Research
Publications
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(2013). Anaerobic Metabolism in Tidal Freshwater Wetlands: II. Effects of Plant Removal on Archaeal Microbial Communities . Estuaries and Coasts, 36 (3) , 471-481. http://dx.doi.org/10.1007/s12237-012-9496-9
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(2013). Direct and indirect effects of elevated atmospheric CO2 on net ecosystem production in a Chesapeake Bay tidal wetland. Global Change Biology, 19 (11) , 3368-3378. http://dx.doi.org/10.1111/gcb.12316
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(2013). Latitudinal Patterns of Herbivory in Mangrove Forests: Consequences of Nutrient Over-Enrichment. Ecosystems, 16 (7) , 1203-1215. http://dx.doi.org/10.1007/s10021-013-9678-8
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(2013). Stratification of Living Organisms in Ballast Tanks: How Do Organism Concentrations Vary as Ballast Water Is Discharged? . Environmental science & technology, 47 (9) , 4442-4448. http://dx.doi.org/10.1021/es400033z
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(2013). The North American mud crab Rhithropanopeus harrisii (Gould, 1841) in newly colonized Northern Baltic Sea: distribution and ecology . Aquatic Invasions, 8 (1) , 89-96. http://dx.doi.org/10.3391/ai.2013.8.1.10
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(2013). Counting at low concentrations: the statistical challenges of verifying ballast water discharge standards . Ecological Applications, 23 (2) , 339. http://dx.doi.org/10.1890/11-1639.1
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(2013). Northward expansion of the rhizocephalan Loxothylacus panopaei (Gissler, 1884) in the northwest Atlantic . Aquatic Invasions, 8 (3) , 347-353. http://dx.doi.org/10.3391/ai.2013.8.3.11
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(2013). Stronger biotic resistance in tropics relative to temperate zone: effects of predation on marine invasion dynamics . Ecology, 94 (6) , 1370-1377. http://dx.doi.org/10.1890/12-1382.1
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(2013). Nutrient Availability and Soil Organic Matter Decomposition Response to Prescribed Burns in Mid-Atlantic Brackish Tidal Marshes . Soil Science Society of America Journal, 77 (5) , 1852-1864. http://dx.doi.org/10.2136/sssaj2012.0272
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(2013). Mercury Methylation by Novel Microorganisms from New Environments . Environmental science & technology, 47 (20) , 11810-11820. http://dx.doi.org/10.1021/es403075t
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(2013). Activated Carbon Mitigates Mercury and Methylmercury Bioavailability in Contaminated Sediments. Environmental science & technology, 47 (22) , 13001-13010. http://dx.doi.org/10.1021/es4021074
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(2013). Evaluation of biochars and activated carbons for in situ remediation of sediments impacted with organics, mercury, and methylmercury . Environmental science & technology, 47 (23) , 13721-13729. http://dx.doi.org/10.1021/es403712q
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(2013). Effect of Dissolved Organic Matter Source and Character on Microbial Hg Methylation in Hg-S-DOM Solutions . Environmental science & technology, 47 (11) , 5746-5754. http://dx.doi.org/10.1021/es400414a
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(2013). Oceans and Marine Resources in a Changing Climate . Oceanography and Marine Biology (71-192) CRC Press-Taylor & Francis Group .