References
- EPA-823-B93-001, Selecting Remediation Techniques for
Contaminated Sediment, Office of Water (WH-585), U.S.
Environmental Protection Agency, Washington, D.C., 1993.
- TDS-2092-ENV, Contaminated Sediments at Navy Facilities:
Cleanup Alternatives, Naval Facilities Engineering Command,
Washington, D.C., 20374–5065, 2002.
- EPA-823/R-98/001, EPA’s Contaminated Sediment Management
Strategy, U.S. Environmental Protection Agency, Washington,
D.C., 1998.
- EPA/540/R-97/006, Ecological Risk Assessment Guidance for
Superfund: Process for Designing and Conducting Ecological
Risk Assessment, U.S. Environmental Protection Agency,
Washington, D.C., 1997.
- E. Barth, A. Reible, Design Consideration Involving Active
Sediment Caps, 1st International Conference in Hazardous
Waste Management, Chania-Crete, Greece, 2008.
- S.E. Apitz, E.A. Power, From risk assessment to sediment
management an international perspective, J. Soils Sediments,
2 (2002) 61–66.
- C. Zhang, M.-y. Zhu, G.-m. Zeng, Z.-g. Yu, F. Cui, Z.-z. Yang,
L.-q. Shen, Active capping technology: a new environmental
remediation of contaminated sediment, Environ. Sci. Pollut.
Res., 23 (2016) 4370–4386.
- EPA-540-R-05-012, Contaminated Sediment Remediation
Guidance for Hazardous Waste Sites, Office of Solid Waste and
Emergency Response, U.S. Environmental Protection Agency,
Washington, D.C., 2005.
- J.M. Azcue, A.J. Zeman, U. Forstner, International Review of
Application of Subaqueous Capping Techniques for Remediation
of Contaminated Sediments, P.S.S. e Pinto, ed., 3rd
International Congress on Environmental Geotechnics, Balkema
Publishers, Leiden, 1998.
- D. Reible, D. Hayes, C. Lue-Hing, J. Patterson, N. Bhowmik,
M. Johnson, J. Teal, Comparison of the long-term risks of
removal and in situ management of contaminated sediments in
the Fox River, Soil Sediment Contam., 12 (2003) 325–344.
- M. Palermo, S. Maynord, J. Miller, D. Reible, Guidance for
in-situ Subaqueous Capping of Contaminated Sediments, EPA
905-B96-004, Great Lakes National Program Office, 1998.
- A.S. Knox, M.H. Paller, D.D. Reible, I.G. Petrisor, Sequestering
Agents for Metal Immobilization-Application to the Development
of Active Caps in Fresh and Salt Water Sediments,
Conference Proceedings, the 4th International Conference on
Remediation of Contaminated Sediments, Savannah, GA, 2007.
- D.D. Reible, D. Lampert, W.D. Constant, R.D Mutch,
Y. Zhu, Active capping demonstration in the Anacostia River,
Washington, D.C., Rem. J., 17 (2006) 39–53.
- Y. Yang, D. Tomlinson, S. Kennedy, Y.Q. Zhao, Dewatered alum
sludge: a potential adsorbent for phosphorus removal, Water
Sci. Technol., 54 (2006) 207–213.
- A.O. Babatunde, Y.Q. Zhao, Y. Yang, P. Kearney, From fills to
filter: insights into the reuse of dewatered alum sludge as a
filter media in a constructed wetland, J. Residuals Sci. Technol.,
4 (2007) 147–152.
- Y. Zhang, L. Yang, D. Wang, T. Zhang, Resource utilization
of water treatment residual sludge (WTRS): effective
defluoridation from aqueous solution, Desal. Wat. Treat.,
55 (2015) 448–462.
- L. Qi, R. Cheng, H. Wang, X. Zheng, G. Zhang, G. Li, Recycle
of alum sludge with PAC (RASP) for drinking water treatment,
Desal. Wat. Treat., 25 (2011) 170–175.
- M.C. Wang, T. Tseng, Permeability behavior of a water treatment
sludge, J. Geotech. Eng., 119 (1993) 1672–1677.
- B.C. O’Kelly, Geotechnical properties of municipal water
treatment sludge incorporating a coagulant, Can. Geotech. J.,
45 (2008) 715–725.
