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Original Articles

Effect of Pyrolysis Temperature on Chemical and Surface Properties of Biochar of Rapeseed (Brassica napus L.)

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REFERENCES

  • Amutio , M , Lopez , G , Artetxe , M , Elordi , G , Olazar , M and Bilbao , J . 2012 . Influence of temperature on biomass pyrolysis in a conical spouted bed reactor . Resour Conserv Recy , 59 : 23 – 31 .
  • Angın , D. 2013 . Effect of pyrolysis temperature and heating rate on biochar obtained from pyrolysis of safflower seed press cake . Bioresource Technol , 128 : 593 – 597 .
  • Chen , Y , Yang , H , Wang , X , Zhang , S and Chen , H . 2012 . Biomass-based pyrolytic polygeneration system on cotton stalk pyrolysis: Influence of temperature . Bioresour Technol , 107 : 411 – 418 .
  • Chen , B and Chen , Z . 2009 . Sorption of naphthalene and 1-naphthol by biochars of orange peels with different pyrolytic temperatures . Chemosphere , 76 : 127 – 133 .
  • Fu , P , Yi , W , Bai , X , Li , Z , Hu , S and Xiang , J . 2011 . Effect of temperature on gas composition and char structural features of pyrolyzed agricultural residues . Bioresour Technol , 102 ( 17 ) : 8211 – 8219 .
  • Galinato , S P , Yoder , J K and Granatstein , D . 2011 . The economic value of biochar in crop production and carbon sequestration . Energ Policy , 39 ( 10 ) : 6344 – 6350 .
  • González , J F , Encinar , J M , Canito , J L , Sabio , E and Chacón , M . 2003 . Pyrolysis of cherry stones: energy uses of the different fractions and kinetic study . J Anal Appl Pyrol , 67 ( 1 ) : 165 – 190 .
  • Gonzáles , J F , Ramiro , A , Gonzáles- Gárcía , C M , Gańán , J , Encinar , J M , Sabio , E and Rubiales , J . 2005 . Pyrolysis of almond shells. Energy applications of fractions . Ind Eng Chem Res , 44 : 3003 – 3012 .
  • Guerrero , M , Ruiz , M P , Alzueta , M U , Bilbao , R and Millera , A . 2005 . Pyrolysis of eucalyptus at different heating rates: studies of char characterization and oxidative reactivity . J Anal Appl Pyrol , 74 ( 1–2 ) : 307 – 314 .
  • Guo , J and Lua , A C . 1998 . Characterization of chars pyrolyzed from oil palm stones for the preparation of activated carbons . J Anal Appl Pyrol , 46 ( 2 ) : 113 – 125 .
  • Haider , S , Bukhari , N , Park , S Y , Iqbal , Y and Al-Masry , W A . 2011 . Adsorption of bromo-phenol blue from an aqueous solution onto thermally modified granular charcoal . Chem Eng Res Des , 89 ( 1 ) : 23 – 28 .
  • Haykiri-Acma , H , Yaman , S and Kucukbayrak , S . 2006 . Effect of heating rate on the pyrolysis yields of rapeseed . Renew Energ , 31 ( 6 ) : 803 – 810 .
  • Hossain , M K , Strezov , V , Chan , K Y , Ziolkowski , A and Nelson , P F . 2011 . Influence of pyrolysis temperature on production and nutrient properties of wastewater sludge biochar . J Environ Manage , 92 ( 1 ) : 223 – 228 .
  • Hu , S , Xiang , J , Sun , L , Xu , M , Qiu , J and Fu , P . 2008 . Characterization of char from rapid pyrolysis of rice husk . Fuel Process Technol , 89 ( 11 ) : 1096 1105
  • Inyang , M , Gao , B , Pullammanappallil , P , Ding , W and Zimmerman , A R . 2010 . Biochar from anaerobically digested sugarcane bagasse . Bioresour Technol , 101 ( 22 ) : 8868 – 8872 .
  • Jindarom , C , Meeyoo , V , Kitiyanan , B , Rirksomboon , T and Rangsunvigit , P . 2007 . Surface characterization and dye adsorptive capacities of char obtained from pyrolysis/gasification of sewage sludge . Chem Eng J , 133 ( 1–3 ) : 239 – 246 .
  • Katyal , S , Thambimuthu , K and Valix , M . 2003 . Carbonisation of bagasse in a fixed bed reactor: influence of process variables on char yield and characteristics . Renew Energ , 28 ( 5 ) : 713 – 725 .
  • Kim , K H , Kim , J Y , Cho , T S and Choi , J W . 2012 . Influence of pyrolysis temperature on physicochemical properties of biochar obtained from the fast pyrolysis of pitch pine (Pinus rigida) . Bioresour Technol , 118 : 158 – 162 .
