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Iron monosulfide as a scavenger for dissolved hexavalent chromium and cadmium

Authors
Jo, S.Lee, Ju YongKong, Sung HoChoi, JaeyoungPark, Jae Woo
Issue Date
Sep-2008
Publisher
SELPER LTD, PUBLICATIONS DIV
Keywords
hexavalent chromium; cadmium; iron monosulfide; reduction; precipitaion
Citation
ENVIRONMENTAL TECHNOLOGY, v.29, no.9, pp.975 - 983
Indexed
SCIE
SCOPUS
Journal Title
ENVIRONMENTAL TECHNOLOGY
Volume
29
Number
9
Start Page
975
End Page
983
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/171869
DOI
10.1080/09593330802166186
ISSN
0959-3330
Abstract
Iron sulfide minerals are common components of soil/sedimentary environments. Reactions near the surfaces of iron sulfides play important roles in metal retention, mobility, and bioavailability. A series of batch experiments was conducted to study the removal of aqueous chromium and cadmium by iron monosulfide. Hexavalent chromium was reduced to Cr(III) by iron monosulfide with simultaneous precipitation of chromium and iron oxyhydroxide. In contrast to chromium, the primary retention mechanism of cadmium by iron monosulfide was lattice exchange. Surface adsorption to iron monosulfide and precipitation with sulfide on the iron monosulfide surface also contributed to the removal of aqueous cadmium. New phases of both chromium and cadmium were confirmed with transmission electron microscopy. The solution pH was an important factor in this research; it can change particle surface charge and metal species, hence affecting the removal of chromium, but not cadmium. Ferrous ions without FeS exhibited less Cr(VI) removal than with FeS, which might be owing to sulfides from FeS and the existence of the solid phase. Iron monosulfide exhibited higher removal efficiency for chromium and cadmium thin zero valent iron and other iron oxide minerals, and the synergistic effect of ferrous iron and sulfide appeared to cause this result.
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COLLEGE OF ENGINEERING (DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING)
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