top of page

著書・発表論文(1990~1995年)

​  1995年

  1. Coking Phenomena in the Pyrolysis of Ethylene Dichloride into Vinyl-Chloride.
    Sotowa C, Korai Y, Mochida I, Higuchi K.
    Abstracts of Papers of the American Chemical Society. 1995 Aug;210:95-PETR.

  2. Removal and Recovery of Quinoline Bases from Methylnaphthalene Oil in a Semicontinuous Supercritical CO2 Separation Apparatus with a Fixed-Bed of Supported Aluminum Sulfate.
    Sakanishi K, Obata H, Mochida I, Sakaki T.​
    Industrial & Engineering Chemistry Research. 1995 Nov;34(11):4118-21.

  3. ​Preparation of Highly Dispersed NiMo Catalysts Supported on Carbon-Black Particles of Hollow Spheres.
    Sakanishi K, Hasuo H, Mochida I, Whitehurst DD, Okuma O.
    Abstracts of Papers of the American Chemical Society. 1995 Apr;209:76-FUEL.

  4. Preparation of Highly Dispersed Nimo Catalysts Supported on Hollow Spherical Carbon-Black Particles.
    Sakanishi K, Hasuo H, Mochida I, Okuma O.
    Energy & Fuels. 1995 Nov-Dec;9(6):995-8.

  5. Carbon Deposition on Nickel-Iron Alloys.
    Rodriguez NM, Kim MS, Baker RTK, Fortin F, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1995 Aug;210:96-PETR.

  6. Carbon-Fibers from Aromatic-Hydrocarbons.
    Mochida I, Yoon SH, Korai Y, Kanno K, Sakai Y, Komatsu M.
    Chemtech. 1995 Feb;25(2):29-37.

  7. Influence of Heat-Treatment on the Selective Adsorption of CO2 in a Model Natural-Gas over Molecular-Sieve Carbons.
    Mochida I, Yatsunami S, Kawabuchi Y, Nakayama Y.
    Carbon. 1995;33(11):1611-9.

  8. Preparation and Modification of Recoverable Particle Catalysts for Coal-Liquefaction.
    Mochida I, Sakanishi K, Hasuo H, Taniguchi H, Okuma O.
    Abstracts of Papers of the American Chemical Society. 1995 Apr;209:67-FUEL.

  9. Reduction of No at Very-Low Concentration in Air with NH3 at Room-Temperature over a Series of Calcined Pitch-Based Active-Carbon Fibers.
    Mochida I, Kawano S, Hironaka M, Yatsunami S, Korai Y, Matsumura Y, Yoshikawa M.
    Chemistry Letters. 1995 May(5):385-6.

  10. Reduction of No of Very-Low Concentration in Air with NH3 at Room-Temperature over Calcined Active-Carbon Fibers.
    Mochida I, Kawano S, Hironaka M, Yatsunami S, Korai Y, Matsumura Y, Yoshikawa M.
    Energy & Fuels. 1995 Jul-Aug;9(4):659-64.

  11. Carbon Disc of High-Density and Strength Prepared from Heat-Treated Mesophase Pitch Grains.
    Mochida I, Fujiura R, Kojima T, Sakamoto H, Yoshimura T.
    Carbon. 1995;33(3):265-74.

  12. Carbonization of C-60 and C-70 Fullerenes to Fullerene Soot.
    Mochida I, Egashira M, Koura H, Dakeshita K, Yoon SH, Korai Y.
    Carbon. 995;33(8):1186-8.

  13. Catalytic Condensation of Isoquinoline into Pitch in Higher Yield in the Presence of Nitro Solvents.
    Mochida I, An KH, Korai Y.
    Carbon. 1995;33(8):1079-84.

  14. Preparation of Nitrogen-Containing Pitches from Quinoline and Isoquinoline by Aid of AlCl3.
    Mochida I, An KH, Korai Y.
    Carbon. 1995;33(8):1069-77.

  15. Quantum-Chemical Calculation on the Desulfurization Reactivities of Heterocyclic Sulfur-Compounds.
    Ma XL, Sakanishi K, Isoda T, Mochida I. Ma XL, Sakanishi K, Isoda T, Mochida I.
    Energy & Fuels. 1995 Jan-Feb;9(1):33-7.