- B.C. O’Kelly, M.E. Quille, Shear strength properties of water
treatment residues, Proc. Inst. Civ. Eng. Geotech. Eng., 163 (2010)
23–35.
- M. Balkaya, Evaluation of the geotechnical properties of alum
sludge, zeolite, and their mixtures for beneficial usage, Environ.
Prog. Sustainable Energy, 34 (2015) 1028–1037.
- A.O. Babatunde, L.G. Jeyakumar, Y. Zhao, Constructed
wetlands using aluminum-based drinking water treatment
sludge as P removing substrate: should aluminum release be a
concern?, J. Environ. Monit., 13 (2011) 1775–1783.
- N. Balkaya, N. Büker, Use of aluminium-coagulated water
treatment residue in the treatment of dye containing wastewater,
Desal. Wat. Treat., 93 (2017) 297–302.
- J. Komlos, A. Welker, V. Punzi, R. Traver, Feasibility study of
as-received and modified (dried/baked) water treatment plant
residuals for use in stormwater control measures, J. Environ.
Eng., 139 (2013) 1237–1245.
- B. O’Kelly, Landfill disposal of alum water treatment residues,
some pertinent geoengineering properties, J. Residuals Sci.
Technol., 7 (2010) 95–113.
- M.C. Wang, Q.J. Hull, M. Jao, B.A. Dempsey, D.A. Cornwell,
Engineering behavior of water treatment sludge, J. Environ.
Eng., 118 (1992) 848–864.
- H. Hsieh, D. Raghu, Criteria Development for Water Treatment
Plant Residual Monofills, AWWARF, Denver, CO, 1997.
- H. Hsieh, D. Raghu, P. Tian, Leaching studies on a model
monofill of water treatment plant residuals, Environ. Eng. Sci.,
23 (2006) 230–238.
- Environmental Protection Agency Landfill Manuals, Landfill
Site Design, EPA, Wexford, 2000.
- M.R. Palermo, D. Reible, D.F. Hayes, J.R. Verduin, Appendix
H: Technical Evaluation of In Situ Capping as a Remedy
Component for Onondaga Lake, Morristown, NJ, 2004.
- R.B.J. Brinkgreve, E. Engin, W.M. Swolfs, Plaxis 2D, Reference
Manual, Delft, 2012.
- B.M. Das, Principles of Geotechnical Engineering, 4th ed., PWS,
Boston, MA, 1997.
- P. Skels, K. Bondars, Applicability of small strain stiffness
parameters for pile settlement calculation, Procedia Eng.,
172 (2017) 999–1006.
- J.S. Melton, R.A. Prieto, Characterization and Modeling of
Consolidation and Seepage Behavior of Soft Sediment at Low
Stress Levels, 275–280, Karstunen and Leoni, Eds., Geotechnics
of Soft Soils - Focus on Ground Improvement – Karstunen,
CRC Press, Boca Raton, FL, 2009.
- A. Lees, Simulation of Geogrid Stabilisation by Finite Element
Analysis, 19th International Conference of Soil Mechanics and
Geotechnical Engineering, Seoul, South Korea, September
17–21, 2017, pp. 1377–1380.
- U.S. Army Corps of Engineers, Engineering and Design
Introduction to Probability and Reliability Methods for Use in
Geotechnical Engineering, Engineer Technical Letter No. 1110-
2-547, Department of the Army U.S. Army Corps of Engineers,
Washington, D.C., 1995.
- A.O. Babatunde, Y.Q. Zhao, Constructive approaches toward
water treatment works sludge management: an international
review of beneficial reuses, Crit. Rev. Env. Sci. Technol.,
37 (2007) 129–164.
- S. Kaimin, T. Yuanyuan, Incorporating simulated zinc ash by
kaolinite-and-sludge-based ceramics: phase transformation
and product leachability, Chin. J. Chem., 20 (2012) 411–416.
- D.A. Cornwell, C. Vandermeyden, G. Dillow, Landfilling of
Water Treatment Plant Coagulant Sludges, AWWA Research
Foundation and American Water Works Association, Denver,
CO, 1992.
- C.J. Gabelich, K.P. Ishida, R.M. Bold, Testing of water treatment
copolymers for compatibility with polyamide reverse osmosis
membranes, Environ. Prog., 24 (2005) 410–416.