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Our observation shows that there is a significant increase in IN concentrations with supersaturation over ice.
There was a distinct spike in concentrations of micropollutants downstream of the lagoon during discharge and a subsequent reduction in concentrations with time.
Concentrations of 1-hydroxypyrene and 1-hydroxyphenanthrene in bile, both, showed an increase in concentrations with increasing exposure time (Fig. 1).
When explaining variation in concentrations with linear modeling, aspect was statistically significant for all of the 15 elements, height was statistically significant for 12 elements, and specimen mass was significant for 6 elements.
Thus it can be used in concentrations with oxygen that have a lower risk of hypoxia.
The elements, Cr, Ag and Rb showed variations in concentrations with normal, were not attained the minimal significance of p≤0.05.
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In raw sterilized sludge with 5% solids, seeded enteric bacteria initially increased in concentration with dewatering.
A moderate increase in concentration with depth was observed for Cu and Zn.
Components such as Al, Cu, Sb and Cr increase in concentration with increased discharge.
The further decrease in concentration with time was marginal compare to the initial phase of degradation study.
In addition, both EPR and PP concentration are detected within this layer (9 12 μm), showing decreases in concentration with depth.
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