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Drying Technology
An International Journal
Volume 32, 2014 - Issue 6
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Original Articles

Simplification and Energy Saving of Drying Process Based on Self-Heat Recuperation Technology

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REFERENCES

  • Klass , D.L. Biomass for Renewable Energy, Fuels, and Chemicals ; Academic Press : San Diego , CA , 1998 .
  • Japan Institute of Energy, Ed. Biomass Handbook, , 2nd ed. ; Ohmsha : Tokyo , Japan , 2009 (in Japanese).
  • Tester , J.W. ; Drake , E.M. ; Driscoll , M.J. ; Golay , M.W. ; Peters , W.A. Sustainable Energy ; MIT Press : Cambridge , MA , 2005 .
  • Brammer , J.G. ; Bridgwater , A.V. Drying technologies for an integrated gasification bio-energy plant . Renewable Sustainable Energy Reviews 1999 , 3 , 243 – 289 .
  • Syahrul , S. ; Hamdullahpur , F. ; Dincer , I. Exergy analysis of fluidized bed drying of moist particles . Applied Thermal Engineering 2002 , 22 , 1763 – 1775 .
  • Syahrul , S. ; Dincer , I. ; Hamdullahpur , F. Thermodynamic modeling of fluidized bed drying of moist particles . International Journal of Thermal Science 2003 , 42 , 691 – 701 .
  • Karthikeyan , M. ; Wu , Z. ; Mujumdar , A.S. Low-rank coal drying technologies—Current status and new developments . Drying Technology 2009 , 27 , 403 – 415 .
  • Mujumdar , A.S. Research and development in drying: Recent trends and future prospects . Drying Technology 2004 , 22 , 1 – 26 .
  • Mujumdar , A.S. , Ed. Handbook of Industrial Drying, , 3rd ed. ; CRC Press : Boca Raton , FL , 2007 .
  • Dev , S.R.S. ; Raghavan , V.G.S. Advancements in drying techniques for food, fiber, and fuel . Drying Technology 2012 , 30 , 1147 – 1159 .
  • Osman , H. ; Jangam , S.V. ; Lease , J.D. ; Mujumdar , A.S. Drying of low-rank coal (LRC)—A review of recent patents and innovations . Drying Technology 2011 , 29 , 1763 – 1783 .
  • Iguaz , A. ; Lopez , A. ; Virseda , P. Influence of air recycling on the performance of a continuous rotary dryer for vegetable wholesale by-products . Journal of Food Engineering 2002 , 54 , 289 – 297 .
  • Ståhl , M. ; Berghel , J. Validation of a mathematical model by studying the effects of recirculation of drying gases . Drying Technology 2008 , 26 , 786 – 792 .
  • Tugrul Ogulata , R. Utilization of waste-heat recovery in textile drying . Applied Energy 2004 , 79 , 41 – 49 .
  • Krokida , M.K. ; Bishar , G.I. Heat recovery from dryer exhaust air . Drying Technology 2004 , 22 , 1661 – 1674 .
  • Kemp , I.C. Reducing dryer energy use by process integration and pinch analysis . Drying Technology 2005 , 23 , 2089 – 2104 .
  • Minea , V. Energetic and ecological aspects of softwood drying with high-temperature heat pumps. Drying Technology 2008, 26, 1373–1381.
  • Goh , L.J. ; Othman , M.Y. ; Mat , S. ; Rusian , H. ; Sopian , K. Review of heat pump systems for drying application . Renewable and Sustainable Energy Reviews 2011 , 15 , 4788 – 4796 .
  • Colak , N. ; Hepbasli , A. A review of heat-pump drying (HPD): Part 1—Systems, models and studies . Energy Conversion Management 2009 , 50 , 2180 – 2186 .
  • Colak , N. ; Hepbasli , A. A review of heat-pump drying (HPD): Part 2—Applications and performance . Energy Conversion Management 2009 , 50 , 2187 – 2199 .
  • van Deventer , H.C. ; Hejimans , R.M.H. Drying with superheated steam . Drying Technology 2001 , 19 , 2033 – 2045 .
  • Berghel , J. ; Renstrom , R. Basic design criteria and corresponding results performance of a pilot-scale fluidized superheated atmospheric condition steam dryer . Biomass Bioenergy 2002 , 23 , 103 – 112 .
  • Iyota , H. ; Inoue , T. ; Yamagata , J. ; Nishimura , N. Effect of time-dependent humidity profiles from air to superheated steam on drying of a wetted starch sphere . Drying Technology 2008 , 26 , 211 – 221 .
  • Iyota , H. ; Nishimura , N. ; Yoshida , M. ; Nomura , T. Simulation of superheated steam drying considering initial steam condensation . Drying Technology 2001 , 19 , 1425 – 1440 .
  • Inoue , T. ; Iyota , H. ; Nishimura , N. Prediction method for drying time of wet porous material in humid hot air and superheated steam . Drying Technology 2010 , 28 , 608 – 614 .
  • Uengkimbuan , N. ; Soponronnarit , S. ; Prachayawarakorn , S. ; Nathkaranakule , A. Comperative study of pork drying using superheated steam and hot air . Drying Technology 2006 , 24 , 1665 – 1672 .
