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The matching peaks suggested that nitrate, like chloride, was leaching from the soil without being taken up by plants or microbes.
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No water was leached from the pots during the experiment.
After exposure experiments radiolabeled silver was leached from the ISS using HCl.
The glycerol was leached from the scaffolds, leaving a similar porous structure at the micrometer scale but different topographies at the nanoscale.
In this study occurred the leaching of P in columns of 20 cm, in which the greatest amount of P was leached from the inorganic source when compared with the organic sources with lower expression.
This is supported by the leachate data from unplanted soil, which showed that by granulating the urea with BC, less mineral N (both ammonium and nitrate) was leached from the soil profile as compared with straight urea.
The NO−3-N was leached from the soil column quite quickly on Day 1 of incubation while the loss of NH+4-N decreased slightly from Day 1 until the end of the measurement.
This indicates that the pollutant (Cu) was leached from the AF paint in different concentrations creating a clear disturbance gradient.
The sodium chloride was leached from the scaffolds by immersion in water, yielding macroporous PLG scaffolds.
Sodium nitrate was leached from a cement-encapsulating form more than an order of magnitude faster than from the polymeric matrix under the same leaching conditions.
Neither calcium nor magnesium was leached from the relatively intact cell walls (for example, see high recoveries at high pH and low temperatures in Figure 3d).
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