TY - JOUR
T1 - Cr(VI) Removal on fungal biomass of Neurospora crassa
T2 - The importance of dissolved organic carbons derived from the biomass to Cr(VI) reduction
AU - Hsu, L. C.
AU - Wang, S. L.
AU - Lin, Y. C.
AU - Wang, M. K.
AU - Chiang, P. N.
AU - Liu, J. C.
AU - Kuan, W. H.
AU - Chen, C. C.
AU - Tzou, Y. M.
PY - 2010/8/15
Y1 - 2010/8/15
N2 - Interactions of toxic Cr(VI) with renewable biomaterials are considered an important pathwayfor Cr(VI) removal in ecosystems. Biomaterials are susceptible to dissolution, and their dissolved derivatives may provide an alternative to surface-involved pathway for scavenging of Cr(VI). In this study, dissolved organic carbon (DOC) derived from Neurospora crassa biomass was investigated. The proportion of Cr(VI) reduction by DOC to that on biomass was determined to evaluate the importance of DOC to Cr(VI) reduction. A rapid increase in DOC concentration from 145.6 to 193.7 mg L-1 was observed when N. crassa- biomass was immersed in 0.01 M KCl solution at pH of 1-5, and polysaccharides, peptides, and glycoproteins with carboxyl, amide, and -NH functional groups, are the major compositions of DOC. On reaction of 96.2 μM Cr(VI) with N. crassa- biomass or DOC, it was estimated that DOC contributed ∼53.8-59.5% of the total Cr(VI) reduction on biomass in the dark. Illumination enhanced Cr(VI) reduction via photo-oxidation of biomass/DOC under aeration conditions, which formed superoxide for Cr(VI) reduction. At pH 1, photoinduced Cr(VI) reduction by DOC proceeded more rapidly than reduction on the biomass surface. However, at pH >3, with a decrease in Cr(VI) reduction by DOC, photon-excited biomass may become an important electron source for Cr(VI) photoreduction.
AB - Interactions of toxic Cr(VI) with renewable biomaterials are considered an important pathwayfor Cr(VI) removal in ecosystems. Biomaterials are susceptible to dissolution, and their dissolved derivatives may provide an alternative to surface-involved pathway for scavenging of Cr(VI). In this study, dissolved organic carbon (DOC) derived from Neurospora crassa biomass was investigated. The proportion of Cr(VI) reduction by DOC to that on biomass was determined to evaluate the importance of DOC to Cr(VI) reduction. A rapid increase in DOC concentration from 145.6 to 193.7 mg L-1 was observed when N. crassa- biomass was immersed in 0.01 M KCl solution at pH of 1-5, and polysaccharides, peptides, and glycoproteins with carboxyl, amide, and -NH functional groups, are the major compositions of DOC. On reaction of 96.2 μM Cr(VI) with N. crassa- biomass or DOC, it was estimated that DOC contributed ∼53.8-59.5% of the total Cr(VI) reduction on biomass in the dark. Illumination enhanced Cr(VI) reduction via photo-oxidation of biomass/DOC under aeration conditions, which formed superoxide for Cr(VI) reduction. At pH 1, photoinduced Cr(VI) reduction by DOC proceeded more rapidly than reduction on the biomass surface. However, at pH >3, with a decrease in Cr(VI) reduction by DOC, photon-excited biomass may become an important electron source for Cr(VI) photoreduction.
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U2 - 10.1021/es1017015
DO - 10.1021/es1017015
M3 - Article
C2 - 20669959
AN - SCOPUS:77956505962
SN - 0013-936X
VL - 44
SP - 6202
EP - 6208
JO - Environmental Science and Technology
JF - Environmental Science and Technology
IS - 16
ER -