151
Views
0
CrossRef citations to date
0
Altmetric
Industrial Analysis

Speciation of Copper in Materials from the Copper Industry – A Minireview

, &
Pages 1128-1145 | Received 26 May 2022, Accepted 24 Aug 2022, Published online: 04 Sep 2022

References

  • Aizenberg, A. N. 1969. Determination of the content of metallic copper and its free oxides in a chemical phase analysis of high-alumina refractory after service. Refractories 10 (1–2):120–3. doi:10.1007/BF01291750.
  • Anderson, D. M, and F. M. M. Morel. 1978. Copper sensitivity of Gonyaulax tamarensis 1. Limnology and Oceanography 23 (2):283–95. doi:10.4319/lo.1978.23.2.0283.
  • Baker, I, and R. S. Gibbs. 1943. Determination of metallic copper and cuprous oxide in commercial cuprous oxide pigments. Industrial & Engineering Chemistry Analytical Edition 15 (8):505–8. doi:10.1021/i560120a012.
  • Baker, I, and R. S. Gibbs. 1946. Determination of metallic copper in cuprous oxide-cupric oxide mixtures. Industrial & Engineering Chemistry Analytical Edition 18 (2):124–7. doi:10.1021/i560150a014.
  • Baranowski, R., P. Górka, and S. Kowalski. 1993a. Analiza Fazowa Materiałów Hutnictwa Miedzi. Część 1. Oznaczanie form występowania miedzi w kamieniu miedziowym i żużlach [Phase analysis of materials used in copper metallurgy. Part 1. Determination of various copper forms existing in copper matte and slags]. Zeszyty Naukowe Politechniki Śląskiej (Scientific Journal of the Silesian University of Technology) 127:109–17.
  • Baranowski, R., P. Górka, and S. Kowalski. 1993b. Analiza Fazowa Materiałów Hutnictwa Miedzi. Część 2. Oznaczanie form występowania ołowiu w kamieniu miedziowym i żużlach [Phase analysis of materials used in copper metallurgy. Part 2. Determination of various lead forms existing in copper matte and slags]. Zeszyty Naukowe Politechniki Śląskiej (Scientific Journal of the Silesian University of Technology) 127:119–30.
  • Baranowski, R., P. Górka, and S. Kowalski. 1993c. Analiza Fazowa Materiałów Hutnictwa Miedzi. Część 3. Oznaczanie form występowania żelaza w kamieniu miedziowym i żużlach [Phase analysis of materials used in copper metallurgy. Part 3. Determination of various iron forms existing in copper matte and slags]. Zeszyty Naukowe Politechniki Śląskiej (Scientific Journal of the Silesian University of Technology) 127:131–43.
  • Bonner, W. D, and B. D. Kaura. 1927. Estimation of copper oxide and metallic copper in mixtures containing both. Industrial & Engineering Chemistry 19 (11):1288–90. doi:10.1021/ie50215a029.
  • Chmielová, M., J. Seidlerová, and Z. Weiss. 2003. X-Ray diffraction phase analysis of crystalline copper corrosion products after treatment in different chloride solutions. Corrosion Science 45 (5):883–9. doi:10.1016/S0010-938X(02)00176-2.
  • Dolivo-Dobrovolsky, V. V, and Klimenko, Y. V. 1947. Practical Analysis of Ores, Metallurgiya
  • Drawe, P. 1901. Käufliches Kupferoxyd [Commercial copper oxide]. Zeitschrift Für Angewandte Chemie 14 (24):586–7. doi:10.1002/ange.19010142403.
  • Drwięga, I, and R. Klajn. 1970. Analiza fazowa miedzi w półproduktach hutnictwa miedzi [Phase analysis of copper in semi-products in copper metallurgy]. Report IMN no 1425/70. Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Gliwice.
  • Drwięga, I, and L. Kubica. 1966. Analiza fazowa rud i koncentratów miedzi [Phase analysis of copper ores and concentrates]. Report IMN no 1162/66. Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Gliwice.