  • Soponronnarit , S. ; Prachayawarakorn , S. ; Rordprapat , W. ; Nathakaranakule , A. ; Tia , W. A Superheated-steam fluidized-bed dryer for parboiled rice: Testing of a pilot-scale and mathematical model development . Drying Technology 2006 , 24 , 1457 – 1467 .
  • Hoehne , O. ; Lechner , S. ; Schreiber , M. ; Krautz , H.J. Drying of lignite in a pressurized steam fluidized bed—Theory and experiments . Drying Technology 2010 , 28 , 5 – 19 .
  • Fitzpatrick , J.J. ; Lynch , D. Thermodynamic analysis of the energy saving potential of superheated steam drying . Transactions of the Institution of Chemical Engineers 1995 , 73 , 3 – 8 .
  • Allardice , D.J. ; Chaffee , A.L. ; Jackson , W.R. ; Marshall , M. Water in brown coal and its removal . In Advances in the Science of Victorian Brown Coal ; Li , C.-Z. , Ed.; Elsevier : Oxford , UK : 2004 .
  • Miller , W. Energy conservation in timber-drying kilns by vapor recompression . Forest Products Journal 1977 , 27 , 54 – 58 .
  • Nassikas , A.A. ; Akritidis , C.B. Drying heat pump with water vapour as working medium . Drying Technology 1992 , 10 , 239 – 250 .
  • Shibata , H. ; Mujumdar , A.S. Steam drying technologies: Japanese R&D . Drying Technology 1994 , 12 , 1485 – 1524 .
  • Fehlau , M. ; Specht , E. Optimization of vapor compression for cost savings in drying processes . Chemical Engineering Technology 2000 , 23 , 901 – 908 .
  • Hino , T. Energy-saving drying technology by vapor recompression . Kagaku-souchi 2003 , 45 , 45 – 49 (in Japanese).
  • Hino , T. Possibility of VRC dehydration for energy production from wet biomass . Journal of Japan Institute of Energy 2005 , 84 , 353 – 358 (in Japanese).
  • Namsanguan , Y. ; Tichangtong , S. ; Tia , W. ; Soponronnarit , S. ; Davahastin , S. Simulation of a mixed air and superheated steam drying system . Drying Technology 2005 , 23 , 225 – 248 .
  • Wimmerstedt , R. ; Hager , J. Steam drying—Modelling and applications . Drying Technology 1996 , 14 , 1099 – 1119 .
  • Fushimi , C. ; Kansha , Y. ; Aziz , M. ; Mochidzuki , K. ; Kaneko , S. ; Tsutsumi , A. ; Matsumoto , K. ; Yokohama , K. ; Kosaka , K. ; Kawamoto , N. ; Oura , K. ; Yamaguchi , Y. ; Kinoshita , M. Novel drying process based on self-heat recuperation technology . Drying Technology 2011 , 29 , 105 – 110 .
  • Aziz , M. ; Fushimi , C. ; Kansha , Y. ; Mochidzuki , K. ; Kaneko , S. ; Tsutsumi , A. ; Matsumoto , K. ; Hashimoto , T. ; Kawamoto , N. ; Oura , K. ; Yokohama , K. ; Yamaguchi , Y. ; Kinoshita , M. Innovative energy-efficient biomass drying based on self-heat recuperation technology . Chemical Engineering Technology 2011 , 34 , 1095 – 1103 .
  • Liu , Y. ; Aziz , M. ; Fushimi , C. ; Kansha , Y. ; Mochidzuki , K. ; Kaneko , S. ; Tsutsumi , A. ; Yokohama , K. ; Myoyo , K. ; Oura , K. ; Matsuo , K. ; Sawa , S. ; Shinoda , K. Exergy analysis of biomass drying based on self-heat recuperation technology and its application to industry: A simulation and experimental study . Industrial & Engineering Chemistry Research 2012 , 51 , 9997 – 10007 .
  • Matsuda , K. ; Kansha , Y. ; Fushimi , C. ; Tsutsumi , A. ; Kishimoto , A. Advanced Energy Saving and Its Applications in Industry ; Springer : Heidelberg , Germany , 2012 .
  • Perera , C.O. ; Rahman , M.S. Heat pump dehumidifier drying of food . Trends in Food Science & Technology 1997 , 8 , 75 – 79 .
  • Kansha , Y. ; Kishimoto , A. ; Tsutsumi , A. Process design methodology for high-energy saving HIDiC based on self-heat recuperation . Asia-Pacific Journal of Chemical Engineering 2011 , 6 , 320 – 326 .
  • Simpson , W. ; TenWolde , A. Wood Handbook as an Engineering Material ; Forest Service : Madison , WI , 1999 .
  • Agency for Natural Resources and Energy; The Energy Conservation Center. Summary of Energy Conservation Law 2010/2011. http://www.enecho.meti.go.jp/topics/080801/panfu2010_2011.pdf (accessed August 2013) (in Japanese).
  • Ministry of the Environment of Japan. Guidelines of CO2 Emission Factors. http://www.env.go.jp/earth/ondanka/santeiho/guide/index.html (accessed August 2013) (in Japanese).
  • Tokyo Electric Power Company. CO2 Emission Factors. http://www.tepco.co.jp/cc/press/betu12_j/images/120731j0201.pdf (accessed August 2013) (in Japanese).

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