Benjamin P. Colman, Ph.D. - Publications

Affiliations: 
Duke University, Durham, NC 
Website:
http://benjamincolman.weebly.com/

37 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2023 Perrotta BG, Simonin M, Colman BP, Anderson SM, Baruch E, Castellon BT, Matson CW, Bernhardt ES, King RS. Chronic Engineered Nanoparticle Additions Alter Insect Emergence and Result in Metal Flux from Aquatic Ecosystems into Riparian Food Webs. Environmental Science & Technology. PMID 37200151 DOI: 10.1021/acs.est.3c00620  0.745
2020 Perrotta B, Simonin M, Back JA, Anderson SM, Avellan A, Bergemann CM, Castellon BT, Colman B, Lowry GV, Matson CW, Bernhardt ES, King RS. Copper and gold nanoparticles increase nutrient excretion rates of primary consumers. Environmental Science & Technology. PMID 32672035 DOI: 10.1021/Acs.Est.0C02197.S001  0.764
2020 Avellan A, Simonin M, Anderson SM, Geitner NK, Bossa N, Spielman-Sun E, Bernhardt ES, Castellon BT, Colman BP, Cooper JL, Ho M, Hochella MF, Hsu-Kim H, Inoue S, King RS, et al. Differential Reactivity of Copper- and Gold-Based Nanomaterials Controls Their Seasonal Biogeochemical Cycling and Fate in a Freshwater Wetland Mesocosm. Environmental Science & Technology. PMID 31951397 DOI: 10.1021/Acs.Est.9B05097  0.757
2019 Ward CS, Pan JF, Colman BP, Wang Z, Gwin CA, Williams TC, Ardis A, Gunsch CK, Hunt DE. Conserved microbial toxicity responses for acute and chronic silver nanoparticle treatments in wetland mesocosms. Environmental Science & Technology. PMID 30776221 DOI: 10.1021/Acs.Est.8B06654  0.491
2018 Simonin M, Colman BP, Tang W, Judy JD, Anderson SM, Bergemann CM, Rocca JD, Unrine JM, Cassar N, Bernhardt ES. Plant and Microbial Responses to Repeated Cu(OH) Nanopesticide Exposures Under Different Fertilization Levels in an Agro-Ecosystem. Frontiers in Microbiology. 9: 1769. PMID 30108580 DOI: 10.3389/Fmicb.2018.01769  0.742
2018 Colman BP, Baker L, King RS, Matson CW, Unrine JM, Marinakos S, Gorka D, Bernhardt ES. Dosing, not the dose: comparing chronic and pulsed silver nanoparticle exposures. Environmental Science & Technology. PMID 30075078 DOI: 10.1021/Acs.Est.8B01700  0.659
2018 Simonin M, Colman BP, Anderson SM, King RS, Ruis MT, Avellan A, Bergemann CM, Perrotta BG, Geitner NK, Ho M, de la Barrera B, Unrine JM, Lowry GV, Richardson CJ, Wiesner MR, et al. Engineered nanoparticles interact with nutrients to intensify eutrophication in a wetland ecosystem experiment. Ecological Applications : a Publication of the Ecological Society of America. PMID 29939451 DOI: 10.1002/Eap.1742  0.779
2018 Yuan L, Richardson C, Ho M, Willis CW, Colman BP, Wiesner MR. Stress Responses of Aquatic Plants to Silver Nanoparticles. Environmental Science & Technology. PMID 29381864 DOI: 10.1021/Acs.Est.7B05837  0.497
2017 Stegemeier JP, Colman BP, Schwab F, Wiesner MR, Lowry GV. Uptake and Distribution of Silver in the Aquatic Plant Landoltia punctata (Duckweed) Exposed to Silver and Silver Sulfide Nanoparticles. Environmental Science & Technology. PMID 28383882 DOI: 10.1021/Acs.Est.6B06491  0.422
2016 Gorka DE, Jeger JL, Zhang H, Ma Y, Colman BP, Bernhardt ES, Liu J. Phytotoxicity of soluble graphitic nanofibers to model plant species. Environmental Toxicology and Chemistry / Setac. PMID 27153481 DOI: 10.1002/Etc.3478  0.604
2016 Baalousha M, Yang Y, Vance ME, Colman BP, McNeal S, Xu J, Blaszczak J, Steele M, Bernhardt E, Hochella MF. Outdoor urban nanomaterials: The emergence of a new, integrated, and critical field of study. The Science of the Total Environment. 557: 740-753. PMID 27046139 DOI: 10.1016/J.Scitotenv.2016.03.132  0.716