  • Eriksen, R. S., B. F. Nowak, and R. A. van Dam. 2001. Supervising scientist. Report 163: Copper speciation and toxicity in a contaminated estuary. Supervising. Darwin: Scientist.
  • Fajnberg, S. J. 1956. Analiza Rud Metali Nieżelaznych [Analysis of non-ferrous metal ores]. Warsaw: Wydawnictwo Geologiczne.
  • Fernández-Arias, M., M. Boutinguiza, J. Del Val, A. Riveiro, D. Rodríguez, F. Arias-González, J. Gil, and J. Pou. 2020. Fabrication and deposition of copper and copper oxide nanoparticles by laser ablation in open air. Nanomaterials 10 (2):300. doi:10.3390/nano10020300.
  • Filippova, N. A. 1963. Phase Analysis of Ores, Metallurgiya.
  • Gaydon, J. W., H. J. Glass, and R. D. Pascoe. 2009. Method for near infrared sensor-based sorting of a copper ore. Journal of near Infrared Spectroscopy 17 (4):177–94. doi:10.1255/jnirs.849.
  • Hulanicki, A. 1998. Analiza specjacyjna w badaniach środowiska naturalnego [Speciation analysis in the study of the natural environment]. Przegląd Geologiczny [Geological Review] 46 (9):909–10.
  • Hurd, L. C, and A. R. Clark. 1936. Determination of metallic copper in cuprous oxide – Cupric oxide mixtures. Industrial & Engineering Chemistry Analytical Edition 8 (5):380–2. doi:10.1021/ac50103a031.
  • Iyakwari, S, and H. J. Glass. 2015. Mineral preconcentration using near infrared sensor-based sorting. Physicochemical Problems of Mineral Processing 51 (2):661–74. doi:10.5277/ppmp150224.
  • Jabber, M. S. A, and W. I. Stephen. 1982. The titrimetric determination of copper(I), copper(II) and copper metal in admixture. Fresenius’ Zeitschrift für analytische Chemie 311 (3):259–64. doi:10.1007/BF00476659.
  • Johan, M. R., M. S. M. Suan, N. L. Hawari, and H. A. Ching. 2011. Annealing effects on the properties of copper oxide thin films prepared by chemical deposition. International Journal of Electrochemical Science 6 (12):6094–104.
  • Jonczy, I., M. Kamińska, and K. Bilewska. 2018. Fazy siarczkowe i siarczanowe w żużlach hutniczych [Sulphide and sulphate phases in metallurgical slags]. Archiwum Gospodarki Odpadami i Ochrony Środowiska [Archives of Waste Management and Environmental Protection] 20 (1):1–10.
  • Kakovskiy, I. A, and M. N. Fedorova. 1950. Определение сульфатов тяжелых металлов в сульфидных рудах [Determination of heavy metal sulphates in sulfide ores]. Zavodskaya Laboratoriya [Industrial Laboratory] 16 (4):414–7.
  • Karlak, R. F, and D. S. Burnett. 1966. Quantitative phase analysis by x-ray diffraction. Analytical Chemistry 38 (12):1741–5. doi:10.1021/ac60244a026.
  • Korkmaz, Ş., B. Geçici, S. D. Korkmaz, R. Mohammadigharehbagh, S. Pat, S. Özen, V. Şenay, and H. H. Yudar. 2016. Morphology, composition, structure and optical properties of CuO/Cu2O thin films prepared by RF sputtering method. Vacuum 131:142–6. doi:10.1016/j.vacuum.2016.06.010.
  • Kot, A, and J. Namieśnik. 2000. The role of speciation in analytical chemistry. TrAC Trends in Analytical Chemistry 19 (2-3):69–79. doi:10.1016/S0165-9936(99)00195-8.
  • Kraft, G. 1966. Analiza fazowa rud i produktów hutniczych [Phase analysis of ores and metallurgical products]. Zeitschrift für Erzbergbau und Metallhüttenwesen [Journal of Ore Mining and Metallurgy] 19 (12):614.
