76 Publications (Page 3 of 4)
2017
Transport and retention of biochar nanoparticles in a paddy soil under environmentally-relevant solution chemistry conditionsChen, Ming⋅Wang, Dengjun⋅Yang, Fan⋅Xu, Xiaoyun⋅Xu, Nan and Cao, XindeEnvironmental Pollution, vol. 230, pp. 540–549.
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2016
Detachment of fullerene nC60 nanoparticles in saturated porous media under flow/stop-flow conditions: Column experiments and mechanistic explanationsWang, Z.⋅Wang, D.⋅Li, B.⋅Wang, J.⋅Li, T.⋅Zhang, M.⋅Huang, Y. and Shen, C.Environmental Pollution, vol. 213, pp. 698-709.
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Differential antimicrobial activity of silver nanoparticles to bacteria Bacillus subtilis and Escherichia coli, and toxicity to crop plant Zea mays and beneficial B. subtilis-inoculated Z. maysDoody, M.A.⋅Wang, D.⋅Bais, H.P. and Jin, Y.Journal of Nanoparticle Research, vol. 18.
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Effects of low-molecular-weight organic acids on the dissolution of hydroxyapatite nanoparticlesWang, D.⋅Xie, Y.⋅Jaisi, D.P. and Jin, Y.Environmental Science: Nano, vol. 3, pp. 768-779.
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Evaluation of water quality in surface water and shallow groundwater: a case study of a rare earth mining area in southern Jiangxi Province, ChinaHao, X.⋅Wang, D.⋅Wang, P.⋅Wang, Y. and Zhou, D.Environmental Monitoring and Assessment, vol. 188, pp. 1-11.
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Impact of Redox Reactions on Colloid Transport in Saturated Porous Media: An Example of Ferrihydrite Colloids Transport in the Presence of SulfideLiao, P.⋅Yuan, S. and Wang, D.Environmental Science and Technology, vol. 50, pp. 10968-10977.
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2015
Cotransport of hydroxyapatite nanoparticles and hematite colloids in saturated porous media: Mechanistic insights from mathematical modeling and phosphate oxygen isotope fractionationWang, Dengjun⋅Wang, Dengjun⋅Jin, Yan⋅Jin, Yan⋅Jaisi, Deb P. and Jaisi, Deb PJournal of Contaminant Hydrology, vol. 182, pp. 194–209.
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Effect of Size-Selective Retention on the Cotransport of Hydroxyapatite and Goethite Nanoparticles in Saturated Porous MediaWang, Dengjun⋅Wang, D.⋅Jin, Y.⋅Jin, Yan⋅Jaisi, D.P. and Jaisi, Deb PEnvironmental Science and Technology, vol. 49, pp. 8461-8470.
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Transport and retention of polyvinylpyrrolidone-coated silver nanoparticles in natural soilsWang, D.⋅Jaisi, D.P.⋅Yan, J.⋅Jin, Y. and Zhou, D.Vadose Zone Journal, vol. 14, pp. 2-13.
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2014
Hyperexponential and nonmonotonic retention of polyvinylpyrrolidone-coated silver nanoparticles in an UltisolWang, Dengjun⋅Wang, D.⋅Ge, L.⋅Ge, Liqiang⋅He, Jianzhou⋅He, J.⋅Zhang, Wei⋅Zhang, W.⋅Jaisi, D.P.⋅Jaisi, Deb P⋅Zhou, D. and Zhou, DongmeiJournal of Contaminant Hydrology, vol. 164, pp. 35-48.
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Laboratory assessment of the mobility of water-dispersed engineered nanoparticles in a red soil (Ultisol)Wang, D.⋅Su, C.⋅Zhang, W.⋅Hao, X.⋅Cang, L.⋅Wang, Y. and Zhou, D.Journal of Hydrology, vol. 519, pp. 1677-1687.
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Transport of fluorescently labeled hydroxyapatite nanoparticles in saturated granular media at environmentally relevant concentrations of surfactantsWang, D.⋅Su, C.⋅Liu, C. and Zhou, D.Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 457, pp. 58-66.
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2013
Antagonistic effects of humic acid and iron oxyhydroxide grain-coating on biochar nanoparticle transport in saturated sandWang, D.⋅Zhang, W. and Zhou, D.Environmental Science and Technology, vol. 47, pp. 5154-5161.
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Corrigendum to "Facilitated transport of Cu with hydroxyapatite nanoparticles in saturated sand: Effects of solution ionic strength and composition" [Water Research 45 (2011) 5905-5915]Wang, D.⋅Paradelo, M.⋅Bradford, S.A.⋅Peijnenburg, W.J.G.M.⋅Chu, L. and Zhou, D.Water Research, vol. 47, pp. 954.
