Optimal design of ZVI/lapillus mixtures for nickel removal in permeable reactive barriers
Author:
Affiliation:
1. Department of Civil, Energy, Environmental and Material Engineering, Mediterranea University of Reggio Calabria
Publisher
The Japanese Geotechnical Society
Subject
General Computer Science
Link
https://www.jstage.jst.go.jp/article/jgssp/9/7/9_v09.cpeg022/_pdf
Reference25 articles.
1. 1) Bilardi, S., Calabrò, P.S., Moraci, N., Madaffari, M.G. and Ranjbar, E. (2018): A comparison between Fe0/pumice and Fe0/lapillus mixtures in permeable reactive barriers, Environmental Geotechnics, 7(8), 524–539.
2. 2) Bilardi, S., Calabrò, P.S. and Moraci, N. (2019): The removal efficiency and long-term hydraulic behaviour of zero valent iron/lapillus mixtures for the simultaneous removal of Cu2+, Ni2+ and Zn2+, Science of the Total Environment, 675, 490-500.
3. 3) Catalfamo, P., Arrigo, I., Primerano, P. and Corigliano, F. (2006): Efficiency of a zeolitized pumice waste as a low-cost heavy metals adsorbent, Journal of Hazardous Materials, 134(1–3), 140-143.
4. 4) Calabrò, P.S., Moraci, N. and Suraci, P. (2012): Estimate of the optimum weight ratio in zero-valent iron/pumice granular mixtures used in permeable reactive barriers for the remediation of nickel contaminated groundwater, Journal of Hazardous Materials, 207-208, 111-116.
5. 5) Elder, C.R. and Benson, C.H. (2019): Performance and economic comparison of PRB types in heterogeneous aquifers, Environmental Geotechnics, 6(4), 214–224.
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