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Drying Technology
An International Journal
Volume 31, 2013 - Issue 11
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Original Articles

Optimization of Microwave Drying Biomass Material of Stem Granules from Waste Tobacco Using Response Surface Methodology

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Pages 1234-1244 | Published online: 25 Aug 2013

REFERENCES

  • Theophilus , E.H. ; Pence , D.H. ; Meckley , D.R. ; Higuchi , M.A. ; Bombick , B.R. ; Borgerding , M.F. ; Ayres , P.H. ; Swauger , J.E. Toxicological evaluation of expanded shredded tobacco stems . Food and Chemical Toxicology 2004 , 42 ( 4 ), 631 – 639 .
  • Davis , D.L. ; Nielsen , M.T. Tobacco: Production, Chemistry and Technology ; Blackwell Science Limited : Oxford , UK , 1999 .
  • Li , W. ; Zhang , L.B. ; Peng , J.H. ; Li , N. ; Zhang , S.M. ; Guo , S.H. Effects of microwave irradiation on the basic properties of wood ceramics made from carbonized tobacco stems impregnated with phenolic resin . Industrial Crops and Products 2008 , 28 ( 2 ), 143 – 154 .
  • Li , W. ; Zhang , L.B. ; Peng , J.H. ; Li , N. ; Zhu , X.Y. Preparation of high surface area activated carbons from tobacco stems with K2CO3 activation using microwave radiation . Industrial Crops and Products 2008 , 27 ( 3 ), 341 – 347 .
  • Yang , Y. ; Li , T. ; Jin , S.P. ; Lin , Y.X. ; Yang , H.P. Catalytic pyrolysis of tobacco rob: Kinetic study and fuel gas produced . Bioresource Technology 2011 , 102 ( 23 ), 11027 – 11033 .
  • Yang , T. ; Li , M. ; Li , S.S. ; Zeng , X.Y. ; Wang , H. ; Yang , W.Z. ; Zhou , C. Physical and chemical changes of tobacco stem and stem granules during microwave expansion . Tobacco Science & Technology (China) 2008 , 2 , 33 – 38 .
  • Wang , H. ; Zeng , X.Y. ; Yang , T. ; Luo , L.L. ; Xiang , C.M. ; Li , M. ; Li , S.S. Evaluation of microwave expanded stem granules applied in cigarette . Tobacco Science & Technology (China) 2008 , 10 , 5 – 8 .
  • Yao , Z.Y. ; Ma , T. ; Wen , D.Q. ; Huang , X.Z. ; Luo , L.L. ; Shen , J.X. Application of expansive tobacco stem granule in cigarette filter. Applied Chemical Industry (China) 2010, 39, 1432–1435.
  • Ozkan , A. ; Akbudak , B. ; Akbudak , N. Microwave drying characteristics of spinach . Journal of Food Engineering 2007 , 78 ( 2 ), 577 – 583 .
  • Al-Harahsheha , M. ; Al-Muhtasebb , A.H. ; Mageec , T.R.A. Microwave drying kinetics of tomato pomace: Effect of osmotic dehydration . Chemical Engineering and Processing 2009 , 48 ( 1 ), 524 – 531 .
  • Askari , G.R. ; Emam-Djomeh , Z. ; Mousavi , S.M. Investigation of the effects of microwave treatment on the optical properties of apple slices during drying . Drying Technology 2008 , 26 ( 11 ), 1362 – 1368 .
  • Song , X.J. ; Zhang , M. ; Mujumdar , A.S. ; Fan , L.P. Drying characteristics and kinetics of vacuum microwave-dried potato slices . Drying Technology 2009 , 27 ( 9 ), 969 – 974 .
  • Hansson , L. ; Antti , A.L. The effect of microwave drying on Norway spruce woods strength: A comparison with conventional drying . Journal of Materials Processing Technology 2003 , 141 ( 1 ), 41 – 50 .
  • Oloyede , A. ; Groombridge , P. The influence of microwave heating on the mechanical properties of wood . Journal of Materials Processing Technology 2006 , 100 ( 1 ), 67 – 73 .
  • Vongpradubchai , S. ; Rattanadecho , P. The microwave processing of wood using a continuous microwave belt drier . Chemical Engineering and Processing 2009 , 48 ( 5 ), 997 – 1003 .
  • Idris , A. ; Khalid , K. ; Omar , W. Drying of silica sludge using microwave heating . Applied Thermal Engineering 2004 , 24 ( 5–6 ), 905 – 918 .
  • Orsat , V. ; Yang , W. ; Changrue , V. ; Raghavan , G.S.V. Microwave-assisted drying of biomaterials . Food and Bioproducts Processing 2007 , 85 ( 3 ), 255 – 263 .
  • Mitra , P. ; Meda , V. Optimization of microwave–vacuum drying parameters of Saskatoon berries using response surface methodology . Drying Technology 2009 , 27 ( 10 ), 1089 – 1096 .
  • Atong , A. ; Ratanadecho , P. ; Vongpradubchai , S. Drying of a slip casting for tableware product using microwave continuous belt dryer . Drying Technology 2006 , 24 ( 5 ), 589 – 594 .
  • Balbay , A. ; Şabin , Ö. Microwave drying kinetics of a thin-layer liquorice root . Drying Technology 2012 , 30 ( 8 ), 859 – 864 .
