TY - JOUR
T1 - Negative effects of humic acid addition on phytoremediation of pyrene-contaminated sediments by mangrove seedlings
AU - Ke, L.
AU - Wong, T.W.Y.
AU - Wong, A. H Y
AU - Wong, Y. S.
AU - Tam, N. F Y
PY - 2003/9
Y1 - 2003/9
N2 - Vegetated (with Kandelia candel seedlings) and non-vegetated mangrove microcosms were employed to remove pyrene from contaminated sediments, and the effects of adding 6.7% humic acid (HA) on such removal were investigated. At the end of 6-month treatment, residual pyrene concentrations in surface sediments (0-2 cm) of the contaminated microcosms reduced from an initial 5.82 to 0.63 μgg-1 dw, and the reduction was less in HA amended microcosms with the residual pyrene concentration remained at 3.12 μgg-1 dw. The pyrene removal percentages in microcosms with HA amendment were 29% for surface aerobic sediments and 41% for bottom (anaerobic) sediments, while the respective removal percentages in microcosms without HA amendment were 89% (surface sediments) and 53% (bottom sediments). Microcosms planted with K. candel seedlings had a significantly higher pyrene removal when compared to the non-vegetated ones, and the average removal percentages were 70.9% and 61.4%, respectively. However, when humic acid was added, no significant difference was found between vegetated and non-vegetated microcosms in pyrene removal, both had less than 40% removal, probably because plant growth in humic acid amended contaminated microcosms, in terms of total biomass, was reduced by 50%). Roots of K. candel could accumulate pyrene from contaminated microcosms, and pyrene concentrations in roots harvested from microcosms with and without humic acid addition were 6.01 and 3.46 μgg-1 dw, respectively. These results suggest that the addition of HA to contaminated sediments decreased the mangrove microcosm's ability to remove pyrene as pyrene was more tightly bound to the organic matter and plant growth was reduced. © 2003 Elsevier Ltd. All rights reserved.
AB - Vegetated (with Kandelia candel seedlings) and non-vegetated mangrove microcosms were employed to remove pyrene from contaminated sediments, and the effects of adding 6.7% humic acid (HA) on such removal were investigated. At the end of 6-month treatment, residual pyrene concentrations in surface sediments (0-2 cm) of the contaminated microcosms reduced from an initial 5.82 to 0.63 μgg-1 dw, and the reduction was less in HA amended microcosms with the residual pyrene concentration remained at 3.12 μgg-1 dw. The pyrene removal percentages in microcosms with HA amendment were 29% for surface aerobic sediments and 41% for bottom (anaerobic) sediments, while the respective removal percentages in microcosms without HA amendment were 89% (surface sediments) and 53% (bottom sediments). Microcosms planted with K. candel seedlings had a significantly higher pyrene removal when compared to the non-vegetated ones, and the average removal percentages were 70.9% and 61.4%, respectively. However, when humic acid was added, no significant difference was found between vegetated and non-vegetated microcosms in pyrene removal, both had less than 40% removal, probably because plant growth in humic acid amended contaminated microcosms, in terms of total biomass, was reduced by 50%). Roots of K. candel could accumulate pyrene from contaminated microcosms, and pyrene concentrations in roots harvested from microcosms with and without humic acid addition were 6.01 and 3.46 μgg-1 dw, respectively. These results suggest that the addition of HA to contaminated sediments decreased the mangrove microcosm's ability to remove pyrene as pyrene was more tightly bound to the organic matter and plant growth was reduced. © 2003 Elsevier Ltd. All rights reserved.
KW - Kandelia candel
KW - Organic matter
KW - Polycyclic aromatic hydrocarbons
KW - Pyrene-degrading bacteria
KW - Remediation
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U2 - 10.1016/S0045-6535(03)00498-3
DO - 10.1016/S0045-6535(03)00498-3
M3 - RGC 21 - Publication in refereed journal
C2 - 12867191
SN - 0045-6535
VL - 52
SP - 1581
EP - 1591
JO - Chemosphere
JF - Chemosphere
IS - 9
ER -