel, uranium, vanadium, and zinc in marine, estuarine, and other waters by stripping voltammetry or concentration and atomic absorption spectrophotometry, 1987: With notes on other metals and related techniques. London: H.M.S.O., 1988.

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