  • Kim , K H , Kim , T S , Lee , S M , Choi , D , Yeo , H , Choi , I G and Choi , J W . 2013 . Comparison of physicochemical features of biooils and biochars produced from various woody biomasses by fast pyrolysis . Renew Energ , 50 : 188 – 195 .
  • Lehmann , J , Gaunt , J and Rondon , M . 2006 . Bio-char sequestration in terrestrial ecosystems–a review . Mitig Adapt Strat Global Change , 11 : 403 – 27 .
  • Liu , Z , Zhang , F S and Wu , J . 2010 . Characterization and application of chars produced from pinewood pyrolysis and hydrothermal treatment . Fuel , 89 ( 2 ) : 510 – 514 .
  • Maiti , S , Dey , S , Purakayastha , S and Ghosh , B . 2006 . Physical and thermochemical characterization of rice husk char as a potential biomass energy source . Bioresour Technol , 97 ( 16 ) : 2065 – 2070 .
  • McHenry , MP. 2009 . Agricultural bio-char production, renewable energy generation and farm carbon sequestration in Western Australia: Certainty, uncertainty and risk . Agr Ecosyst Environ , 129 : 1 – 7 .
  • Melligan , F , Auccaise , R , Novotny , E H , Leahy , J J , Hayes , M HB and Kwapinski , W . 2011 . Pressurised pyrolysis of Miscanthus using a fixed bed reactor . Bioresour Technol , 102 ( 3 ) : 3466 – 3470 .
  • Mui , E LK , Cheung , W H and McKay , G . 2010 . Tyre char preparation from waste tyre rubber for dye removal from effluents . J Hazard Mater , 175 ( 1–3 ) : 151 – 158 .
  • Sánchez , M E , Lindao , E , Margaleff , D , Martínez , O and Morán , A . 2009 . Pyrolysis of agricultural residues from rape and sunflowers: Production and characterization of bio-fuels and biochar soil management . J Anal Appl Pyrol , 85 ( 1–2 ) : 142 – 144 .
  • Sanna , A , Li , S , Linforth , R , Smart , K A and Andrésen , J M . 2011 . Bio-oil and bio-char from low temperature pyrolysis of spent grains using activated alumina . Bioresour Technol , 102 ( 22 ) : 10695 – 10703 .
  • Shuping , Z , Yulong , W , Mingde , Y , Kaleem , I , Chun , L and Tong , J . 2010 . Production and characterization of bio-oil from hydrothermal liquefaction of microalgae Dunaliella tertiolecta cake . Energ , 35 ( 12 ) : 5406 – 5411 .
  • Şensöz , S , Angın , D and Yorgun , S . 2000a . Influence of particle size on the pyrolysis of rapeseed (Brassica napus L.): fuel properties of bio-oil . Biomass Bioenerg , 19 ( 4 ) : 271 – 279 .
  • Şensöz , S , Angın , D , Yorgun , S and Koçkar , ÖM . 2000b . Biooil Production from an Oilseed Crop: Fixed-Bed Pyrolysis of Rapeseed (Brassica napus L.) . Energ Source , 22 : 891 – 899 .
  • Şensöz , S and Angın , D . 2008 . Pyrolysis of safflower (Charthamus tinctorius L.) seed press cake: Part 1. The effects of pyrolysis parameters on the product yields . Bioresour Technol , 99 ( 13 ) : 5492 – 5497 .
  • Tsui , L and Roy , W R . 2008 . The potential applications of using compost chars for removing the hydrophobic herbicide atrazine from solution . Bioresour Technol , 99 ( 13 ) : 5673 – 5678 .
  • Ucar , S and Ozkan , A R . 2008 . Characterization of products from the pyrolysis of rapeseed oil cake . Bioresour Technol , 99 ( 18 ) : 8771 – 8776 .
  • Yaman , S. 2004 . Pyrolysis of biomass to produce fuels and chemical feedstocks . Energ Convers Manage , 45 ( 5 ) : 651 – 671 .
  • Yao , Y , Gao , B , Inyang , M , Zimmerman , A R , Cao , X , Pullammanappallil , P and Yang , L . 2011 . Biochar derived from anaerobically digested sugar beet tailings: Characterization and phosphate removal potential . Bioresour Technol , 102 ( 10 ) : 6273 – 6278 .
  • Zheng , W , Guo , M , Chow , T , Bennett , D N and Rajagopalan , N . 2010 . Sorption properties of greenwaste biochar for two triazine pesticides . J Hazard Mater , 181 ( 1–3 ) : 121 – 126 .

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