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Proceedings of the National Academy of Sciences of the United States of America|May 29, 2007
The shifting baseline of northern fur seal ecology in the northeast Pacific OceanSeth D Newsome, Michael A Etnier, Diane Gifford-Gonzalez, et al.Journal of Environmental Quality|July 29, 2024
Amendments promote Douglas-fir survival on Formosa Mine tailingsMark G Johnson, David Olszyk, Michael Bollman, et al.Environmental Toxicology and Chemistry|September 22, 2021
Focused Microbiome Shifts in Reconstructed Wetlands Correlated with Elevated Copper Concentrations Originating from Micronized Copper Azole-Treated WoodJay R Reichman, Mark G Johnson, Paul T Rygiewicz, et al.Chemosphere|May 6, 2018
Remediation of an acidic mine spoil: Miscanthus biochar and lime amendment affects metal availability, plant growth, and soil enzyme activityJeffrey M Novak, James A Ippolito, Thomas F Ducey, et al.Agrosystems, Geosciences & Environment|January 25, 2024
Designing amendments to improve plant performance for mine tailings revegetationMark G Johnson, David M Olszyk, Tamotsu Shiroyama, et al.Environmental Science & Technology|August 5, 2018
Douglas-Fir ( Pseudotsuga menziesii (Mirb.) Franco) Transcriptome Profile Changes Induced by Diesel Emissions Generated with CeO2 Nanoparticle Fuel Borne CatalystJay R Reichman, Paul T Rygiewicz, Mark G Johnson, et al.Biochar|February 7, 2022
Microbial response to designer biochar and compost treatments for mining impacted soilsThomas F Ducey, Jeffrey M Novak, Gilbert C Sigua, et al.Applied Soil Ecology : a Section of Agriculture, Ecosystems & Environment|August 29, 2022
Phytostabilization of acidic mine tailings with biochar, biosolids, lime, and locally-effective microbes: Do amendment mixtures influence plant growth, tailing chemistry, and microbial composition?Kristin M Trippe, Viola A Manning, Catherine L Reardon, et al.Pageof 6