2015 Gorka DE, Osterberg JS, Gwin C, Colman BP, Meyer J, Berhardt ES, Gunsch CK, Di Giulio RT, Liu J. Reducing Environmental Toxicity of Silver Nanoparticles Through Shape Control. Environmental Science & Technology. PMID 26146787 DOI: 10.1021/Acs.Est.5B01711  0.506
2015 Stegemeier JP, Schwab F, Colman BP, Webb SM, Newville M, Lanzirotti A, Winkler C, Wiesner MR, Lowry GV. Speciation Matters: Bioavailability of Silver and Silver Sulfide Nanoparticles to Alfalfa (Medicago sativa). Environmental Science & Technology. PMID 26106801 DOI: 10.1021/Acs.Est.5B01147  0.468
2015 Park SY, Chung J, Colman BP, Matson CW, Kim Y, Lee BC, Kim PJ, Choi K, Choi J. Ecotoxicity of bare and coated silver nanoparticles in the aquatic midge, Chironomus riparius. Environmental Toxicology and Chemistry / Setac. PMID 25892495 DOI: 10.1002/Etc.3019  0.456
2015 Yang Y, Colman BP, Bernhardt ES, Hochella MF. Importance of a nanoscience approach in the understanding of major aqueous contamination scenarios: case study from a recent coal ash spill. Environmental Science & Technology. 49: 3375-82. PMID 25688977 DOI: 10.1021/Es505662Q  0.634
2015 Bone AJ, Matson CW, Colman BP, Yang X, Meyer JN, Di Giulio RT. Silver nanoparticle toxicity to Atlantic killifish (Fundulus heteroclitus) and Caenorhabditis elegans: a comparison of mesocosm, microcosm, and conventional laboratory studies. Environmental Toxicology and Chemistry / Setac. 34: 275-82. PMID 25393776 DOI: 10.1002/Etc.2806  0.446
2014 Yelenik SG, Colman BP, Levine JM, HilleRisLambers J. A mechanistic study of plant and microbial controls over R* for nitrogen in an annual grassland. Plos One. 9: e106059. PMID 25170943 DOI: 10.1371/Journal.Pone.0106059  0.345
2014 Colman BP, Espinasse B, Richardson CJ, Matson CW, Lowry GV, Hunt DE, Wiesner MR, Bernhardt ES. Emerging contaminant or an old toxin in disguise? Silver nanoparticle impacts on ecosystems. Environmental Science & Technology. 48: 5229-36. PMID 24693948 DOI: 10.1021/Es405454V  0.654
2013 Levard C, Hotze EM, Colman BP, Dale AL, Truong L, Yang XY, Bone AJ, Brown GE, Tanguay RL, Di Giulio RT, Bernhardt ES, Meyer JN, Wiesner MR, Lowry GV. Sulfidation of silver nanoparticles: natural antidote to their toxicity. Environmental Science & Technology. 47: 13440-8. PMID 24180218 DOI: 10.1021/Es403527N  0.678
2013 Ardón M, Morse JL, Colman BP, Bernhardt ES. Drought-induced saltwater incursion leads to increased wetland nitrogen export. Global Change Biology. 19: 2976-85. PMID 23749653 DOI: 10.1111/Gcb.12287  0.686
2013 Colman BP, Arnaout CL, Anciaux S, Gunsch CK, Hochella MF, Kim B, Lowry GV, McGill BM, Reinsch BC, Richardson CJ, Unrine JM, Wright JP, Yin L, Bernhardt ES. Low concentrations of silver nanoparticles in biosolids cause adverse ecosystem responses under realistic field scenario. Plos One. 8: e57189. PMID 23468930 DOI: 10.1371/Journal.Pone.0057189  0.687
2013 Colman BP, Schimel JP. Drivers of microbial respiration and net N mineralization at the continental scale Soil Biology and Biochemistry. 60: 65-76. DOI: 10.1016/J.Soilbio.2013.01.003  0.364
2012 Yin L, Colman BP, McGill BM, Wright JP, Bernhardt ES. Effects of silver nanoparticle exposure on germination and early growth of eleven wetland plants. Plos One. 7: e47674. PMID 23091638 DOI: 10.1371/Journal.Pone.0047674  0.673