  16. Hydrodesulfurization Reactivities of Narrow-Cut Fractions in a Gas Oil.
    Ma XL, Sakanishi K, Isoda T, Mochida I.
    Industrial & Engineering Chemistry Research. 1995 Mar;34(3):748-54.

  17. Selective Hydrodesulfurization of 4,6-Dimethyldibenzothiophene in the Dominant Presence of Naphthalene over Hybrid CoMo/Al2O3 and Ru/Al2O3 Catalyst. Abstracts of Papers of the American Chemical Society.
    Isoda T, Nagao S, Ma X, Korai Y, Mochida I.
    1995 Aug;210:134-FUEL.

  18. Selective Hydrodesulfurization of 4,6-Dimethyldibenzothiophene in the Major Presence of Naphthalene over Molybdenum Based Binary and Tertiary Sulfides Catalysts.
    Isoda T, Nagao S, Ma X, Korai Y, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1995 Aug;210:133-FUEL.

  19. X-Ray Photoelectron-Spectroscopy Study on the Surface-Structure of Nimo Catalysts for Hydrodesulfurization of 4,6-Dimethyl-Benzothiophene.
    Isoda T, Nagao S, Ma X, Korai Y, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1995 Aug;210:14-PETR. 

  20. Mechanical-Properties of Binderless Carbon Mold Prepared from Heat-Treated Mesophase Pitch of Controlled Grain-Size.
    Fujiura R, Kojima T, Komatsu M, Mochida I.
    Carbon. 1995;33(8):1061-8.

  21. Structure of Round-Shaped Methylnaphthalene-Derived Mesophase Pitch-Based Carbon-Fibers Prepared by Spinning through a Y-Shaped Die Hole.
    Fortin F, Yoon SH, Korai Y, Mochida I.
    Journal of Materials Science. 1995 Sep;30(18):4567-83.

  22. A Simple Thin-Layer Spectroelectrochemical Cell for Nonaqueous Solution Systems.
    Endo A, Mochida I, Shimizu K, Sato GP.
    Analytical Sciences. 1995 Jun;11(3):457-9.

  23. Coke Deposition on the Hydrotreating Catalyst.
    Amemiya M, Mochida I.
    Abstracts of Papers of the American Chemical Society.1995 Aug;210:107-PETR.

​  1994年

  1. The Flow Properties of Mesophase Pitches Derived from Methylnaphthalene and Naphthalene in the Temperature-Range of Their Spinning.

    Yoon SH, Korai Y, Mochida I, Kato I.
    Carbon. 1994;32(2):273-80.

  2. Assessment and Optimization of the Stabilization Process of Mesophase Pitch Fibers by Thermal Analyses.
    Yoon SH, Korai Y, Mochida I.
    Carbon. 1994;32(2):281-7.

  3. Pleat Structure of the Mesophase Pitch-Based Carbon-Fiber.
    Yoon SH, Korai Y, Mochida I.
    Carbon. 1994;32(6):1182-6.

  4. Diels-Alder Reaction of Mesophase Pitch Insoluble Fractions with Maleic-Anhydride.
    Toshima H, Hino T, Murakami K, Mochida I.
    Journal of Materials Science. 1994 Apr;29(7):1966-72.

  5. Removal and Recovery of Nitrogen and Sulfur-Compounds from Coal-Tar Fractions Using Supported Aluminum Sulfate under Supercritical CO2 Conditions.
    Sakanishi K, Obata H, Mochida I, Sakaki T.
    Abstracts of Papers of the American Chemical Society. 1994 Aug;208:50-FUEL.

  6. Adsorption of Radon on Active-Carbon.
    Nakayama Y, Nagao H, Mochida I, Kawabuchi Y.
    Carbon. 1994;32(8):1544-7.

  7. Catalytic Dehydrochlorination of 1,2-Dichloroethane into Vinyl-Chloride over Polyacrylonitrile-Based Active-Carbon Fiber (Pan-ACF).
    Mochida I, Yasumoto Y, Watanabe Y, Fujitsu H, Kojima Y, Morita M.
    Chemistry Letters. 1994 Feb(2):197-200.

  8. Design of Recoverable Catalysts for a Multistage Coal-Liquefaction Process.​
    Mochida I, Sakanishi K, Sakata R, Honda K, Umezawa T.
    Energy & Fuels. 1994 Jan-Feb;8(1):25-30.

