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Featured researches published by Sumit Bali.


Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2010

Iron-oxide aerogel and xerogel catalyst formulations: Characterization by 57Fe Mössbauer and XAFS spectroscopies

Frank E. Huggins; Sumit Bali; Gerald P. Huffman; Edward M. Eyring

Iron in various iron-oxide aerogel and xerogel catalyst formulations (> or =85% Fe(2)O(3); < or =10% K, Co, Cu, or Pd) developed for possible use in Fischer-Tropsch synthesis (FTS) or the water-gas-shift (WGS) reaction has been examined by (57)Fe Mössbauer spectroscopy. The seventeen samples consisted of both as-prepared and calcined aerogels and xerogels and their products after use as catalysts for FTS or the WGS reaction. Complementary XAFS spectra were obtained on the occurrence of the secondary elements in some of the same materials. A broad, slightly asymmetric, two-peak Mössbauer spectrum was obtained from the different as-prepared and calcined catalyst formulations in the majority of cases. Such spectra could only be satisfactorily fit with three quadrupole doublet components, but no systematic trends in the isomer shift and quadrupole splitting parameters and area ratios of the individual components could be discerned that reflected variations in the composition or preparation of the aerogel or xerogel materials. However, significant reductions were noted in the Mössbauer effective thickness (recoilless absorption effect per unit mass of iron) parameter, chi(eff)/g, determined at room temperature, for aerogels and xerogels compared to bulk iron oxides, reflecting the openness and lack of rigidity of the aerogel and xerogel structures. Mössbauer measurements for two aerogels over the range from 15 to 292K confirmed the greatly diminished nature of this parameter at room temperature. Major increases in the effective thickness parameter were observed when the open structure of the aerogel or xerogel collapsed during calcination resulting in the formation of iron oxides (hematite, spinel ferrite). Similar structural changes were indicated by increases in this parameter after use of iron-oxide aerogels as catalysts for FTS or the WGS reaction, during which the iron-oxide aerogel was converted to a mixture of nonstoichiometric magnetite and the Hägg carbide, chi-Fe(5)C(2), or nonstoichiometric magnetite, respectively.


Biomass & Bioenergy | 2012

Chromium(III) catalysts in ionic liquids for the conversion of glucose to 5-(hydroxymethyl)furfural (HMF): Insight into metal catalyst:ionic liquid mediated conversion of cellulosic biomass to biofuels and chemicals

Sumit Bali; Marcus Tofanelli; Richard D. Ernst; Edward M. Eyring


Energy & Fuels | 2009

Iron Aerogel and Xerogel Catalysts for Fischer-Tropsch Synthesis of Diesel Fuel

Sumit Bali; Frank E. Huggins; Gerald P. Huffman; Richard D. Ernst; Ronald J. Pugmire; Edward M. Eyring


Archive | 2009

Supercritical pentane as an extractant for oil shale

Garima Bali; Sumit Bali; Ronald J. Pugmire; Edward M. Eyring; Mark Dean Looney


Journal of Physics and Chemistry of Solids | 2010

Synthesis, structure and magnetic properties of non-crystalline ferrihydrite nanoflakes

Mohindar S. Seehra; V. Singh; Xueyan Song; Sumit Bali; Edward M. Eyring


Industrial & Engineering Chemistry Research | 2010

Iron−Ceria Aerogels Doped with Palladium as Water−Gas Shift Catalysts for the Production of Hydrogen

Sumit Bali; Frank E. Huggins; Richard D. Ernst; Ronald J. Pugmire; Gerald P. Huffman; Edward M. Eyring


Energy & Fuels | 2008

Water Gas Shift Catalysis Using Iron Aerogels Doped with Palladium by the Gas-Phase Incorporation Method

Sumit Bali; Gregory C. Turpin; Richard D. Ernst; Ronald J. Pugmire; Vivek Singh; Mohindar S. Seehra; Edward M. Eyring


Industrial & Engineering Chemistry Research | 2012

Synthetic Doped Amorphous Ferrihydrite for the Fischer–Tropsch Synthesis of Alternative Fuels

Sumit Bali; Garima Bali; Frank E. Huggins; M. S. Seehra; Vivek Singh; Jared M. Hancock; Roger G. Harrison; Gerald P. Huffman; Ronald J. Pugmire; Richard D. Ernst; Edward M. Eyring


Journal of Physics and Chemistry of Solids | 2011

Magnetic properties of (Fe, Fe–B)/γ-Fe2O3 core shell nanostructure

V. Singh; Mohindar S. Seehra; Sumit Bali; Edward M. Eyring; Naresh Shah; Frank E. Huggins; Gerald P. Huffman


Archive | 2010

ULTRA SMALL SYNTHETIC DOPED FERRIHYDRITE WITH NANOFLAKE MORPHOLOGY FOR SYNTHESIS OF ALTERNATIVE FUELS

Sumit Bali; Garima Bali; Edward M. Eyring; Richard D. Ernst; Ronald J. Pugmire

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Naresh Shah

University of Kentucky

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V. Singh

West Virginia University

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