Carbothermal synthesis of carbon-supported nanoscale zero-valent iron particles for the remediation of hexavalent chromium

被引:334
作者
Hoch, Laura B. [1 ]
Mack, Elizabeth J. [1 ]
Hydutsky, Bianca W. [1 ]
Hershman, Jessica M. [1 ]
Skluzacek, Ioanna M. [1 ]
Mallouk, Thomas E. [1 ]
机构
[1] Penn State Univ, Dept Chem, University Pk, PA 16802 USA
关键词
D O I
10.1021/es702589u
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Nanoscale, zero-valent iron is a promising reagent for in situ reduction of a variety of subsurface contaminants, but its utility in full-scale remediation projects is limited by material costs. Iron. nanoparticles (20-100 nm diameter) supported on carbon) were synthesized by reacting iron salts, adsorbed or (C-Fe-0) 80 m(2)/g carbon black, impregnated from aqueous solutions onto at 600-800 degrees C under Ar. Similar products were obtained by heating the reactants under air in a covered alumina crucible. X-ray powder diffraction patterns show that Fe3O4 particles are formed at 300-500 degrees C in the initial stage of the reaction and that these particles are reduced to a mixture of (alpha- and gamma-Fe nanoparticles above 600 degrees C. When C-Fe-0 was combined with carboxymethylcellulose in a 5:1 weight ratio in water, the resulting material had similar transport properties to previously optimized nanoiron/polyanion suspensions in water-saturated sand columns. At a 10:3 Fe/Cr mole ratio, C-Fe-0 reduced a 10 ppm Cr(VI) solution to similar to 1 ppm within three days. The surface area normalized first-order Cr removal rate was 1.2 h(-1) m(-1) under these conditions. These results demonstrate that reactive nanoiron with good transport properties in water-saturated porous media c an be made in a scalable process from inexpensive starting materials by carbothermal reduction.
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页码:2600 / 2605
页数:6
相关论文
共 40 条
[1]   Pathways and kinetics of chlorinated ethylene and chlorinated acetylene reaction with Fe(O) particles [J].
Arnold, WA ;
Roberts, AL .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (09) :1794-1805
[2]   THERMAL-DECOMPOSITION OF CITRIC-ACID [J].
BARBOOTI, MM ;
ALSAMMERRAI, DA .
THERMOCHIMICA ACTA, 1986, 98 :119-126
[3]   DESTRUCTION OF ORGANOHALIDES IN WATER USING METAL PARTICLES - CARBON TETRACHLORIDE/WATER REACTIONS WITH MAGNESIUM, TIN, AND ZINC [J].
BORONINA, T ;
KLABUNDE, KJ ;
SERGEEV, G .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1995, 29 (06) :1511-1517
[4]  
BRANINSKI ZS, 1955, P ROY SOC LOND A MAT, V229, P459
[5]   Trichloroethylene and tetrachloroethylene reduction in a metallic iron-water-vapor batch system [J].
Campbell, TJ ;
Burris, DR ;
Roberts, AL ;
Wells, JR .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 1997, 16 (04) :625-630
[6]   Stabilization of chromium ore processing residue (COPR) with nanoscale iron particles [J].
Cao, Hasheng ;
Zhang, Wei-Xian .
JOURNAL OF HAZARDOUS MATERIALS, 2006, 132 (2-3) :213-219
[7]   Field assessment of nanoscale biometallic particles for groundwater treatment [J].
Elliott, DW ;
Zhang, WX .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2001, 35 (24) :4922-4926
[8]   THE STRUCTURE OF MAGNETITE [J].
FLEET, ME .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1981, 37 (APR) :917-920
[9]   Reductive dehalogenation of trichloroethylene with zero-valent iron: Surface profiling microscopy and rate enhancement studies [J].
Gotpagar, J ;
Lyuksyutov, S ;
Cohn, R ;
Grulke, E ;
Bhattacharyya, D .
LANGMUIR, 1999, 15 (24) :8412-8420
[10]   Manipulating the size and dispersibility of zerovalent iron nanoparticles by use of carboxymethyl cellulose stabilizers [J].
He, Feng ;
Zhao, Dongye .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2007, 41 (17) :6216-6221