  9. Design of Multistage Coal-Liquefaction Process for Upgrading and Complete Conversion.
    Mochida I, Sakanishi K, Kishino M, Tsutsui K.
    Abstracts of Papers of the American Chemical Society. 1994 Mar;207:88-FUEL.

  10. Catalysis in Coal Liquefaction.
    Mochida I, Sakanishi K.
    Advances in Catalysis, Vol 40 1994:39-85.

  11. Some Factors for the High Performances of Mesophase Pitch-Based Carbon-Fiber.
    Mochida I, Ling LC, Korai Y.
    Journal of Materials Science. 1994 Jun;29(11):3050-6.

  12. Oxidative Removal of SO2 and Recovery of H2SO4 over Polyacrylonitrile-Based Active-Carbon Fiber.
    Mochida I, Kisamori S, Kawabuchi Y, Kuroda K, Kawano S.
    Abstracts of Papers of the American Chemical Society.1994 Mar;207:56-FUEL.

  13. Oxidation of NO into NO2 over Active-Carbon Fibers.
    Mochida I, Kisamori S, Hironaka M, Kawano S, Matsumura Y, Yoshikawa M.
    Energy & Fuels. 1994 Nov-Dec;8(6):1341-4.

  14. Oxidation of No into NO2 over Activated-Carbon Fibers.
    Mochida I, Kisamori S, Hironaka M, Kawano S.
    Abstracts of Papers of the American Chemical Society. 1994 Mar;207:51-FUEL.

  15. Reduction of Low Concentration No with NH3 over Pitch-Based Active-Carbon Fiber in Humid Air at Ambient-Temperature.
    Mochida I, Kawano S, Kisamori S, Fujitsu H, Maeda T.
    Carbon. 1994;32(1):175-7.

  16. Self-Adhesive Carbon Grains Oxidatively Prepared from Naphthalene-Derived Mesophase Pitch for Mold of High-Density.
    Mochida I, Fujiura R, Kojima T, Sakamoto H, Kanno K.
    Carbon. 1994;32(5):961-9.

  17. Chemistry in the Production and Utilization of Needle Coke.
    Mochida I, Fujimoto K, Oyama T.
    Chemistry and Physics of Carbon, Vol 24 1994:111-212.

  18. Hydrodesulfurization Reactivities of Various Sulfur-Compounds in Diesel Fuel.
    Ma XL, Sakanishi KY, Mochida I.
    Industrial & Engineering Chemistry Research. 1994 Feb;33(2):218-22.

  19. 3-Stage Deep Hydrodesulfurization and Decolorization of Diesel Fuel with CoMo and NiMo Catalysts at Relatively Low-Pressure.
    Ma XL, Sakanishi K, Mochida I.
    Fuel. 1994 Oct;73(10):1667-71.

  20. ​Comparison of Sulfided CoMo/Al2O3 and NiMo/Al2O3 Catalysts in Deep Hydrodesulfurization of Gas Oil Fractions.
    Ma X, Sakanishi K, Isoda T, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1994 Aug;208:83-PETR.

  21. Modification of Precursor Pitch for General Performance Carbon-Fiber by Blending Naphthalene-Derived Isotropic and Mesophase Pitches.
    Korai Y, Inoue M, Mochida I, Maeda T.
    Journal of Materials Science. 1994 Jun;29(11):2911-5.

  22. Roles of Surface Oxygen Groups on Poly(Acrylonitrile)-Based Active-Carbon Fibers in SO2 Adsorption. Langmuir.
    Kisamori S, Mochida I, Fujitsu H.
    1994 Apr;10(4):1241-5.

  23. Oxidative Removal of SO2 and Recovery of H2SO4 over Poly(Acrylonitrile)-Based Active-Carbon Fiber.
    Kisamori S, Kuroda K, Kawano S, Mochida I, Matsumura Y, Yoshikawa M.
    Energy & Fuels. 1994 Nov-Dec;8(6):1337-40.

  24. Effects of Carbon-Black Addition on the Carbonization of Mesophase Pitch.
    Kanno K, Yoon KE, Fernandez JJ, Mochida I, Fortin F, Korai Y.
    Carbon. 1994;32(5):801-7.

  25. Hydrodesulfurization Reactivities of Alkyldibenzothiophenes over Sulfided Molybdenum Based Catalysts.
    Isoda T, Ma X, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1994 Aug;208:59-PETR.

