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Results 1 to 25 of 44

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Nanotechnology-based remediation of petroleum impurities from waterKHARISOV, Boris I; RASIKA DIAS, H. V; KHARISSOVA, Oxana V et al.Journal of petroleum science & engineering. 2014, Vol 122, pp 705-718, issn 0920-4105, 14 p.Article

Entrapment of nanoscale zero-valent iron in chitosan beads for hexavalent chromium removal from wastewaterTINGYI LIU; LIN ZHAO; DESHENG SUN et al.Journal of hazardous materials (Print). 2010, Vol 184, Num 1-3, pp 724-730, issn 0304-3894, 7 p.Article

Effect of natural organic matter on toxicity and reactivity of nano-scale zero-valent ironJIAWEI CHEN; ZONGMING XIU; LOWRY, Gregory V et al.Water research (Oxford). 2011, Vol 45, Num 5, pp 1995-2001, issn 0043-1354, 7 p.Article

Estimating Treatment Capacity of Nanoscale Zero-Valent Iron Reducing 2,4,6-TrinitrotolueneWELCH, Regan; RIEFLER, R. Guy.Environmental engineering science. 2008, Vol 25, Num 9, pp 1255-1262, issn 1092-8758, 8 p.Article

Reduction of an azo dye Acid Black 24 solution using synthesized nanoscale zerovalent iron particlesSHU, Hung-Yee; CHANG, Ming-Chin; YU, Hsing-Hung et al.Journal of colloid and interface science. 2007, Vol 314, Num 1, pp 89-97, issn 0021-9797, 9 p.Article

Nanoscale Zero-Valent Iron (NZVI) supported on sineguelas waste for Pb(II) removal from aqueous solution: Kinetics, thermodynamic and mechanismARSHADI, M; SOLEYMANZADEH, M; SALVACION, J. W. L et al.Journal of colloid and interface science. 2014, Num 426, pp 239-249, issn 0021-9797, 11 p.Article

Electrophoresis enhanced transport of nano-scale zero valent ironCHOWDHURY, Ahmed I. A; O'CARROLL, Denis M; YANQING XU et al.Advances in water resources. 2012, Vol 40, pp 71-82, issn 0309-1708, 12 p.Article

Numerical and Meta-Modeling of Nitrate Transport Reduced by Nano-Fe/Cu Particles in Packed Sand ColumnSEIYED MOSSA HOSSEINI; KHOLGHI, Majid; VAGHARFARD, Hassan et al.Transport in porous media. 2012, Vol 94, Num 1, pp 149-174, issn 0169-3913, 26 p.Article

Surface modifications enhance nanoiron transport and NAPL targeting in saturated porous mediaSALEH, Navid; SIRK, Kevin; YUEQIANG LIU et al.Environmental engineering science. 2007, Vol 24, Num 1, pp 45-57, issn 1092-8758, 13 p.Article

Impact of Fe and Ni/Fe nanoparticles on biodegradation of phenol by the strain Bacillus fusiformis (BFN) at various pH valuesYE KUANG; YAN ZHOU; ZULIANG CHEN et al.Bioresource technology. 2013, Vol 136, pp 588-594, issn 0960-8524, 7 p.Article

Chromium removal using resin supported nanoscale zero-valent ironFENGLIAN FU; JUN MA; LIPING XIE et al.Journal of environmental management. 2013, Vol 128, pp 822-827, issn 0301-4797, 6 p.Article

Effect of geochemical properties on degradation of trichloroethylene by stabilized zerovalent iron nanoparticle with Na-acrylic copolymerCHEN, Meng-Yi; SU, Yuh-Fan; SHIH, Yang-Hsin et al.Journal of environmental management. 2014, Vol 144, pp 88-92, issn 0301-4797, 5 p.Article

Whole-body retention and distribution of orally administered radiolabelled zerovalent iron nanoparticles in miceHUGHES, Michael F; LONG, Thomas C; BOYES, William K et al.Nanotoxicology (Print). 2013, Vol 7, Num 5-8, pp 1064-1069, issn 1743-5390, 6 p.Article

