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Liu Zhenyu Yang Fenglin Quan Xie Zhang Xiaohong 《Frontiers of Environmental Science & Engineering in China》2007,1(2):166-171
A QWASI model dependent on temperature is parameterized to describe the long-term fate of persistent organic pollutants (POPs)
in the Liao River. The model parameters, namely fugacity capacity, degradation rate, and transfer coefficient, are profoundly
affected by temperature. This model is used to simulate the fate of γ-hexachlorocyclohexane (γ-HCH) in the lower reaches of the Liao River from 1998 to 2008. Modeling results show that γ-HCH fugacity capacities in air, water, and sediment increase as temperature decreases, and the transfer and transformation
rate coefficients increase as temperature increases. The variations of transfer and transformation parameter D values depend on fugacity capacities, and transfer and transformation coefficients simultaneously. The performance of the
model is evaluated by comparing the predicted and observed concentrations in the water and sediment of the Liao River. The
predicted values agree well with the observed value in the order of magnitude, in most cases within the factor of 3. It is
believed that the model is appropriate for simulating the long term fate of POPs in the Liao River.
Translated from Environmental Science, 2006, 27(1): 121–125 [译自: 环境科学] 相似文献
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There are numerous reports of invertebrates that are visual mimics of ants, but no formal reports of mimicry of an ant, by
an ant. Two endemic Australian ants, Myrmecia fulvipes and Camponotus bendigensis are remarkably similar in colour and size; both are generally black but have red legs and golden gasters. The density and
hue of the pubescence of each ant's gaster are relatively uncommon in ants, but are very rare when combined with the black
forebody and red legs. The ants are similarly sized but are smaller than other species closely related to M. fulvipes. The range of C. bendigensis lies entirely within that of M. fulvipes, and both species excavate ground nests in open woodland. Finally, workers of both species are crepuscular and forage solitarily.
These data suggest that the relatively benign formicine C. bendigensis is a Batesian mimic of the formidable myrmeciine M. fulvipes.
Received: 9 August 1999 / Accepted in revised form: 22 December 1999 相似文献
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