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Effect of sediment size on bioleaching of heavy metals from contaminated sediments of Izmir Inner Bay 总被引:7,自引:0,他引:7
The effect of sediment size on metals bioleaching from bay sediments was investigated by using fine (< 45 μm), medium (45-300 μm), and coarse (300-2000 μm) size fractions of a sediment sample contaminated with Cr, Cu, Pb, and Zn. Chemical speciation of the metals in bulk and size fractions of sediment were studied before and after bioleaching. Microbial activity was provided with mixed cultures of Acidithiobacillus thiooxidans and Acidithiobacillus ferrooxidans. The bioleaching process was carried out in flask experiments for 48 days, by using 5% (W/V) of solid concentration in suspension. Bioleaching was found to be efficient for the removal of selected heavy metals from every size fraction of sediments, where the experiments with the smaller particles resulted in the highest solubilization ratios. At the end of the experimental period, Cr, Cu, Pb and Zn were solubilized to the ratios of 68%, 88%, 72%, and 91% from the fine sediment, respectively. Higher removal efficiencies can be explained by the larger surface area provided by the smaller particles. The changes in the chemical forms of metals were determined and most of the metal releases were observed from the reducible and organic fractions independent from grain size. Higher concentrations were monitored in the residual fraction after bioleaching period, suggesting they are trapped in this fraction, and cannot be solubilized under natural conditions. 相似文献
956.
Life history costs of olfactory status signalling in mice 总被引:4,自引:0,他引:4
L. M. Gosling S. C. Roberts E. A. Thornton M. J. Andrew 《Behavioral ecology and sociobiology》2000,48(4):328-332
Large body size confers a competitive advantage in animal contests but does not always determine the outcome. Here we explore
the trade-off between short-term achievement of high social status and longer-term life history costs in animals which vary
in competitive ability. Using laboratory mice, Mus musculus, as a model system, we show that small competitors can initially maintain dominance over larger males by increasing investment
in olfactory status signalling (scent-marking), but only at the cost of reduced growth rate and body size. As a result they
become more vulnerable to dominance reversals later in life. Our results also provide the first empirical information about
life history costs of olfactory status signals.
Received: 15 December 1999 / Revised: 6 June 2000 / Accepted: 24 June 2000 相似文献
957.
E. Steemann Nielsen 《Marine Biology》1978,46(3):185-189
Employing a special batch technique which involves extremely low concentrations of the alga Selenastrum capricornutum, it is shown that a growth rate of ca. 75% of optimum growth occurs at a concentration of 0.02 g-at N(NH4
+) l-1. The low concentrations of this N-source in the oligotrophic parts of the oceans (ca. 0.06 g-at l-1) thus give rise to a borderline deficiency. As the half-saturation constant (K
S) for growth was recorded at 0.05 g-at N(NO3
-), this ion can hardly be of much importance at the low concentrations present in these parts of the oceans. It is wrong to assert that N is the primary limiting nutrient. Phosphate also is found at concentrations giving rise to a borderline deficiency. 相似文献
958.
Summary. A diverse group of brown seaweeds produce bouquets of C11 metabolites, some of which act as pheromones that cue gamete release or attract sperm to eggs following release. We demonstrate
that these C11 metabolites and their degradation products also frequently and strongly deter feeding by the herbivorous amphipod Ampithoe longimana, but rarely by the herbivorous sea urchin Arbacia punctulata. Across the range of concentrations tested, seven of twelve C11 metabolites or mixtures that we tested deterred feeding by the amphipod, but only two of eleven deterred the sea urchin.
For those compounds where we could rigorously contrast the magnitude of deterrence against the amphipod with the magnitude
of deterrence against the urchin, the amphipod was deterred significantly more than the urchin by five of six metabolites.
Thus, C11 compounds were more frequently and more strongly deterrent to the amphipod than to the sea urchin. These findings for C11 metabolites conflict with previous investigations, where other classes of seaweed chemical defenses have been shown to deter
feeding by large mobile herbivores like urchins and fishes but to be relatively ineffective against mesograzers, especially
the species of amphipod that we used here. Our results suggest that C11 metabolites are unusual among the known seaweed chemical defenses in that they are especially effective against mesograzers,
which often consume seaweed spores, zygotes, and juveniles. The high concentrations of C11 metabolites in brown algal eggs could allow these defenses to be especially important in defending gametes, zygotes, or young
sporelings from herbivorous mesograzers.
Received 26 February 1998; accepted 9 April 1998. 相似文献
959.
960.
Andrea L. Jaeger Miehls Doran M. Mason Kenneth A. Frank Ann E. Krause Scott D. Peacor William W. Taylor 《Ecological modelling》2009,220(22):3194
Exotic species invasion is widely considered to affect ecosystem structure and function. Yet, few contemporary approaches can assess the effects of exotic species invasion at such an inclusive level. Our research presents one of the first attempts to examine the effects of an exotic species at the ecosystem level in a quantifiable manner. We used ecological network analysis (ENA) and a social network analysis (SNA) method called cohesion analysis to examine the effect of zebra mussel (Dreissena polymorpha) invasion on the Oneida Lake, New York, USA, food web. We used ENA to quantify ecosystem function through an analysis of food web carbon transfer that explicitly incorporated flow over all food web paths (direct and indirect). The cohesion analysis assessed ecosystem structure through an organization of food web members into subgroups of strongly interacting predators and prey. Our analysis detected effects of zebra mussel invasion throughout the entire Oneida Lake food web, including changes in trophic flow efficiency (i.e., carbon flow among trophic levels) and alterations of food web organization (i.e., paths of carbon flow) and ecosystem activity (i.e., total carbon flow). ENA indicated that zebra mussels altered food web function by shunting carbon from pelagic to benthic pathways, increasing dissipative flow loss, and decreasing ecosystem activity. SNA revealed the strength of zebra mussel perturbation as evidenced by a reorganization of food web subgroup structure, with a decrease in importance of pelagic pathways, a concomitant rise of benthic pathways, and a reorganization of interactions between top predator fish. Together, these analyses allowed for a holistic understanding of the effects of zebra mussel invasion on the Oneida Lake food web. 相似文献