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Influences of metal ions on the formation of β-FeOOH particlesISHIKAWA, Tatsuo; KATOH, Ryuichi; YASUKAWA, Akemi et al.Corrosion science. 2001, Vol 43, Num 9, pp 1727-1738, issn 0010-938XArticle

Adsorption of humic substances onto β-FeOOH and its chemical regenerationTEERMANN, I. P; JEKEL, M. R.Water science and technology. 1999, pp 199-206, issn 0273-1223, isbn 0-08-043688-9Conference Paper

Activity and characterization of anion-modified iron(III) oxides as catalysts for direct liquefaction of low pyrite coalsPRADHAN, V. R; HU, J; TIERNEY, J. W et al.Energy & fuels. 1993, Vol 7, Num 4, pp 446-454, issn 0887-0624Article

The kinetics of mass exchange between (γ)δ-FeOOH and Fe2+ in solutionBELOPUKHOV, S. L; KLESHCHEV, D. G; TOLCHEV, A. V et al.Russian journal of inorganic chemistry. 1991, Vol 36, Num 5, pp 732-733, issn 0036-0236Article

Synthesized heterogeneous Fenton-like goethite (FeOOH) catalyst for degradation of p-chloronitrobenzeneJIMIN SHEN; JIAYI ZHU; YANLI KONG et al.Water science and technology. 2013, Vol 68, Num 7, pp 1614-1621, issn 0273-1223, 8 p.Article

Catalytic activity of iron compounds for coal liquefactionHIRANO, K; KOUZU, M; OKADA, T et al.Fuel (Guildford). 1999, Vol 78, Num 15, pp 1867-1873, issn 0016-2361Article

Effect of agglomerate size on the catalytic activity of an iron oxyhydroxide nanocrystalline powder toward carbon-carbon bond scission in naphthylbibenzylmethaneDARAB, J. G; LINEHAN, J. C; MATSON, D. W et al.Energy & fuels. 1994, Vol 8, Num 4, pp 1004-1005, issn 0887-0624Article

Ferric hydroxide oxide from the goethite process : characterization and potential usePRADEL, J; CASTILLO, S; TRAVERSE, J.-P et al.Industrial & engineering chemistry research. 1993, Vol 32, Num 9, pp 1801-1804, issn 0888-5885Article

Solubility and dissolution rate of colloidal γ-FeOOH in seawaterKUMA, K; SUZUKI, Y; MATSUNAGA, K et al.Water research (Oxford). 1993, Vol 27, Num 4, pp 651-657, issn 0043-1354Article

Adsorption and polymerisation of silicic acid on ferrihydrite, and its effect on arsenic adsorptionSWEDLUND, P. J; WEBSTER, J. G.Water research (Oxford). 1999, Vol 33, Num 16, pp 3413-3422, issn 0043-1354Article

Coal liquefaction using a dispersed phase nanoscale iron oxyhydroxide catalyst : Iron-based catalysts for coal liquefactionGUIN, J. A; ZHAN, X; LINHART, R. S et al.Energy & fuels. 1994, Vol 8, Num 1, pp 105-112, issn 0887-0624Conference Paper

Formation of γ-FeOOH in the presence of aminesISHIKAWA, T; NISHIMORI, H; YASUKAWA, A et al.Journal of materials science letters. 1993, Vol 12, Num 17, pp 1359-1361, issn 0261-8028Article

Surface phases of iron ultrafine powders estimated from thermal desorption measurements and their reduction characteristicsSAKKA, Y; UCHIKOSHI, T.Nippon Kinzoku Gakkaishi (1952). 1991, Vol 55, Num 2, pp 219-226, issn 0021-4876Article

Effect of highly dispersed iron catalyst on direct liquefaction of coalKANEKO, T; TAZAWA, K; OKUYAMA, N et al.Fuel (Guildford). 2000, Vol 79, Num 3-4, pp 263-271, issn 0016-2361Conference Paper

Structural features in the formation of the green rust intermediate and γ-FeOOHSRINIVASAN, R; LIN, R; SPICER, R. L et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 1996, Vol 113, Num 1-2, pp 97-106, issn 0927-7757, 9 p.Article

Thermal studies on praseodymium-iron (1:9 wt%) oxyhydroxideSHARMA, C. L; NATH, M; BHARTI, N et al.Journal of materials science letters. 1994, Vol 13, Num 14, pp 1010-1011, issn 0261-8028Article

Development and future problems in the highly dispersed iron based coal direct liquefaction catalystSUZUKI, T.Nihon Enerugi Gakkaishi. 1994, Vol 73, Num 1, pp 3-10, issn 0916-8753Article

Einfluss der Wassermatrix auf die Adsorption von Phosphat an Eisenxidhydratschlämmen = Effects of water composition on adsorption of phosphate on iron oxyhydroxide sludgesTHOLE, S; BORHO, M; VOSWINCKEL, G et al.Vom Wasser. 1992, Vol 79, pp 313-321, issn 0083-6915Article

Formation of goethite (α-FeOOH) through the oxidation of a ferrous hydroxide slurryO'CONNOR, D. L; DUDUKOVIC, M. P; RAMACHANDRAN, P. A et al.Industrial & engineering chemistry research. 1992, Vol 31, Num 11, pp 2516-2524, issn 0888-5885Article

Phosphate Adsorption from Aqueous Solutions onto Goethite, Bentonite, and Bentonite―Goethite SystemIOANNOU, Z; DIMIRKOU, A; IOANNOU, A et al.Water, air and soil pollution. 2013, Vol 224, Num 3, issn 0049-6979, 1374.1-1374.14Article

Adsorption und Mitfällung von Antimon(III) bei der Hydroxidfällung verschiedener Metalle = Adsorption and coprecipitation of Antimony(III) in the precipitation of several metalhydroxidesENDERS, R; JEKEL, M.Vom Wasser. 1996, Vol 86, pp 141-155, issn 0083-6915Article

Goethite dispersibility in solutions of variable ionic strength and soluble organic matter contentRAMOS, A. C. H; MCBRIDE, M. B.Clays and clay minerals. 1996, Vol 44, Num 2, pp 286-296, issn 0009-8604Article

Synthesis of acicular goethite particles by oxidation of aqueous ferrous hydroxide suspension in a bubble column with draft tubeSADA, E; KUMAZAWA, H; CHO, H.-M et al.Chemical engineering communications (Print). 1991, Vol 106, pp 207-214, issn 0098-6445Article

On a probable catalytic interaction between magnetite (Fe3O4) and petroleumCOSULTCHI, A; ASCENCIO-GUTIERREZ, J. A; REGUERA, E et al.Energy & fuels. 2006, Vol 20, Num 3, pp 1281-1286, issn 0887-0624, 6 p.Article

β-FeOOH, a new positive electrode material for lithium secondary batteriesAMINE, K; YASUDA, H; YAMACHI, M et al.Journal of power sources. 1999, Vol 81-82, pp 221-223, issn 0378-7753Conference Paper

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