A model for movement behaviors of the metal/polymer combined particles in corona electrostatic separator

  • Han, S.
  • Park, S.
  • Park, Jai Koo
Citations

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초록

Metal/polymer combined recycled resources such as printed circuit boards (PCBs) and electric wires have various valuable metal. Therefore, metal recovery from the metal/polymer combined resources is the important recycling operation. Metal recovery process is mostly consist of crushing, grinding and separation process. Corona electrostatic separation is recommended for concentrating of ground metal/polymer combined materials. Meanwhile, the metal/polymer combined materials were not completely dissociated when they had been milled because they are composed of their unique coupled structure. Thus, the separation feeds, which are products after crushing and milling, are composed of almost metal and polymer together. In consideration of that, a model was derived for predicting for movement behaviour of the metal/polymer combined particles in corona electrostatic separator. And then numerical study was conducted by simulating the model. And experimental study was conducted for confirming validity of numerical study results. Numerical study results on movement behaviours of particle have a good agreement with and experimental study results. The model can be used for separating the metal/polymer composite according to the metal grade.

키워드

Corona electrostatic separationMetal/polymer combined particlePrinted circuit boardRecycled resourceWaste electric wireCrushingElectric coronaElectric wireElectrostatic separatorsElectrostaticsMetalsPrinted circuit boardsRecyclingSeparationWireCoupled structuresElectrostatic SeparationMovement behaviorMovement behaviourPrinted circuit board (PCBs)Recycled resourceRecycling operationsSeparation processMetal recovery
제목
A model for movement behaviors of the metal/polymer combined particles in corona electrostatic separator
저자
Han, S.Park, S.Park, Jai Koo
발행일
2017-09
유형
Conference Paper
저널명
14th International Symposium on East Asian Resources Recycling Technology, EARTH 2017