Skip to main navigation Skip to search Skip to main content

Mesoscopic flow simulation to understand the percolation through fine-ground electronic waste particle bed

  • Zachary Diermyer
  • , Yidong Xia
  • , Ahmed Hamed
  • , Jordan Klinger
  • , Vicki Thompson
  • , Zhen Li
  • , Jiaoyan Li
  • Idaho National Laboratory
  • SUNY Buffalo
  • Clemson University

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Mechanical size reduction is a critical pretreatment for hydrometallurgical recovery of valuable metals in electronic waste. The particle size resulting from milling ranges from a few micrometers to a few millimeters, presenting challenges of achieving sufficient leaching percolation in portions occupied by fine particles. This work investigates the hydrodynamics of percolation through micrometer-sized fine particle beds by using many-body dissipative particle dynamics flow simulations. The results show that higher effective pore size resulting from high aspect-ratio particle packing contributes to higher permeability than spherical particle packing. Increasing surface wettability enhances maximum saturation rates but reduces permeability. Moreover, increasing tortuosity negatively impacts permeability and the degree of reduction in permeability caused by increased surface wettability decreases with increasing tortuosity. These findings imply possible complex relationships between tortuosity, pore size, and surface wettability that collectively impact percolation in loosely packed fine particle beds and can be used to guide improvement in pretreatment.

Original languageEnglish
Article number120703
JournalPowder Technology
Volume454
DOIs
StatePublished - Mar 31 2025

Keywords

  • Apparent permeability
  • Dissipative particle dynamics
  • Saturation
  • Wettability

Fingerprint

Dive into the research topics of 'Mesoscopic flow simulation to understand the percolation through fine-ground electronic waste particle bed'. Together they form a unique fingerprint.

Cite this