  • Lapshin, A. E., V. V. Karzin, V. I. Shapovalov, and P. B. Baikov. 2016. X-ray phase analysis of copper oxides films obtained by DC reactive magnetron sputtering. Glass Physics and Chemistry 42 (1):116–7. doi:10.1134/S1087659616010065.
  • Lavrukhina, A. K. 1946. Количественное определение Cu, Cu2O, CuO при совместном их присутствии [Quantitative determination of Cu, Cu2O, CuO in their mixtures]. Żurnal Analiticeskoj Chimii [Journal of Analytical Chemistry] 1:73–9.
  • Le Blanc, M., H. Sachse, and H. Schöpel. 1933. Die Elektronenleitfähigkeit der Kupferoxyde II [The electronic conductivity of copper oxides II]. Annalen der Physik 409 (3):334–44. doi:10.1002/andp.19334090307.
  • Malinowska, K, and Z. Było. 1979. Analiza układu Cu-Cu2O-CuO metodą selektywnej ekstrakcji i cementacji składników fazowych [Analysis of the Cu-Cu2O-CuO system using the method of selective extraction and components cementation]. Archiwum Hutnictwa [Archives of Metallurgy] 24 (4):519–33.
  • Margulis, E. V., Y. S. Remizov, and N. I. Kopylov. 1963. O Tverdofaznom Vzaimodeistvii Mezhdu Okislami i Sulfatami Tsinka, Kadmiya i Medi (Phase Relations of Oxides and Sulfides of Zinc, Cadmium and Copper). Zhurnal Neorganicheskoi Khimii (Journal of Inorganic Chemistry) 8 (8):1862–8.
  • Mehta, S. M, and N. R. Bharucha. 1953. Quantitative determination of copper, cuprous oxide and cupric oxide in a mixture. Proceedings of the Indian Academy of Sciences - Section A 37 (1):29–32. doi:10.1007/BF03052855.
  • Milinovic, J., Á. A. Dias, A. I. Janeiro, M. F. C. Pereira, S. Martins, S. Petersen, and F. J. A. S. Barriga. 2020. XRD identification of ore minerals during cruises: Refinement of extraction procedure with sodium acetate buffer. Minerals 10 (2):160. doi:10.3390/min10020160.
  • Mitchell, J., Jr, D. M. Smith, E. C. Ashby, and W. M. D. Bryant. 1941. Analytical procedures employing Karl Fischer reagent. IX. Reactions with inorganic oxides and related compounds. Oxidation and reduction reactions. Journal of the American Chemical Society 63 (11):2927–30. doi:10.1021/ja01856a017.
  • Mohanraj, G. T., M. R. Rahman, S. B. Arya, R. Barman, P. Krishnendu, and S. S. Singh Meena. 2022. Characterization study and recovery of copper from low grade copper ore through hydrometallurgical route. Advanced Powder Technology 33 (1):103382. doi:10.1016/j.apt.2021.12.001.
  • Nishida, D, and K. Hirabayashi. 1923. On the reaction of potassium permanganate upon cuprous oxide in dilute sulphuric acid, and the determination of metallic copper, cuprous oxide, and cupric oxide from this mixture. Journal of the Society of Chemical Industry, (Japan) 26 (9):1123–33. doi:10.1246/nikkashi1898.26.9_1123.
  • Oluwaseye, F. I., S. Iyakwari, A. A. Idzi, O. H. Kehinde, and U. H. Osu. 2016. Qualitative identification of copper bearing minerals using near infrared sensors. Physicochemical Problems of Mineral Processing 52 (2):620–33. doi:10.5277/ppmp160209.
  • Phul, R., C. Kaur, U. Farooq, and T. Ahmad. 2018. Ascorbic acid assisted synthesis, characterization and catalytic application of copper nanoparticles. Material Science & Engineering International Journal 2 (4):90–4. doi:10.15406/mseij.2018.02.00040.
  • Popović, S. 2020. Quantitative phase analysis by x-ray diffraction – Doping methods and applications. Crystals 10 (1):27. doi:10.3390/cryst10010027.
