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Article

Recovery of copper from small grain size fractions of municipal solid waste incineration bottom ash by means of density separation

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Pages 250-260 | Received 09 Jan 2017, Accepted 11 Jul 2017, Published online: 28 Jul 2017

References

  • Arickx, S., T. Van Gerven, E. Boydens, and P. L’hoëst, B. Blanpain, and C. Vandecasteele. 2008. “Speciation of Cu in MSWI Bottom Ash and Its Relation to Cu Leaching.” Applied Geochemistry 23 (12): 3642–3650. doi:10.1016/j.apgeochem.2008.09.006.
  • Augsburg, A., R. Köster, M. Amme, and S. H. Eberle. 1997. “Mobilität und Festphasenspezifikation von Kupfer aus Schlacken der Hausmüllverbrennung.” Müll Und Abfall 3: 144–153.
  • Aydin, Ertug. 2016. “Novel Coal Bottom Ash Waste Composites for Sustainable Construction.” Construction and Building Materials 124: 582–588. doi:10.1016/j.conbuildmat.2016.07.142.
  • Bayuseno, A. P., and W. W. Schmahl. 2010. “Understanding the Chemical and Mineralogical Properties of the Inorganic Portion of MSWI Bottom Ash.” Waste Management 30 (8-9): 1509–1520. doi:10.1016/j.wasman.2010.03.010.
  • Bunge, R. 2016. Aufbereitung von Abfallverbrennungsaschen—Eine Übersicht. Paper presented at the Mineralische Nebenprodukte und Abfälle 3, Berlin.
  • Cheng, Hefa, and Yuanan Hu. 2010. “Municipal Solid Waste (MSW) as a Renewable Source of Energy: Current and Future Practices in China.” Bioresource Technology 101 (11): 3816–3824. doi:10.1016/j.biortech.2010.01.040.
  • Dijkstra, J. J., J. C. L. Meeussen, H. A. Van der Sloot, and R. N. J. Comans. 2008. “A Consistent Geochemical Modelling Approach for the Leaching and Reactive Transport of Major and Trace Elements in MSWI Bottom Ash.” Applied Geochemistry 23 (6): 1544–1562. doi:10.1016/j.apgeochem.2007.12.032.
  • Enzner, V., and K. Kuchta. 2016. Aufbereitung von Rostaschen mittels Hochgeschwindigkeitsprallzerkleinerer. Paper presented at the 4. Symposium Rohstoffeffizienz und Rohstoffinnovation, Tutzing.
  • Hashimoto, Seiji, Hiroki Tanikawa, and Yuichi Moriguchi. 2007. “Where Will Large Amounts of Materials Accumulated within the Economy Go? – A Material Flow Analysis of Construction Minerals for Japan.” Waste Management 27 (12): 1725–1738. doi:10.1016/j.wasman.2006.10.009.
  • Hjelmar, Ole, Jesper Holm, and Kim Crillesen. 2007. “Utilisation of MSWI Bottom Ash as Sub-Base in Road Construction: First Results from a Large-Scale Test Site.” Journal of Hazardous Materials 139 (3): 471–480. doi:10.1016/j.jhazmat.2006.02.059.
  • Holm, O., and F. G. Simon. 2014. Recovery of Copper from Small Grain Sizes of Municipal Solid Waste Incineration Bottom Ash by Means of Density Separation. Paper presented at the SUM 2014 – 2nd Symposium on Urban Mining (Proceedings), Bergamo, Italy, May 19–21, 2014.
  • Holm, Olaf, and Franz-Georg Simon. 2017. “Innovative Treatment Trains of Bottom Ash (BA) from Municipal Solid Waste Incineration (MSWI) in Germany.” Waste Management 59: 229–236. doi:10.1016/j.wasman.2016.09.004.
  • Honaker, R. Q., D. Wang, and K. Ho. 1996. “Application of the Falcon Concentrator for Fine Coal Cleaning.” Minerals Engineering 9 (11): 1143–1156. doi:10.1016/0892-6875(96)00108-2.
  • Hyks, J., and T. Astrup. 2009. “Influence of Operational Conditions, Waste Input and Ageing on Contaminant Leaching from Waste Incinerator Bottom Ash: A Full-Scale Study.” Chemosphere 76 (9): 1178–1184. doi:10.1016/j.chemosphere.2009.06.040.
  • Keulen, A., A. van Zomeren, P. Harpe, W. Aarnink, H. A. E. Simons, and H. J. H. Brouwers. 2016. “High Performance of Treated and Washed MSWI Bottom Ash Granulates as Natural Aggregate Replacement within Earth-Moist Concrete.” Waste Management 49: 83–95. doi:10.1016/j.wasman.2016.01.010.