  26. 2d NMR-Study in Powdered and Oriented Polymeric Solids.
    Grant DM, Hsu ML, Alderman DW, Pugmire RJ, Mochida I.
    Abstracts of Papers of the American Chemical Society. 1994 Aug;208:110-PMSE.

  27. Reorganization of Molecular Alignment in Naphthalene and Methyl-Naphthalene Derived Pitches.
    Fortin F, Yoon SH, Korai Y, Mochida I.
    Carbon. 1994;32(5):979-89.

  28. Structure and Properties of Thin, Slit-Shaped Carbon-Fibers Prepared from Mesophase Pitch.
    Fortin F, Yoon SH, Korai Y, Mochida I.
    Carbon. 1994;32(6):1119-27. 

​  1993年

​​

  1. Preparation of Isotropic Pitch Precursors for General-Purpose Carbon-Fibers (GPCF) by Air Blowing .2. Air Blowing of Coal-Tar, Hydrogenated Coal-Tar, and Petroleum Pitches.
    Zeng SM, Maeda T, Tokumitsu K, Mondori J, Mochida I.
    Carbon. 1993;31(3):413-9.

  2. Preparation of Isotropic Pitch Precursors for General-Purpose Carbon-Fibers (GPCF) by Air Blowing .3. Air Blowing of Isotropic Naphthalene and Hydrogenated Coal-Tar Pitches with Addition of 1,8-Dinitronaphthalene.
    Zeng SM, Maeda T, Mondori J, Tokumitsu K, Mochida I.
    Carbon. 1993;31(3):421-6.

  3. Spinning Characteristics of Mesophase Pitches Derived from Naphthalene and Methylnaphthalene with HF/BF3.
    Yoon SH, Korai Y, Mochida I.
    Carbon. 1993;31(6):849-56.

  4. Oxidation Reactivity of Mesophase Pitch Derived from C9 Alkylbenzenes.
    Yanagida K, Sasaki T, Tate K, Sakanishi A, Korai Y, Mochida I.
    Carbon. 1993;31(4):577-82.

  5. Lubricating Properties of Mesophase Pitches.
    Tomari Y, Mochida I, Iino M.
    Journal of Japanese Society of Tribologists. 1993;38(12):1097-103.

  6. Change of Thermal-Expansion Coefficient and Electrical-Conductivity of LaCO1-xMxO3 (M = Fe, Ni).
    Nagamoto H, Mochida I, Kagotani K, Inoue H, Negishi A.
    Journal of Materials Research. 1993 Dec;8(12):3158-62.

  7. Preparation and Structure of Mesophase Pitch-Based Thin Carbon Tape.
    Mochida I, Yoon SH, Korai Y.
    Journal of Materials Science. 1993 Apr;28(8):2135-40.

  8. Control of Transversal Texture in Circular Mesophase Pitch-Based Carbon-Fiber Using Noncircular Spinning Nozzles.
    Mochida I, Yoon SH, Korai Y.
    Journal of Materials Science. 1993 May;28(9):2331-6.

  9. Design of Coal-Liquefaction Catalysts with Functions for Recovery and Repeated Use.
    Mochida I, Sakanishi K, Umczawa T, Yoon SH.
    Abstracts of Papers of the American Chemical Society. 1993 Mar;205:42-FUEL.

  10. High-Performance, Moderate Cost Mesophase Pitch Based Carbon-Fibers.
    Mochida I, Korai Y, Yoon SH.
    Abstracts of Papers of the American Chemical Society. 1993 Mar;205:73-FUEL.

  11. Spillover in Catalyzes over Co-Phthalocyanines Supported on Titania.
    Mochida I, Higashiizumi T, Ishihara Y, Fujitsu H.
    Studies in Surface Science and Catalysis. 1993;77:321-4.

  12. Oxygen Distribution in Oxidatively Stabilized Mesophase Pitch Fiber.
    Matsumoto T, Mochida I.
    Carbon. 1993;31(1):143-7.

  13. Preparation of Isotropic Pitch Precursors for General-Purpose Carbon-Fibers (GPCF) by Air Blowing .1. Preparation of Spinnable Isotropic Pitch Precursor from Coal-Tar by Air Blowing.
    Maeda T, Zeng SM, Tokumitsu K, Mondori J, Mochida I.
    Carbon. 1993;31(3):407-12.