2012 Bone AJ, Colman BP, Gondikas AP, Newton KM, Harrold KH, Cory RM, Unrine JM, Klaine SJ, Matson CW, Di Giulio RT. Biotic and abiotic interactions in aquatic microcosms determine fate and toxicity of Ag nanoparticles: part 2-toxicity and Ag speciation. Environmental Science & Technology. 46: 6925-33. PMID 22680837 DOI: 10.1021/Es204683M  0.489
2012 Colman BP, Wang SY, Auffan M, Wiesner MR, Bernhardt ES. Antimicrobial effects of commercial silver nanoparticles are attenuated in natural streamwater and sediment. Ecotoxicology (London, England). 21: 1867-77. PMID 22569948 DOI: 10.1007/S10646-012-0920-5  0.668
2012 Lowry GV, Espinasse BP, Badireddy AR, Richardson CJ, Reinsch BC, Bryant LD, Bone AJ, Deonarine A, Chae S, Therezien M, Colman BP, Hsu-Kim H, Bernhardt ES, Matson CW, Wiesner MR. Long-term transformation and fate of manufactured ag nanoparticles in a simulated large scale freshwater emergent wetland. Environmental Science & Technology. 46: 7027-36. PMID 22463850 DOI: 10.1021/Es204608D  0.643
2012 Unrine JM, Colman BP, Bone AJ, Gondikas AP, Matson CW. Biotic and abiotic interactions in aquatic microcosms determine fate and toxicity of Ag nanoparticles. Part 1. Aggregation and dissolution. Environmental Science & Technology. 46: 6915-24. PMID 22452441 DOI: 10.1021/Es204682Q  0.465
2012 Kim B, Murayama M, Colman BP, Hochella MF. Characterization and environmental implications of nano- and larger TiO(2) particles in sewage sludge, and soils amended with sewage sludge. Journal of Environmental Monitoring : Jem. 14: 1129-37. PMID 22349742 DOI: 10.1039/C2Em10809G  0.431
2011 Yin L, Cheng Y, Espinasse B, Colman BP, Auffan M, Wiesner M, Rose J, Liu J, Bernhardt ES. More than the ions: the effects of silver nanoparticles on Lolium multiflorum. Environmental Science & Technology. 45: 2360-7. PMID 21341685 DOI: 10.1021/Es103995X  0.684
2010 Bernhardt ES, Colman BP, Hochella MF, Cardinale BJ, Nisbet RM, Richardson CJ, Yin L. An ecological perspective on nanomaterial impacts in the environment. Journal of Environmental Quality. 39: 1954-65. PMID 21284292 DOI: 10.2134/Jeq2009.0479  0.638
2010 Hillerislambers J, Yelenik SG, Colman BP, Levine JM. California annual grass invaders: the drivers or passengers of change? The Journal of Ecology. 98: 1147-1156. PMID 20852668 DOI: 10.1111/J.1365-2745.2010.01706.X  0.324
2010 Hofmockel KS, Fierer N, Colman BP, Jackson RB. Amino acid abundance and proteolytic potential in North American soils. Oecologia. 163: 1069-78. PMID 20349250 DOI: 10.1007/S00442-010-1601-9  0.382
2008 Colman BP, Fierer N, Schimel JP. Abiotic nitrate incorporation, anaerobic microsites, and the ferrous wheel Biogeochemistry. 91: 223-227. DOI: 10.1007/S10533-008-9281-9  0.309
2007 Colman BP, Fierer N, Schimel JP. Abiotic nitrate incorporation in soil: Is it real? Biogeochemistry. 84: 161-169. DOI: 10.1007/S10533-007-9111-5  0.354
2006 Fierer N, Colman BP, Schimel JP, Jackson RB. Predicting the temperature dependence of microbial respiration in soil: A continental-scale analysis Global Biogeochemical Cycles. 20. DOI: 10.1029/2005Gb002644  0.315
2004 Nadelhoffer KJ, Colman BP, Currie WS, Magill A, Aber JD. Decadal-scale fates of 15N tracers added to oak and pine stands under ambient and elevated N inputs at the Harvard Forest (USA) Forest Ecology and Management. 196: 89-107. DOI: 10.1016/J.Foreco.2004.03.014  0.322
2002 Currie WS, Nadelhoffer KJ, Colman B. Long-term movement of 15N tracers into fine woody debris under chronically elevated N inputs Plant and Soil. 238: 313-323. DOI: 10.1023/A:1014431304760  0.305
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