Nanoscale zero valent iron and bimetallic particles for contaminated site remediationO'CARROLL, Denis; SLEEP, Brent; KROL, Magdalena et al.Advances in water resources. 2013, Vol 51, pp 104-122, issn 0309-1708, 19 p.Article

Ecotoxicological effects on earthworms of fresh and aged nano-sized zero-valent iron (nZVI) in soilEL-TEMSAH, Yehia S; JONER, Erik J.Chemosphere (Oxford). 2012, Vol 89, Num 1, pp 76-82, issn 0045-6535, 7 p.Article

Fenton oxidation of Orange II by pre-reduction using nanoscale zero-valent ironMOON, Byung-Hyun; PARK, Young-Bae; PARK, Kyung-Hun et al.Desalination (Amsterdam). 2011, Vol 268, Num 1-3, pp 249-252, issn 0011-9164, 4 p.Article

Nano and Micro ZVI in Aqueous Media: Copper Uptake and Solution BehaviorLIENDO, Maria A; NAVARRO, Gelsa E; SAMPAIO, Carlos H et al.Water, air and soil pollution. 2013, Vol 224, Num 5, issn 0049-6979, 1541.1-1541.8Article

The tolerance efficiency of Panicum maximum and Helianthus annuus in TNT-contaminated soil and nZVI-contaminated soilJIAMJITRPANICH, Waraporn; PARKPIAN, Preeda; POLPRASERT, Chongrak et al.Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering. 2012, Vol 47, Num 11, pp 1506-1513, issn 1093-4529, 8 p.Article

Environmental benefits and risks of zero-valent iron nanoparticles (nZVI) for in situ remediation: Risk mitigation or trade-off?GRIEGER, Khara D; FJORDBØGE, Annika; HARTMANN, Nanna B et al.Journal of contaminant hydrology. 2010, Vol 118, Num 3-4, pp 165-183, issn 0169-7722, 19 p.Article

Enhanced chitosan/Fe0-nanoparticles beads for hexavalent chromium removal from wastewaterTINGYI LIU; WANG, Zhong-Liang; LIN ZHAO et al.Chemical engineering journal (1996). 2012, Vol 189-190, pp 196-202, issn 1385-8947, 7 p.Article

Inhibition of nZVI reactivity by magnetite during the reductive degradation of 1,1,1-TCA in nZVI/magnetite suspensionBAE, Sungjun; LEE, Woojin.Applied catalysis. B, Environmental. 2010, Vol 96, Num 1-2, pp 10-17, issn 0926-3373, 8 p.Article

Enhanced Transport and Transformation of Zerovalent Nanoiron in Clay Using Direct Electric CurrentGOMES, Helena I; DIAS-FERREIRA, Celia; RIBEIRO, Alexandra B et al.Water, air and soil pollution. 2013, Vol 224, Num 12, issn 0049-6979, 1710.1-1710.12Conference Paper

Nanoadsorbents for Remediation of Aquatic Environment: Local and Practical Solutions for Global Water Pollution ProblemsAGUSTIONO KURNIAWAN, Tonni; SILLANPÄÄ, Mika E. T; SILLANPÄÄ, Markus et al.Critical reviews in environmental science and technology. 2012, Vol 42, Num 9-12, pp 1233-1295, issn 1064-3389, 63 p.Article

Assessment of combined electro-nanoremediation of molinate contaminated soilGOMES, Helena I; GUANGPING FAN; MATEUS, Eduardo P et al.Science of the total environment. 2014, Vol 493, pp 178-184, issn 0048-9697, 7 p.Article

Impact of nZVI stability on mobility in porous mediaKOCUR, Chris M; O'CARROLL, Denis M; SLEEP, Brent E et al.Journal of contaminant hydrology. 2013, Vol 145, pp 17-25, issn 0169-7722, 9 p.Article

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