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Heavy metal remediation

R. I. Nooney, M. Kalyanaraman, G. Kennedy and E. J. Maginn, Heavy metal remediation using functionalized mesoporous silicas with controlled macrostructure, Langmuir, 2001, 17, 528. [Pg.78]

Keywords Biosorption, Heavy metal remediation, Adsorbent, Industrial effluents, Agricultural waste biomass. [Pg.84]

The MRU technology is not applicable to heavy-metal-contaminated soils nor to radioactive waste contamination. The one exception to heavy-metals remediation is mercury. The vaporization temperature for mercury is well within the operating range of the MRU, and because of closed chamber construction, it is ideally suited for the removal and reclamation of mercury from contaminated soil. [Pg.483]

Chen, X., Wright, J. V., Conca, J. L. Peurrung, L. M. 1997a. Evaluation of heavy metal remediation using mineral apatite. Water, Air Soil Pollution, 98, 57-78. [Pg.467]

Chander S, Fuerstenau DW (1984) Solubility and interfacial properties of hydroxylapatite A review. In Adsorption On and Surface Chemistry of Hydroxyapatite. Misra DN (ed) Plenum Press, New York Chen XB, Wright JV, Conca JL, Peurrang LM (1997) Evaluation of heavy metal remediation using mineral apatite. Water Air Soil Poll 98 57-78... [Pg.82]

Chen X-B, Wright, JV, Conca JL, Peurrung LM (1997b) Evaluation of Heavy Metal Remediation Using Mineral Apatite. Water, Air Soil Pollut 98 57-78... [Pg.516]

Adsorbent Microfluidic preconcentrator, toxin removal, heavy metal remediation Membranes + Powders Chips ... [Pg.520]

Krishnani KK, Ayyappan S. Heavy metals remediation of water using plants and lignocellulosic agro wastes. Rev Environ Contam Toxicol 2006 188 59-84. [Pg.146]


See other pages where Heavy metal remediation is mentioned: [Pg.84]    [Pg.871]    [Pg.943]    [Pg.356]    [Pg.1093]    [Pg.1095]    [Pg.600]    [Pg.438]    [Pg.442]    [Pg.440]    [Pg.72]    [Pg.36]    [Pg.745]    [Pg.72]   
See also in sourсe #XX -- [ Pg.440 ]




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