Transport of Nanoscale Zero-Valent Iron in Saturated Porous Media: Effects of Grain Size, Surface Metal Oxides, and Sulfidation

30 Pages Posted: 13 Aug 2022

See all articles by Bo Chen

Bo Chen

Zhejiang University of Technology

Neng Lv

Zhejiang University of Technology

Wenfeng Xu

affiliation not provided to SSRN

Li Gong

Zhejiang University of Technology

Liyuan Liang

affiliation not provided to SSRN

Bin Gao

University of Florida

Feng He

Zhejiang University of Technology

Abstract

Knowledge of the fate and transport of nanoscale zero-valent iron (nZVI) in saturated porous media is crucial to the development of in situ remediation technologies. This work systematically compared the retention and transport of carboxymethyl cellulose (CMC) modified nZVI (CMC-nZVI) and sulfidated nZVI (CMC-S-nZVI) particles in saturated columns packed with quartz sand of various grain sizes and different surface metal oxide coatings. Grain size reduction had an inhibitory effect on the transport of CMC-S-nZVI and CMC-nZVI due to increasing immobile zone deposition and straining in the columns. Metal oxide coatings had minor effect on the transport of CMC-S-nZVI and CMC-nZVI because the sand surface was coated by the free CMC in the suspensions, reducing the electrostatic attraction between the nZVI and surface metal oxides. CMC-S-nZVI displayed greater breakthrough (C/C0 = 0.82-0.90) and higher mass recovery (84.9%-89.3%) than CMC-nZVI (C/C0 = 0.70-0.80 and mass recovery = 70.9%-79.6%, respectively) under the same experimental conditions. A mathematical model based on the advection-dispersion equation simulated the experimental data of nZVI breakthrough curves very well. Findings of this study suggest sulfidation could enhance the transport of CMC-nZVI in saturated porous media with grain and surface heterogeneities, promoting its application in in situ remediation.

Keywords: Sulfidation, Grain size, Metal oxides, nZVI, Transport

Suggested Citation

Chen, Bo and Lv, Neng and Xu, Wenfeng and Gong, Li and Liang, Liyuan and Gao, Bin and He, Feng, Transport of Nanoscale Zero-Valent Iron in Saturated Porous Media: Effects of Grain Size, Surface Metal Oxides, and Sulfidation. Available at SSRN: https://ssrn.com/abstract=4189298 or http://dx.doi.org/10.2139/ssrn.4189298

Bo Chen

Zhejiang University of Technology ( email )

China

Neng Lv

Zhejiang University of Technology ( email )

China

Wenfeng Xu

affiliation not provided to SSRN ( email )

No Address Available

Li Gong

Zhejiang University of Technology ( email )

China

Liyuan Liang

affiliation not provided to SSRN ( email )

No Address Available

Bin Gao

University of Florida ( email )

PO Box 117165, 201 Stuzin Hall
Gainesville, FL 32610-0496
United States

Feng He (Contact Author)

Zhejiang University of Technology ( email )

China

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