  14. SO2 and NOx Removal at Ambient-Temperatures Using Activated Carbon-Fibers.
    Kisamori S, Kawano S, Mochida I.
    bstracts of Papers of the American Chemical Society. 1993 Mar;205:63-FUEL.

  15. Continuous Removal of SO2 in the Model Flue-Gas over Pan-ACF with Recovering Aqueous H2SO4.
    Kisamori S, Kawano S, Mochida I.
    Chemistry Letters. 1993 Nov(11):1899-902.

  16. Reduction of Low Concentration NO with NH3 at Ambient-Temperatures over Pitch-Based Active-Carbon Fibers Further Activated with Sulfuric-Acid.
    Kawano S, Kisamori S, Mochida I, Fujitsu H, Maeda T.
    Nippon Kagaku Kaishi. 1993 Jun(6):694-702.

  17. Evaluation of Naphthalene-Derived Mesophase Pitches as a Binder for Carbon Carbon Composites.
    Fujiura R, Kojima T, Kanno K, Mochida I, Korai Y.
    Carbon. 1993;31(1):97-102.

  18. The Influence of Modifications to the Surface Groups of Brown Coal Chars on Their Flue-Gas Cleaning Ability.
    Fujitsu H, Mochida I, Verheyen TV, Perry GJ, Allardice DJ.
    Fuel. 1993 Jan;72(1):109-13. 

​  1992年

  1. Preparation of Carbonaceous Spheres from Suspensions of Pitch Materials.
    Yoon SH, Park YD, Mochida I.
    Carbon. 1992;30(5):781-6.

  2. Oxidation Properties of Mesophase Pitch Prepared by Heterogeneous Nucleation Method.
    Yoon SH, Oh SM, Park YD.
    Journal of Materials Science. 1992;27:5199-202.

  3. Modification of Petroleum-Derived Mesophase Pitch by Blending Naphthalene-Derived Partially Isotropic Pitches.
    Toshima H, Mochida I, Korai Y, Hino T.
    Carbon. 1992;30(5):773-9.

  4. Removal and Recovery of Nitrogen-Compounds in Crude Methylnaphthalene Oil Using Aluminum Sulfate Supported on Silica-Gel.
    Sakanishi K, Sun YN, Mochida I, Hidehiko U.
    Fuel Processing Technology. 1992 Dec;32(3):143-9.

  5. Comparative-Study of Isotropic and Mesophase Pitches Derived from C9 Alkylbenzenes.
    Sakanishi A, Korai Y, Mochida I, Yanagida K, Noda M, Thunori I, Tate K.
    Carbon. 1992;30(3):459-66.

  6. Structure and Properties of Mesophase Pitch Carbon-Fiber with a Skin Core Structure Carbonized under Strain.
    Mochida I, Zeng SM, Korai Y, Hino T, Toshima H.
    Journal of Materials Science. 1992 Apr;27(7):1960-8.

  7. Preparation of Mesophase Pitch-Based Thin Carbon Tape.​
    Mochida I, Yoon S, Korai Y.
    Chemistry Letters. 1992 Jul(7):1111-4.

  8. Catalytic Dehydrochlorination of 1,1,2-Trichloroethane (TCE) into 1,1-Dichloroethene (DCE) over Cesium Nitrate Supported on Silica-Gel.
    Mochida I, Yasumoto Y, Fujitsu H, Kojima Y.
    Chemistry Letters. 1992 Mar(3):461-4.

  9. Mesophase Pitch Catalytically Prepared from Anthracene with HF BF3.
    Mochida I, Shimizu K, Korai Y, Sakai Y, Fujiyama S, Toshima H, Hono T.
    Carbon. 1992;30(1):55-61.

  10. SO2 Removal Activity and Its Regeneration of Polyacrilonitrile Based Active-Carbon Fiber (PAN-ACF).
    Mochida I, Kisamori S, Kawano S, Fujitsu H.
    Nippon Kagaku Kaishi. 1992 Dec(12):1429-34.

  11. Reduction of No with NH3 in Wet Air at Room-Temperature over Active-Carbon Fibers Further Activated with Sulfuric-Acid.
    Mochida I, Kawano S, Fujitsu H, Maeda T.
    Nippon Kagaku Kaishi.1992 Mar(3):275-81.

