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Thesis for the Degree of Doctor of Philosophy - DTU Orbit

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atio <strong>of</strong> 1.1 x 10 -11 , 125 I tracer (Amersham Pharmacia Biotech, Little Chalfont, Buckinghamshire,UK),<br />

127 I carrier (Woodward iodine, MICAL Specialty Chemicals, New Jersey) and Bio-Rad AG1- × 4<br />

anion exchange resin (Bio-Rad laboratories, Richmond, CA) were used.<br />

Fig. 1 Sampling locations <strong>for</strong> Lakes collected from Denmark and Sweden<br />

Separation <strong>of</strong> iodine species as iodide and iodate. A modified version <strong>of</strong> <strong>the</strong> analytical method <strong>of</strong><br />

Hou et al. (2007) was used <strong>for</strong> <strong>the</strong> separation <strong>of</strong> different species <strong>of</strong> iodine. Bio-Rad AG1-×4 strongly<br />

basic anion exchange resin, 50–100 mesh, converted to NO3 - <strong>for</strong>m was packed in a column <strong>of</strong> ø 1.0 ×<br />

20 cm. 100-300 mL <strong>of</strong> lake water spiked with about 50 Bq <strong>of</strong> 125 I - tracer was loaded onto <strong>the</strong> column at<br />

a flow rate <strong>of</strong> 1 ml min -1 , and <strong>the</strong> column was washed with 30 mL <strong>of</strong> distilled water and <strong>the</strong>n 50 mL <strong>of</strong><br />

4

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