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Photoreduction of mercuric salt solutions at high pH

机译:Photoreduction of mercuric salt solutions at high pH

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摘要

Titanium dioxide and a 100 W mercury spotlamp were used to photoreduce 100 ppm Hg aqueous mercuric chloride solutions. The solution's basicity and temperature were varied. Two optimum photoreduction conditions were determined: pH 9, 0℃ and pH 11, 40 ℃. TiO{sub}2-assisted photoreduction at these two conditions lowered the concentration of mercury left in the solution to below 200 ppb. Methodology was developed to perform an overall mercury mass balance on the process. The overall mercury balancerevealed that more than 97 (average 103 ± 6) of the mercury removed from solution was deposited as mercury metal on the surface of the TiO2 for the pH 9, 0 ℃ treatment conditions. This mercury could be driven off the TiO{sub}2 surface by heating to100 ℃ for half of an hour under nitrogen flow. The pH and temperature information under light and dark conditions is consistent with a pH-dependent adsorption of a dissociated mercuric species by hydroxide ions on the TiO{sub}2 surface followed bynucleation of the reduced species. The TiO{sub}2 assisted photoreduction process shows promise for remediation of mercuric waste below the EPA 200 ppb mercury disposal limit as well as the potential for recycling the mercury and TiO{sub}2 catalyst.

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