  12. Origins of Remarkable Catalytic Activity of Cobalt Tetraphenylporphyrin Supported on Some Titanias.
    Mochida I, Kamo T, Fujitsu H.
    Langmuir. 1992 Mar;8(3):909-14.

  13. Marked Increase of SO2 Removal Ability of Poly(Acrylonitrile)-Based Active-Carbon Fiber by Heat-Treatment at Elevated-Temperatures.
    Mochida I, Hirayama T, Kisamori S, Kawano S, Fujitsu H.
    Langmuir. 1992 Sep;8(9):2290-4.

  14. Carbonization of Coal-Tar Pitch Denitrogenated by Metal Sulfates.
    Mochida I, Fei YQ, Sakanishi K, Korai Y, Usuba H, Miura K.
    Carbon. 1992;30(2):241-6.

  15. Selective Pyrolysis of Ethane over Pitch Based Carbon-Fiber.
    Mochida I, Aoyagi Y, Yatsunami S, Fujitsu H.
    Chemistry Letters. 1992 Nov(11):2123-6.

  16. Trends of Carbon-Fibers and Their Composites - Section G - Carbon 92.
    Mochida I.
    Erdol & Kohle Erdgas Petrochemie. 1992 Dec;45(12):457-8.

  17. A Structural Study on Oxidative Stabilization of Mesophase Pitch Fibers Derived from Coal-Tar.
    Matsumoto T, Mochida I.
    Carbon. 1992;30(7):1041-6.

  18. Molecular Assembly of Mesophase and Isotropic Pitches at Their Fused States.
    Korai Y, Mochida I.
    Carbon. 1992;30(7):1019-24.

​

​​

​  1991年

​​

  1. Effect of Pressurized Pretreatment on the Preparation of Mesophase Pitch.
    Oh SM, Yoon SH, Lee GD, Park YD.
    Carbon. 1991;29:1009-14.

  2. The Introduction of a Skin-Core Structure in Mesophase Pitch Fibers through a Successive Stabilization by Oxidation and Solvent-Extraction.
    Mochida I, Zeng SM, Korai Y, Hino T, Toshima H.
    Carbon. 1991;29(1):23-9.

  3. Reduction of Nitrogen Mouoxide by Active-Carbon Fibers Impregnated with Metalic Salts.
    Mochida I, Sun YN, Fuiitsu H, Kisamori S, Kawano S.
    Nippon Kagaku Kaishi. 1991 Jun(6):885-90.

  4. Removal of Basic Nitrogen Species in Coal-Tar Pitch by Metal Sulfates Supported on Silica-Gel.
    Mochida I, Sakanishi K, Usuba H, Miura K.
    Fuel. 1991 Jun;70(6):761-4.

  5. Multistage Coking for More Tar and Formed-Coke of Higher Strength .4. Formed Coking of Residues Extracted from Heat-Treated Single Coals with a Mixed-Solvent of N-Methylpyrrolidinone and Carbon-Disulfide.
    Mochida I, Motoshima N, Nakagawara H, Korai Y.
    Fuel. 1991 Apr;70(4):529-32.

    Removal of SO-Chi in Flue-Gas by Polyacrylonitrile Based Active-Carbon Fiber (Pan-Acf).

  6. Modification of Isotropic Carbon-Fiber Precursor with PVC Using Tetraline as a Solvent.
    Mochida I, Korai Y, Nakamura M, In S, Rhee B.
    Journal of Materials Science Letters. 1991 Feb;10(3):121-4.

  7. Structure and Stabilization Reactivity of Mesophase Pitch Derived from FCC-Decant Oils.
    Mochida I, Korai Y, Azuma A, Kakuta M, Kitajima E.
    Journal of Materials Science. 1991 Sep;26(18):4836-44.

  8. Future Production of Blast-Furnace Coke at Lower Temperature.
    Mochida I, Korai Y.
    Tetsu to Hagane-Journal of the Iron and Steel Institute of Japan. 1991 Apr;77(4):471-9.

  9. Regeneration of ACF Activated with H2SO4 for NH3 Removal with NO at Room-Temperature.
    Mochida I, Kawano S, Maeda T.
    Nippon Kagaku Kaishi. 1991 Sep(9):1177-82.

