Adsorptive Removal of PFAS from Aqueous Solutions Using GAC, PAC and Ball-Milled Colloidal Activated Carbon: Characterizing Efficiency, Kinetics, and Mechanisms

  • Kebede, Mahlet M.; 
  • Masud, Md Abdullah Al; 
  • Ortbal, Sarah; 
  • Shin, Won Sik; 
  • Mekonnen, Mesfin M.; 
  • 외 2명
Citations

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13
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초록

Per-and polyfluoroalkyl substances (PFAS) present significant challenges for remediation due to their persistence in nature. Activated carbon is a widely used adsorbent for removing PFAS. In this study, three forms of activated carbon, granular activated carbon (GAC), powdered activated carbon (PAC), and ball-milled colloidal activated carbon (CACBM), are compared for their effectiveness in removing short and long-chain PFAS. Physical modification through ball-milling process enhanced the adsorptive properties of activated carbon, resulting in smaller particle size (d 50 = 0.318 mu m), increased surface area (968.59 m2 g-1), and improved suspension stability compared to conventional GAC and PAC. Kinetic experiments showed that CACBM demonstrated superior removal efficiencies of long-chain PFAS (up to 89% for perfluorooctanesulfonic acid (PFOS) and 73% for perfluorooctanoic acid (PFOA)), and moderate removal of short-chain PFAS (55% for perfluorobutanesulfonic acid (PFBS) and 30% for perfluorobutanoic acid (PFBA)). The pseudo-first-order model adequately described adsorption trends; however, the pseudo-second-order model provided a better fit, with intraparticle diffusion identified as the rate-limiting step. Isotherm studies indicated that PFAS adsorption aligned well with the Freundlich model. Competitive adsorption experiments revealed a hierarchical pattern. Overall, the study demonstrates CACBM as a promising adsorbent for remediation of PFAS-contaminated water systems.

키워드

adsorption; long-/short-chain PFAS; microporous; mechanisms; competitive adsorption; IN-SITU TREATMENT; SUBSTANCES PFASS; PERFLUOROALKYL; NANOPARTICLES; TRANSPORT; ISOTHERM; MATTER
제목
Adsorptive Removal of PFAS from Aqueous Solutions Using GAC, PAC and Ball-Milled Colloidal Activated Carbon: Characterizing Efficiency, Kinetics, and Mechanisms
저자
Kebede, Mahlet M.; Masud, Md Abdullah Al; Ortbal, Sarah; Shin, Won Sik; Mekonnen, Mesfin M.; Clement, T. Prabhakar; Terry, Leigh G.
DOI
10.1021/acsestwater.5c00641
발행일
2025-11-14
유형
Article
저널명
ACS ES&T WATER
권
5
호
11
페이지
6554 ~ 6566