Books on the topic 'Iron ore quality control'

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1

DIN Deutsches Institut für Normung. Iron and steel: Quality standards. 3rd ed. Berlin: Beuth, 2002.

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2

Karpenko, N. V. Oprobovanie i kontrolʹ kachestva produktov obogashchenii͡a︡ rud. Moskva: Nedra, 1987.

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3

Byzov, V. F. Usrednitelʹnye sistemy na gorno-obogatitelʹnykh predprii͡a︡tii͡a︡kh. Moskva: "Nedra", 1988.

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4

Litovka, V. I. Povyshenie kachestva vysokoprochnogo chuguna v otlivkakh. Kiev: Nauk. dumka, 1987.

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5

Grigorʹev, V. M. Povyshenie kachestva splavov pri ispolʹzovanii rudnogo syrʹi︠a︡ Dalʹnego Vostoka: Monografii︠a︡. Khabarovsk: Dalʹnevostochnyĭ gos. universitet puteĭ soobshchenii︠a︡, 2009.

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6

I︠A︡kubovich, A. L. I︠A︡derno-fizicheskie metody analiza i kontroli︠a︡ kachestva mineralʹnogo syrʹi︠a︡. Moskva: VIMS, 2007.

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7

Mikhaĭlenko, N. N. Kontrolʹ kachestva mineralʹnoĭ produkt︠s︡ii gornorudnykh predprii︠a︡tiĭ Vostochnogo Zabaĭkalʹi︠a︡ i︠a︡dernofizicheskimi metodami. Sankt-Peterburg: Nestor, 2001.

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8

Kozhiev, Kh Kh. Rudnichnye sistemy upravlenii︠a︡ kachestvom mineralʹnogo syrʹi︠a︡. Moskva: Moskovskiĭ gos. gornyĭ universitet, 2005.

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9

Jaagumagi, R. Development of the Ontario provincial sediment quality guidelines for arsenic, cadmium, chromium, copper, iron, lead, manganese, mercury, nickel and zinc: Draft. Toronto: Water Resources Branch, 1990.

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10

Cherednichenko, N. A. Faktory povyshenii͡a︡ kachestva produkt͡s︡ii. Kiev: Nauk. dumka, 1991.

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11

Nihon Tekkō Kyōkai. Kyōdō Kenkyūkai. Hinshitsu Kanri Bukai. Tekkō seisan no hinshitsu hoshō kijun: Tekkōgyō no hinshitsu shisutemu no kangaekata to kaisetsu. Tōkyō: Nihon Tekkō Kyōkai, 1990.

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12

Hozalski, Raymond M. Abiotic degradation of DBPs in distribution systems. Denver, Colo: Water Research Foundation, 2009.

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13

Planeación estratégica y control total de calidad: Un caso real hecho en México. 2nd ed. México, D.F: Editorial Grijalbo, 1990.

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14

ZnO bao mo zhi bei ji qi guang, dian xing neng yan jiu. Shanghai Shi: Shanghai da xue chu ban she, 2010.

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15

DIN Deutsches Institut für Normung., ed. Iron and steel: Quality standards. Berlin: Beuth, 1993.

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16

DIN Deutsches Institut fur Normung., ed. Iron and steel quality standards 1: General. Berlin: Beuth, 1993.

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17

Clement, Jonathan A. Development of Red Water Control Strategies. Amer Water Works Assn, 2002.

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18

National emission standards for hazardous air pollutants (NESHAP) for taconite iron ore processing plants: Background information for proposed standards. Research Triangle Park, N.C: U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Emission Standards Division, 2002.

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19

Alternative control techniques document--for PM-10 emissions from ferrous foundries. Research Triangle Park, NC: U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Office of Air and Radiation, 1992.

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20

S, Hamdy Yousry, Habtom Stefanos, Ontario Water Resources Branch, Municipal Industrial Strategy for Abatement Program (Ontario), and Ontario. Ministry of Environment and Energy. Program Development Branch. Industrial Effluents Section., eds. Report on the analysis of the quality assurance and quality control data for the MISA iron and steel sector. [Ottawa]: The Branch, 1994.

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21

1965-, Kongoli Florian, Thomas B. G, Sawamiphakdi Krich, and Minerals, Metals and Materials Society., eds. Modeling, control, and optimization in ferrous and nonferrous industry: Proceedings of the symposium sponsored by ... the Iron & Steel Society (ISS) ... [et al.] : held at the Materials Science & Technology 2003 Conference in Chicago, Illinois, USA, November 9-12, 2003. Warrendale, Pa: TMS, 2003.

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22

Brian, Ramsey, Mendrek M. J. 1961-, and United States. National Aeronautics and Space Administration., eds. Evaluation of chemical coating processes for AXAF: Final report NAS8-38609, D.O. 160, 96-096, Feb. 1998. [Washington, DC: National Aeronautics and Space Administration, 1998.

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23

Brian, Ramsey, Mendrek M. J. 1961-, and United States. National Aeronautics and Space Administration., eds. Evaluation of chemical coating processes for AXAF: Final report NAS8-38609, D.O. 160, 96-096, Feb. 1998. [Washington, DC: National Aeronautics and Space Administration, 1998.

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24

Brian, Ramsey, Mendrek M. J. 1961-, and United States. National Aeronautics and Space Administration., eds. Evaluation of chemical coating processes for AXAF: Final report NAS8-38609, D.O. 160, 96-096, Feb. 1998. [Washington, DC: National Aeronautics and Space Administration, 1998.

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25

Evaluation of chemical coating processes for AXAF: Final report NAS8-38609, D.O. 160, 96-096, Feb. 1998. [Washington, DC: National Aeronautics and Space Administration, 1998.

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26

Martin, Derek, and Peter Stacey, eds. Guidelines for Open Pit Slope Design in Weak Rocks. CSIRO Publishing, 2018. http://dx.doi.org/10.1071/9781486303489.

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Weak rocks encountered in open pit mines cover a wide variety of materials, with properties ranging between soil and rock. As such, they can provide a significant challenge for the slope designer. For these materials, the mass strength can be the primary control in the design of the pit slopes, although structures can also play an important role. Because of the typically weak nature of the materials, groundwater and surface water can also have a controlling influence on stability. Guidelines for Open Pit Slope Design in Weak Rocks is a companion to Guidelines for Open Pit Slope Design, which was published in 2009 and dealt primarily with strong rocks. Both books were commissioned under the Large Open Pit (LOP) project, which is sponsored by major mining companies. These books provide summaries of the current state of practice for the design, implementation and assessment of slopes in open pits, with a view to meeting the requirements of safety, as well as the recovery of anticipated ore reserves. This book, which follows the general cycle of the slope design process for open pits, contains 12 chapters. These chapters were compiled and written by industry experts and contain a large number of case histories. The initial chapters address field data collection, the critical aspects of determining the strength of weak rocks, the role of groundwater in weak rock slope stability and slope design considerations, which can differ somewhat from those applied to strong rock. The subsequent chapters address the principal weak rock types that are encountered in open pit mines, including cemented colluvial sediments, weak sedimentary mudstone rocks, soft coals and chalk, weak limestone, saprolite, soft iron ores and other leached rocks, and hydrothermally altered rocks. A final chapter deals with design implementation aspects, including mine planning, monitoring, surface water control and closure of weak rock slopes. As with the other books in this series, Guidelines for Open Pit Slope Design in Weak Rocks provides guidance to practitioners involved in the design and implementation of open pit slopes, particularly geotechnical engineers, mining engineers, geologists and other personnel working at operating mines.
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