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Andrews, J. T., Eberl, D. D., and Kristjansdottir,G. B., 2<strong>00</strong>6: An exploratory method to detect tephrasfrom quantitative XRD scans: Examples from Icelandand East Greenland marine sediments. The Holocene, 16(8): 1035–1042.Andrews, J. T., Jennings, A. E., Moros, M., Hillaire-Marcel, C., and Eberl, D. D., 2<strong>00</strong>6: Is there a pervasiveHolocene ice-rafted debris (IRD) signal in the northernNorth Atlantic? The answer appears to be either no, orit depends on the proxy! PAGES Newsletter, 14: 7–9.Barber, L. B., Keefe, S. H., Antweiler, R. C., Taylor, H. E.,and Wass, R. D., 2<strong>00</strong>6: Accumulation <strong>of</strong> contaminantsin fish from wastewater treatment wetlands.Environmental Science & Technology, 40 (2): 603–611.Barber, L. B., Murphy, S. F., Verplanck, P. L., Sandstrom,M. W., Taylor, H. E., and Furlong, E. T., 2<strong>00</strong>6:Chemical loading into surface water along a hydrological,biogeochemical, and land use gradient: A holisticwatershed approach Environmental Science &Technology, 40 (2): 475–486.Barclay, D. J., Barclay, J. L., Calkin, P. E., and Wiles, G. C.,2<strong>00</strong>6: A revised and extended Holocene glacial history<strong>of</strong> Icy Bay, southern Alaska, U.S.A. Arctic, Antarctic,and Alpine Research, 38 (2): 153–162.Barger, N. N., Herrick, J. E., Van Zee, J. W., and Belnap,J., 2<strong>00</strong>6: Impacts <strong>of</strong> biological soil crust disturbance andcomposition on C and N losses from water erosion.Biogeochemistry, 77: 247-263.Barrett, J. E., Virginia, R. A., Hopkins, D. W., Aislabie, J.,Bargagli, R., Bockheim, J. G., Campbell, I. B., Lyons,W. B., Moorhead, D. L., Nkem, J. N., Sletten, R. S.,Steltzer, H., Wall, D. H., and Wallenstein, M. D.,2<strong>00</strong>6: Terrestrial ecosystem processes <strong>of</strong> Victoria Land,Antarctica. Soil Biology & Biochemistry, 38 (10): Sp. Iss.SI. 3019–3034.Bay, R. C., Bramall, N. E., Price, P. B., Clow, G. D., Hawley,R. L., Udisti, R., and Castellano, E., 2<strong>00</strong>6: Globallysynchronous ice core volcanic tracers and abrupt coolingduring the last glacial period. Journal <strong>of</strong> GeophysicalResearch–Atmospheres, 111 (D11): article D11108.Behrendt, J. C., 2<strong>00</strong>6: The U.S. Antarctic OversnowGeophysical–Glaciological Research Program <strong>of</strong> theInternational Geophysical Year (IGY) 1957–58, from theview <strong>of</strong> a research scientist participant. <strong>Report</strong>s <strong>of</strong>Marine and Polar Research, Alfred Wegener Institute,Bremerhaven.Behrendt, J. C., Finn, C. A., Morse, D. L., andBlankenship, D. D., 2<strong>00</strong>6: Negative magnetic anomalyover Mt. Resnik, a subaerially erupted volcanic peakbeneath the West Antarctic Ice Sheet, partially constrainsthe ages <strong>of</strong> subglacial volcanism in the WestAntarctic Rift System. Terra Antarctica, 203–213.John Murgel (<strong>INSTAAR</strong>) appliestreatment solutions to an experimentalplot in the AppistokiValley, Glacier National Park,Montana, June 2<strong>00</strong>6. His workwas part <strong>of</strong> a project funded bythe National Park Service toestablish critical loads for anthropogenicN deposition. Photo: BillBowman (<strong>INSTAAR</strong>).PUBLICATIONS | 71
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INSTAARInstitute of Arctic and Alpi
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BiennialReport2005-2006Institute of
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INSTAAR: An Earth andEnvironmental
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Where in the world is INSTAAR? Acti
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