  • Yi , W.B. ; Zhu , X.Q. ; Wu , W.Q. ; Xi , J.P. ; Mao , W.J. Usability of granular stem in cigarette . Tobacco Science & Technology (China) 2008 , 2 , 13 – 16 .
  • Bas , D. ; Boyac , I.H. Modeling and optimization I: Usability of response surface methodology . Journal of Food Engineering 2007 , 78 ( 3 ), 836 – 845 .
  • Sarabia , L.A. ; Ortiz , M.C. Response surface methodology . In: Brown , S.D. , Walczak , R. , Eds. Comprehensive Chemometrics: Chemical and Biochemical Data Analysis , Vol. 1 ; Elsevier : Oxford , UK , 2009 , 345 – 390 .
  • Fu , J.E. ; Zhao , Y.Q. ; Wu , Q.L. Optimizing photoelectrocatalytic oxidation of fulvic acid using of response surface methodology . Journal of Hazardous Materials 2007 , 144 ( 1–2 ), 499 – 505 .
  • Chen , H. ; Wu , H.Y. Optimization of volatile fatty acid production with co-substrate of food wastes and dewatered excess sludge using response surface methodology . Bioresource Technology 2010 , 101 ( 14 ), 5487 – 5493 .
  • Mao , J. ; Kwak , I.S. ; Sathishkumar , M. ; Sneha , K. ; Yun , Y.S. Preparation of PEI-coated bacterial biosorbent in water solution: Optimization of manufacturing conditions using response surface methodology . Bioresource Technology 2011 , 102 ( 2 ), 1462 – 1467 .
  • Lin , C.W. ; Tran , D.T. ; Lai , C.Y.I.Y.P. ; Wu , C.H. Response surface optimization for ethanol production from Pennisetum alopecoider by Klebsiella oxytoca THLC0409 . Biomass & Bioenergy 2010 , 34 ( 12 ), 1922 – 1929 .
  • Wan , N.W.O. ; Nor , A.S.A. Optimization of heterogeneous biodiesel production from waste cooking palm oil via response surface methodology . Biomass & Bioenergy 2011 , 35 ( 3 ), 1329 – 1338 .
  • Helen , K.M. ; Regupathi , L. ; Magesh , G.P. ; Lima , R.M. Modeling, analysis and optimization of adsorption parameters for H3PO4 activated rubber wood sawdust using response surface methodology (RSM) . Colloids and Surfaces B 2009 , 70 ( 1 ), 35 – 45 .
  • Aghbashlo , M. ; Kianmehr , M.H. ; Nazghelichi , T. ; Rafiee , S. Optimization of an artificial neural network topology for predicting drying kinetics of carrot cubes using combined response surface and genetic algorithm . Drying Technology 2011 , 29 ( 7 ), 770 – 779 .
  • Burande , R.R. ; Kumbhar , B.K. ; Ghosh , P.K. ; Jayas , D.S. Optimization of fluidized bed drying process of green peas using response surface methodology . Drying Technology 2008 , 26 ( 7 ), 920 – 930 .
  • Yuan , Y. ; Gao , Y.X. ; Mao , L.K. ; Zhao , J. Optimisation of conditions for the preparation of b-carotene nanoemulsions using response surface methodology . Food Chemistry 2007 , 107 ( 3 ), 1300 – 1306 .
  • Chandrika , L.P. ; Fereidoon , S. Optimization of extraction of phenolic compounds from wheat using response surface methodology . Food Chemistry 2005 , 93 ( 1 ), 47 – 56 .
  • Ahn , J.H. ; Kim , Y.P. ; Lee , Y.M. ; Seo , E.M. ; Lee , K.W. ; Kim , H.S. Optimization of microencapsulation of seed oil by response surface methodology . Food Chemistry 2008 , 107 ( 1 ), 98 – 105 .
  • Aslan , N. Application of response surface methodology and central composite rotatable design for modeling and optimization of a multi-gravity separator for chromite concentration . Powder Technology 2008 , 185 ( 1 ), 80 – 86 .
  • Zhang , Z.Y. ; Peng , J.H. ; Qu , W.W. ; Zhang , L.B. ; Zhang , Z.B. ; Li , W. ; Wan , R.D. Regeneration of high-performance activated carbon from spent catalyst: Optimization using response surface methodology . Journal of the Taiwan Institute of Chemical Engineers 2009 , 40 ( 5 ), 541 – 548 .
  • Mannan , S. ; Ahmadun , F.R. ; Alam , M.Z. Optimization of process parameters for the bioconversion of activated sluge by Penicillium corylophilum, using response surface methodology . Journal of Environmental Sciences - China 2007 , 19 ( 1 ), 23 – 28 .
  • Myers , R.H. ; Montgomery , D.C. Response Surface Methodology: Process and Product Optimization Using Designed Experiments, , 2nd ed. ; John Wiley & Sons : New York , 2002 .
  • Li , Y. ; Cui , F.J. ; Liu , Z.Q. ; Xu , Y.Y. ; Zhao , H. Improvement of xylanase production by Penicillium oxalicum ZH-30 using response surface methodology . Enzyme and Microbial Technology 2007 , 40 ( 5 ), 1381 – 1388 .

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