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Granular activated carbon adsorption of MIB in the presence ofdissolved organic matter

  • R. Scott Summers(corresponding author)
    ,
  • Soo Myung Kim
    ,
  • ,
  • Seon Ha Chae
    ,
  • Christopher J. Corwin
*Corresponding author for this work
  • University of Colorado-Boulder
    ,
  • Korea Water Resources Corporation
    ,
  • Jacobs Engineering Group Inc.
Research Output:
Contribution to journal
Article
Peer-review

Abstract

Based on the results of over twenty laboratory granular activated carbon (GAC) column runs, models were developed and utilized for the prediction of 2-methylisoborneol (MIB) breakthrough behavior at parts per trillion levels and verified with pilot-scale data. The influent MIB concentration was found not to impact the concentration normalized breakthrough. Increasing influent background dissolved organic matter (DOM) concentration was found to systematically decrease the GAC adsorption capacity for MIB. A series of empirical models were developed that related the throughput in bed volumes for a range of MIB breakthrough targets to the influent DOM concentration. The proportional diffusivity (PD) designed rapid small-scale column test (RSSCT) could be directly used to scale-up MIB breakthrough performance below 15% breakthrough. The empirical model to predict the throughput to 50% breakthrough based on the influent DOM concentration served as input to the pore diffusion model (PDM) and well-predicted the MIB breakthrough performance below a 50% breakthrough. The PDM predictions of throughput to 10% breakthrough well simulated the PD-RSSCT and pilot-scale 10% MIB breakthrough.

Bibliographic Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 3507-3513 (7 pages)

Journal (Volume, Issue Number)

Water Research (Volume 47, Issue 10)

Publication milestones

  • Published - 15/06/2013

Publication status

Published - 15/06/2013

ISSN

0043-1354

Publication IDs

  • Scopus: 84877673637
  • PubMed: 23623469