  10. Regeneration Ability of Pitch Based Active-Carbon Fiber (ACF) with No at Room-Temperature in Wet Air for Adsorptive Capture of Ammonia.
    Mochida I, Kawano S, Fujitsu H, Maeda T.
    Nippon Kagaku Kaishi. 1991 Dec(12):1598-604.

  11. Capture of Ammonia by Active-Carbon Fibers Further Activated with Sulfuric-Acid.
    Mochida I, Kawano S.
    Industrial & Engineering Chemistry Research. 1991 Oct;30(10):2322-7.

  12. Pyrolysis of Methane into Higher Hydrocarbons on Carbon-Fiber in a Thin Flat Tube of Quartz Heated by an Infrared Image Furnace.
    Mochida I, Aoyagi Y, Yatsunami S, Fujitsu H.
    Journal of Analytical and Applied Pyrolysis. 1991 Sep;21(1-2):95-102.

  13. Mesophase Pitches Prepared from Methylnaphthalene by the Aid of HF/BF3.
    Korai Y, Nakamura M, Mochida I, Sakai Y, Fujiyama S.
    Carbon. 1991;29(4-5):561-7.

  14. Catalytic Activity for NO Decomposition of Cobalt Tetrapropoxyphthalocyanine Supported on Titania.
    Fujitsu H, Sakakihara T, Mochida I.
    Chemistry Letters. 1991 Jan(1):159-62.

  15. Mochida I, Masumura Y, Hirayama T, Fujitsu H, Kawano S, Gotoh K.
    Nippon Kagaku Kaishi. 1991 Apr(4):269-74.

​  1990年

  1. The Creation of a Skin-Core Structure in Petroleum Derived Mesophase Pitch Based Carbon-Fiber.
    Zeng SM, Korai Y, Mochida I, Hino T, Toshima H.
    Bulletin of the Chemical Society of Japan. 1990 Jul;63(7):2083-8.

  2. Relation between the Fluorescence Intensity of Vitrinites and the Fluidity of Coals.
    Sasaki M, Takahashi R, Mochida I.
    Fuel. 1990 Apr;69(4):529-32.

  3. Roles of Nondonor Solvent in the Hydrogen-Transferring Liquefaction of Australian Brown Coal.
    Sakata R, Takayama A, Sakanishi K, Mochida I.
    Energy & Fuels. 1990 Sep-Oct;4(5):585-8.

  4. Pretreatments of Solid Coals for Their Beneficiation and Structural-Analyses.
    Sakanishi K, Takayama A, Hieida T, Mochida I.
    Energy & Fuels. 1990 Sep-Oct;4(5):463-6.

  5. Selective Hydrogenation of 9-Aminoacridine over Supported Noble-Metal Catalysts.
    Sakanishi K, Mochida I, Okazaki H, Soeda M.
    Chemistry Letters. 1990 Feb(2):319-22.

  6. Preparation of Spinnable Mesophase Pitch by Two Stage Heat Treatment.
    Park YD, Oh SM, Yoon SH.
    high temperatures - high pressures. 1990;22:355-61.

  7. ​Hydrogenation Pathway of Quinolines over Raney-Nickel and Ru/C.
    Okazaki H, Onishi K, Soeda M, Ikefuji Y, Tamura R, Mochida I.
    Bulletin of the Chemical Society of Japan. 1990 Nov;63(11):3167-74.

  8. Properties of Fluid Catalytic Cracking Decant Oils of Different Origins in Their Single Carbonization and Cocarbonization with a Petroleum Vacuum Residue.
    Nesumi Y, Oyama T, Todo Y, Azuma A, Mochida I, Korai Y.
    Industrial & Engineering Chemistry Research. 1990 Sep;29(9):1793-801.

  9. ​Catalytic 2-Stage Hydrocracking of Arabian Vacuum Residue at a High Conversion Level without Sludge Formation.
    Mochida I, Zhao XZ, Sakanishi K.
    Industrial & Engineering Chemistry Research. 1990 Mar;29(3):334-7.

  10. Suppression of Sludge Formation by 2-Stage Hydrocracking of Vacuum Residue at High Conversion.
    Mochida I, Zhao XZ, Sakanishi K.
    Industrial & Engineering Chemistry Research. 1990 Dec;29(12):2324-7.