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Modeling the transport of TiO2 nanoparticle aggregates in saturated and unsaturated granular media: Effects of ionic strength and pHFang, J.⋅Xu, M.-J.⋅Wang, D. J.⋅Wen, B. and Han, J.-Y.Water Research, vol. 47, pp. 1399-1408.
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Transport of biochar particles in saturated granular media: Effects of pyrolysis temperature and particle sizeWang, D.⋅Zhang, W.⋅Hao, X. and Zhou, D.Environmental Science and Technology, vol. 47, pp. 821-828.
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2012
Erratum: Facilitated transport of copper with hydroxyapatite nanoparticles in saturated sand (Soil Science Society of America Journal 76 (375-388) DOI: 10.2136/sssaj2011.0203)Wang, D.⋅Bradford, S.A.⋅Paradelo, M.⋅Peijnenburg, W.J.G.M. and Zhou, D.Soil Science Society of America Journal, vol. 76, pp. 2344.
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Facilitated transport of copper with hydroxyapatite nanoparticles in saturated sandWang, Dengjun⋅Wang, D.⋅Bradford, S.A.⋅Bradford, Scott⋅Paradelo, Marcos⋅Paradelo, M.⋅Peijnenburg, W.J.G.M.⋅Peijnenburg, Willie⋅Zhou, D. and Zhou, DongmeiSoil Science Society of America Journal, vol. 76, pp. 375-388.
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Humic acid facilitates the transport of ARS-labeled hydroxyapatite nanoparticles in iron oxyhydroxide-coated sandWang, Dengjun⋅Wang, D.⋅Bradford, S.A.⋅Bradford, Scott A⋅Harvey, Ronald W⋅Harvey, R.W.⋅Gao, B.⋅Gao, Bin⋅Cang, Long⋅Cang, L.⋅Zhou, D. and Zhou, DongmeiEnvironmental Science and Technology, vol. 46, pp. 2738-2745.
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Transport of ARS-labeled hydroxyapatite nanoparticles in saturated granular media is influenced by surface charge variability even in the presence of humic acidWang, D.⋅Bradford, S.A.⋅Harvey, R.W.⋅Hao, X. and Zhou, D.Journal of Hazardous Materials, vol. 229-230, pp. 170-176.
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2011
Calcium and magnesium enhance arsenate rhizotoxicity and uptake in Triticum aestivumWang, P.⋅Wang, Peng⋅Zhou, D.⋅Zhou, Dongmei⋅Weng, Nanyan⋅Weng, N.⋅Wang, Dengjun⋅Wang, D.⋅Peijnenburg, W.J. and Peijnenburg, Willie JEnvironmental Toxicology and Chemistry, vol. 30, pp. 1642-1648.
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Facilitated transport of Cu with hydroxyapatite nanoparticles in saturated sand: Effects of solution ionic strength and compositionWang, Dengjun⋅Wang, D.⋅Paradelo, M.⋅Paradelo, Marcos⋅Bradford, S.A.⋅Bradford, Scott A⋅Peijnenburg, Willie J⋅Peijnenburg, W.J.G.M.⋅Chu, Lingyang⋅Chu, L.⋅Zhou, D. and Zhou, DongmeiWater Research, vol. 45, pp. 5905-5915.
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Transport and re-entrainment of soil colloids in saturated packed column: Effects of pH and ionic strengthZhou, D.⋅Wang, D.⋅Cang, L.⋅Hao, X. and Chu, L.Journal of Soils and Sediments, vol. 11, pp. 491-503.
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Transport behavior of humic acid-modified nano-hydroxyapatite in saturated packed column: Effects of Cu, ionic strength, and ionic compositionWang, D.⋅Wang, Dengjun⋅Chu, L.⋅Chu, Lingyang⋅Paradelo, M.⋅Paradelo, Marcos⋅Peijnenburg, W.J.G.M.⋅Peijnenburg, Willie J⋅Wang, Yujun⋅Wang, Y.⋅Zhou, D. and Zhou, DongmeiJournal of Colloid and Interface Science, vol. 360, pp. 398-407.
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Transport of hydroxyapatite nanoparticles in saturated packed column: Effects of humic acid, pH and ionic strengthsChu, L.-Y.⋅Wang, D. J.⋅Wang, Y.-J.⋅Si, Y.-B. and Zhou, D.-M.Huanjing Kexue/Environmental Science, vol. 32, pp. 2284-2291.
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