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- Page 4 and 5: Project director David Gwyther Proj
- Page 9 and 10: CSIRO Land and Water Page 1 of 3 Ce
- Page 11 and 12: Page 3 of 3 Spadaro, D.A., Micevska
- Page 13 and 14: Centre for Environmental Contaminan
- Page 15: Centre for Environmental Contaminan
- Page 19 and 20: Tropical Futures: Mineral Program i
- Page 21 and 22: 1. Introduction The initial offshor
- Page 23 and 24: and minimize air oxidation. However
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- Page 27 and 28: Table 2: pH, redox (Eh), conductivi
- Page 29 and 30: 3..2 Characterisation of 0.45 !m fi
- Page 31 and 32: difference in metal dissolution bet
- Page 33 and 34: Concentration (mg/L) 400 350 300 25
- Page 35 and 36: depending on the actual chemical fo
- Page 37 and 38: Table 6: Major ions in 0.45 !m filt
- Page 39 and 40: seawater was very slow. Lead still
- Page 42 and 43: Appendix 1: Phase 1: Metal concentr
- Page 44 and 45: Appendix 3: Phase 1: Quality contro
- Page 46 and 47: Appendix 5: Phase 2: Metal concentr
- Page 48 and 49: Appendix 7: Phase 2: Net metals rel
- Page 51: Appendix 10 Biomass, Biodiversity a
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Appendix 11 Modelling the Dispersio
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Document control form Document draf
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1 EXECUTIVE SUMMARY This report qua
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2.2 Bathymetry High resolution digi
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Nautilus took samples of the sedime
- Page 166 and 167:
Prior to mining, the surface uncons
- Page 168 and 169:
Figure 3.1. Sediment bottom thickne
- Page 170 and 171:
Figure 3.3a. Sediment bottom thickn
- Page 172 and 173:
Figure 3.3c. Sediment bottom thickn
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Figure 3.3e. Sediment bottom thickn
- Page 177:
Appendix 12 Modelling the Dispersio
- Page 180 and 181:
Document control form Document draf
- Page 182 and 183:
1 EXECUTIVE SUMMARY The following r
- Page 184 and 185:
2 MODELLING METHODOLOGY AND DATA 2.
- Page 186 and 187:
Stochastic modelling was carried ou
- Page 188 and 189:
Figure 2.2. Temperature profile at
- Page 190 and 191:
Figure 2.3. Location Map showing th
- Page 192 and 193:
For these scenarios, the dual disch
- Page 194 and 195:
3.3 Affected areas and extents In T
- Page 196 and 197:
3.5 Sedimentation Thickness The 1:5
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Figure 3.3. The expected (or averag
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Figure 3.5 Bottom sedimentation pat
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French, D., Schuttenberg, H., Isaji
- Page 205:
Appendix 13 Prediction of Underwate
- Page 208 and 209:
Abstract This report presents the r
- Page 210 and 211:
List of Figures Figure 1. Geographi
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Figure 1. Geographical location of
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Figure 2. The corresponding broadba
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corresponding to the eight directio
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Depth (m) -1300 -1400 -1500 -1600 -
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3 Results Plots of the received lev
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Figure 8. Plots of predicted receiv
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Figure 10. Scatter plot of received
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* Noise levels attenuate rapidly wi
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4.2! Potential impacts on marine ma
- Page 230 and 231:
conditions (noting that for a signa
- Page 232 and 233:
slowly, or moves independently of a
- Page 234 and 235:
The noise is likely to be audible t
- Page 236 and 237:
Watkins, W.A. (1986). Whale reactio
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The Potential for Natural Disasters
- Page 241 and 242:
the coast of the Bismarck Sea. Thes
- Page 243:
A tsunami can be generated by any d
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Environmental Impact Statement Solw
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Environmental Impact Statement Solw
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Environmental Impact Statement Solw
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Environmental Impact Statement Solw
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Environmental Impact Statement Solw
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