  • Krausmann, Fridolin, Simone Gingrich, Nina Eisenmenger, Karl-Heinz Erb, Helmut Haberl, and Marina Fischer-Kowalski. 2009. “Growth in Global Materials Use, GDP and Population during the 20th Century.” Ecological Economics 68 (10): 2696–2705. doi:10.1016/j.ecolecon.2009.05.007.
  • Kroll-Rabotin, Jean-Sébastien, Florent Bourgeois, and Éric Climent. 2013. “Physical Analysis and Modeling of the Falcon Concentrator for Beneficiation of Ultrafine Particles.” International Journal of Mineral Processing 121: 39–50. doi:10.1016/j.minpro.2013.02.009.
  • Kuchta, K., and V. Enzner. 2015. “Metallrückgewinnung aus Rostaschen aus Abfallverbrennungsanlagen—Bewertung der Ressourceneffizienz.” In EdDE-Dokumentation. EdDE - Entsorgergemeinschaft der Deutschen Entsorgungswirtschaft e.V, EdDE-Dokumentation 17.
  • Liu, Q., Z. Cui, and T. H. Etsell. 2006. “Pre-Concentration and Residual Bitumen Removal from Athabasca Oilsands Froth Treatment Tailings by a Falcon Centrifugal Concentrator.” International Journal of Mineral Processing 78 (4): 220–230. doi:10.1016/j.minpro.2005.10.010.
  • Muchova, Lenka, Erwin Bakker, and Peter Rem. 2009. “Precious Metals in Municipal Solid Waste Incineration Bottom Ash.” Water, Air, & Soil Pollution: Focus 9 (1-2): 107–116. doi:10.1007/s11267-008-9191-9.
  • Oruç, Filiz, Selçuk Özgen, and Eyüp Sabah. 2010. “An Enhanced-Gravity Method to Recover Ultra-Fine Coal from Tailings: Falcon Concentrator.” Fuel 89 (9): 2433–2437. doi:10.1016/j.fuel.2010.04.009.
  • Pacheco-Torgal, F., V., J. Labrincha, Y. Ding, and J. de Brito. 2013. Handbook of Recycled Concrete and Demolition Waste, 672. Saxton, Cambridge: Woodhead Publishing Limited.
  • Simon, F. G., and O. Holm. 2013a. Recovery of Metals from Waste, an Example for the Resource Cycle. Paper presented at the World Resources Forum, Shaping the Future of Natural Resources, Davos (CH).
  • Simon, F. G., and O. Holm. 2013b. “Rostasche - Durch Aufschluss, Trennung und Rückgewinnung von Metallen aus Rückständen thermischer Prozesse kann die Metallausbeute erhöht werden.” ReSource 26 (3): 31–37.
  • Simon, F. G., and O. Holm. 2016. “Exergetic Considerations on the Recovery of Metals from Waste.” International Journal of Exergy 19 (3): 352–363. doi:10.1504/IJEX.2016.075668.
  • Speiser, C., T. Baumann, and R. Niessner. 2000. “Morphological and Chemical Characterization of Calcium-Hydrate Phases Formed in Alteration Processes of Deposited Municipal Solid Waste Incinerator Bottom Ash.” Environmental Science & Technology 34 (23): 5030–5037. doi:10.1021/Es990739c.
  • Tang, Jinfeng, and Britt-Marie Steenari. 2016. “Leaching Optimization of Municipal Solid Waste Incineration Ash for Resource Recovery: A Case Study of Cu, Zn, Pb and Cd.” Waste Management 48: 315–322. doi:10.1016/j.wasman.2015.10.003.
  • Tao, Y., Z. Luo, Y. Zhao, and D. Tao. 2006. “Experimental Research on Desulfurization of Fine Coal Using an Enhanced Centrifugal Gravity Separator.” Journal of China University of Mining and Technology 16 (4): 399–403.10.1016/S1006-1266(07)60034-0
  • van Zomeren, A., and H. A. van der Sloot. 2013. “Systematic Leaching Behavior of Worldwide MSWI Bottom Ashes in Spite of Their Variability in Content.” In Sustainable Landfilling, edited by R. Cossu and H. A. van der Sloot, 366–376. Padova: CISA Publisher.
  • Wei, Y. M., T. Shimaoka, A. Saffarzadeh, and F. Takahashi. 2011. “Mineralogical Characterization of Municipal Solid Waste Incineration Bottom Ash with an Emphasis on Heavy Metal-Bearing Phases.” Journal of Hazardous Materials 187 (1-3): 534–543. doi:10.1016/j.jhazmat.2011.01.070.
  • Xia, Yi, Pinjing He, Liming Shao, and Hua Zhang. 2016. “Metal Distribution Characteristic of MSWI Bottom Ash in View of Metal Recovery.” Journal of Environmental Sciences 52: 178–189. doi:10.1016/j.jes.2016.04.016.

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