  • Ratnawulan, A., S. Fauzi, and A. E. Hayati. 2017. Effect of calcination temperature on phase transformation and crystallite size of copper oxide (CuO) powders. AIP Conference Proceedings 1868, 060009–1–060009-5. doi:10.1063/1.4995173.
  • Sawicka-Chudy, P., M. Wielgosz, A. Wal, B. Cieniek, G. Wisz, Ł. Głowa, M. Cholewa, and J. Sawicka. 2018. Analysis of chemical and phase composition of copper oxide prepared by direct current sputtering for photovoltaic applications. Energy Policy Studies 1 (2):3–11.
  • Scott, W. 1927. Standard methods of analysis. New York: D. Van Nostrand Co.
  • Stankiewicz, W., M. Wójtowicz, and M. Staszewski. 1981. Phase analysis of non-sulfide compounds of copper in slags and products of their flotation. Report IMN no 2794/81. Łukasiewicz Research Network - Institute of Non-Ferrous Metals, Gliwice.
  • Sudha, V., G. Murugadoss, and R. Thangamuthu. 2021. Structural and morphological tuning of Cu-based metal oxide nanoparticles by a facile chemical method and highly electrochemical sensing of sulphite. Scientific Reports 11 (1):3413. doi:10.1038/s41598-021-82741-z.
  • Theivasanthi, T, and M. Alagar. 2010. X-Ray diffraction studies of copper nanopowder. Scholars Research Library 1 (2):112–7.
  • Timicobułatowa, M. I, and B. S. Christoforow. 1964. Zastosowanie Związków Kompleksowych w Analizie Fazowej, cz.1. Oznaczenie aktywnych siarczków miedzi [Application of complex compounds in phase analysis, part 1. Determination of active copper sulphides]. Żurnal Analiticeskoj Chimii [Journal of Analytical Chemistry] 19 (8):989.
  • Whitby, H., J. T. Hollibaugh, and C. M. G. van den Berg. 2017. Chemical speciation of copper in a salt marsh estuary and bioavailability to Thaumarchaeota. Frontiers in Marine Science 4:178. doi:10.3389/fmars.2017.00178.
  • Wyciślik, A. 2009. Problematyka Specjacji i Analizy Specjacyjnej w Metalurgii [Problems of speciation and speciation analysis in metallurgy]. In Specjacja Chemiczna – problemy i możliwości [Chemical Speciation – Problems and Possibilities], ed. E. Bulska, and D. Barałkiewicz, 183–203. Warsaw: Malamut.
  • Wyciślik, A. 2013. Wprowadzenie Do Problematyki Specjacji I Analizy Specjacyjnej w Metalurgii Oraz Inżynierii Materiałowej [Introduction to the topic of speciation and speciation analysis in metallurgy and materials engineering]. Gliwice: Wydawnictwo Politechniki Śląskiej.
  • Yen, J. Y, and Y. S. Liu. 1959. Phase Analysis of Complicate Copper Ores. Acta Chimica Sinica 25:346.
  • Zajączkowski, A., S. Bratek, J. Botor, and J. Czarnecki. 2010. Wpływ stopnia redukcji żużla zawiesinowego na wartość jego lepkości [An effect of the reduction degree of flash smelting slag on its viscosity]. Rudy i Metale Nieżelazne [Ores and Non-Ferrous Metals] 55 (1):3–9.
  • Zheng, W., Y. Chen, X. Peng, K. Zhong, Y. Lin, and Z. Huang. 2018. The phase evolution and physical properties of binary copper oxide thin films prepared by reactive magnetron sputtering. Materials 11 (7):1253. doi:10.3390/ma11071253.
  • Zoolfakar, A. S., R. A. Rani, A. J. Morfa, A. P. O’Mullane, and K. Kalantar-zadeh. 2014. Nanostructured copper oxide semiconductors: A perspective on materials, synthesis methods and applications. Journal of Material Chemistry. C 2 (27):5247–70. doi:10.1039/C4TC00345D.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.