  11. The Introduction of a Skin-Core Structure in Mesophase Pitch Fibers by Oxidative Stabilization.
    Mochida I, Zeng SM, Korai Y, Toshima H.
    Carbon. 1990;28(1):193-8.

  12. Comparative-Evaluation of Mesophase Pitches Derived from Coal-Tar and FCC-DO.
    Mochida I, Toshima H, Korai Y, Varga T.
    Journal of Materials Science. 1990 Aug;25(8):3484-92.

  13. A Structural Study on the Stabilization and Enhancement of Mesophase Pitch Fiber.
    Mochida I, Toshima H, Korai Y, Matsumoto T.
    Journal of Materials Science. 1990 Jan;25(1A):76-82.

  14. Solubility of Heat-Resisting Polymers in Mesophase Pitches at Their Spinning Temperatures.
    Mochida I, Toshima H, Korai Y.
    Journal of Materials Science. 1990 Nov;25(11):4898-905.

  15. Hydrogen-Transferring Liquefaction of an Australian Brown Coal with Polyhydrogenated Condensed Aromatics - Roles of Donor in the Liquefaction.
    Mochida I, Takayama A, Sakata R, Sakanishi K.
    Energy & Fuels. 1990 Jan-Feb;4(1):81-4.

  16. Liquefaction of Australian Brown Coal with Mixed-Solvents of Different Qualities and Reactivities of Transferable Hydrogens.
    Mochida I, Takayama A, Sakata R, Sakanishi K.
    Energy & Fuels. 1990 Jul-Aug;4(4):398-401.

  17. Mesophase Pitch Derived from Isotropic Anthracene Pitch Produced Catalytically with HF/BF3.
    Mochida I, Shimizu K, Korai Y, Sakai Y, Fujiyama S.
    Bulletin of the Chemical Society of Japan. 1990 Oct;63(10):2945-50.

  18. Preparation of Mesophase Pitch from Aromatic-Hydrocarbons by the Aid of HF/BF3.
    Mochida I, Shimizu K, Korai Y, Otsuka H, Sakai Y, Fujiyama S.
    Carbon. 1990;28(2-3):311-9.

  19. Multistage Coking for Increased Tar Yield and Formed-Coke of High-Strength .3. Multistage Coking of Single Coals.
    Mochida I, Nakagawara H, Korai Y.
    Fuel. 1990 Oct;69(10):1253-6.

  20. Multistage Coking for Increased Tar Yield and Formed-Coke of High-Strength .2. Rapid Heating Carbonization in the Multistage Coking of Weathered Coal Blends.
    Mochida I, Motoshima N, Korai Y, Nakagawara H.
    Fuel. 1990 Jun;69(6):784-6.

  21. Multistage Coking for Increased Tar Yield and Formed-Coke of High-Strength .1. Pressurized Heat-Treatment of Blended Coals.
    Mochida I, Motoshima N, Korai Y.
    Fuel. 1990 Jun;69(6):780-3.

  22. Regenerative Removal of Ammonia in the Atmosphere with Active-Carbon Fibers.
    Mochida I, Kawano S, Fujitsu H.
    Chemistry Letters. 1990 Sep(9):1627-30.

  23. Capture and Recovery of Basic Nitrogen Species in Coal-Tar Pitch, Using Nickel Sulfate as Adsorbent.
    Mochida I, Fei YQ, Sakanishi K, Usuba H, Miura K.
    Chemistry Letters. 1990 Apr(4):515-8.

  24. Cocarbonization of Ethylene Tar Pitch and Coal-Tar Pitch to Form Needle Coke.
    Mochida I, Fei YQ, Korai Y, Oishi T.
    Fuel. 1990 Jun;69(6):672-7.

  25. A Study of the Carbonization of Ethylene Tar Pitch and Needle Coke Formation.
    Mochida I, Fei YQ, Korai Y.
    Fuel. 1990 Jun;69(6):667-71.

  26. Pyrolysis of Methane into Higher Hydrocarbons on Carbon-Fibers.
    Mochida I, Aoyagi Y, Fujitsu H.
    Chemistry Letters. 1990 Sep(9):1525-6.

  27. Concentration of Pyrroles and Phenols from Coal-Tar Pitch by Organic-Solvent Extraction.
    Fei YQ, Sakanishi K, Sun YN, Yamashita R, Mochida I.
    Fuel. 1990 Feb;69(2):261-2.

bottom of page