Hydrothermal carbonization (HTC) of selected woody and herbaceous biomass feedstocks

A hydrothermal carbonization (HTC) process was applied to six biomass feedstocks—three woody and three herbaceous. Each feedstock was treated in liquid water for 30 min at temperatures ranging from 175 to 295 °C. Gaseous, aqueous, and solid hydrochar products were characterized to examine the effect...

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Published inBiomass conversion and biorefinery Vol. 3; no. 2; pp. 113 - 126
Main Authors Hoekman, S. Kent, Broch, Amber, Robbins, Curtis, Zielinska, Barbara, Felix, Larry
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer-Verlag 01.06.2013
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Abstract A hydrothermal carbonization (HTC) process was applied to six biomass feedstocks—three woody and three herbaceous. Each feedstock was treated in liquid water for 30 min at temperatures ranging from 175 to 295 °C. Gaseous, aqueous, and solid hydrochar products were characterized to examine the effects of process temperature upon product yields, compositions, and energy densification. Thorough mass balance determinations were made for all HTC experiments. With increasing temperature, the mass of solid hydrochar products was reduced, but energy density increased. At temperatures ≥255 °C, hydrochars produced from woody feedstocks had energy contents of 28–30 MJ/kg, comparable to subbituminous coal. Hydrochars produced from herbaceous feedstocks had somewhat lower energy contents. With increasing temperature, the atomic O/C ratio of all samples was reduced from 0.6 to 0.7 in the raw feedstocks to approximately 0.2 in the hydrochars. Gaseous products increased with increasing HTC temperature, reaching 10–12 % at ≥275 °C. The sum of sugar and organic acid yields was typically 8–12 %, although the composition of these aqueous products varied with temperature. Water was produced in yields of 10–20 % at process temperatures of ≥255 °C.
AbstractList A hydrothermal carbonization (HTC) process was applied to six biomass feedstocks—three woody and three herbaceous. Each feedstock was treated in liquid water for 30 min at temperatures ranging from 175 to 295 °C. Gaseous, aqueous, and solid hydrochar products were characterized to examine the effects of process temperature upon product yields, compositions, and energy densification. Thorough mass balance determinations were made for all HTC experiments. With increasing temperature, the mass of solid hydrochar products was reduced, but energy density increased. At temperatures ≥255 °C, hydrochars produced from woody feedstocks had energy contents of 28–30 MJ/kg, comparable to subbituminous coal. Hydrochars produced from herbaceous feedstocks had somewhat lower energy contents. With increasing temperature, the atomic O/C ratio of all samples was reduced from 0.6 to 0.7 in the raw feedstocks to approximately 0.2 in the hydrochars. Gaseous products increased with increasing HTC temperature, reaching 10–12 % at ≥275 °C. The sum of sugar and organic acid yields was typically 8–12 %, although the composition of these aqueous products varied with temperature. Water was produced in yields of 10–20 % at process temperatures of ≥255 °C.
Author Zielinska, Barbara
Broch, Amber
Felix, Larry
Hoekman, S. Kent
Robbins, Curtis
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  surname: Felix
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  organization: Gas Technology Institute
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Cites_doi 10.1002/ep.10385
10.1007/s00374-002-0466-4
10.1016/j.biortech.2007.08.054
10.1016/j.energy.2008.03.007
10.1016/j.biortech.2010.09.111
10.1016/0079-6700(94)90033-7
10.1039/b810100k
10.1021/ef201415s
10.1016/j.jhazmat.2009.01.085
10.1007/s11027-005-9006-5
10.1021/ie0202773
10.1016/j.fuel.2009.07.004
10.1021/ie801387v
10.1007/s10450-005-6004-6
10.1016/j.biombioe.2011.09.025
10.1002/bbb.198
10.4155/bfs.10.81
10.1021/ie9806390
10.1021/ef700292p
10.1016/S1352-2310(98)00026-0
10.1039/b616045j
10.1039/b819318p
10.1002/ep.11615
10.1016/j.biombioe.2010.01.032
10.1021/ef101745n
10.1002/adma.200902812
10.1021/ie00006a022
10.1021/es2004528
10.1016/j.biombioe.2007.01.012
10.1016/j.biombioe.2011.02.022
10.1016/0016-2361(82)90017-5
10.1021/ef901273n
10.1252/jcej.35.1020
10.13031/2013.27766
10.3384/ecp11057508
10.1039/B819318P
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Keywords Solid biofuel
Torrefaction
Hydrochar
Biomass pretreatment
Hydrothermal carbonization
HTC
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PublicationTitle Biomass conversion and biorefinery
PublicationTitleAbbrev Biomass Conv. Bioref
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References Titirici, Thomas, Antonietti (CR13) 2007; 31
Heilmann, Jader, Sadowsky, Schendel, von Keitz, Valentas (CR21) 2011; 35
Fowles (CR15) 2007; 31
Kabyemela, Adschiri, Malaluan, Arai (CR40) 1999; 38
Peterson, Vogel, Lachance, Froling, Antal, Tester (CR4) 2008; 1
CR19
CR17
Mochidzuki, Sato, Sakoda (CR12) 2005; 11
Funke, Ziegler (CR3) 2010; 4
Glaser, Lehmann, Zech (CR16) 2002; 35
Stelte, Clemons, Holm, Sanadi, Ahrenfeldt, Shang (CR28) 2011; 35
Jena, Vaidyanathan, Chinnasamy, Das (CR26) 2011; 102
Liu, Zhang (CR11) 2009; 167
Heilmann, Davis, Jader, Lefebvre, Sadowsky, Schendel (CR24) 2010; 34
Yan, Acharjee, Coronella, Vasquez (CR6) 2009; 28
CR33
CR32
Hu, Wang, Wu, Yu, Antonietti, Titirici (CR10) 2010; 22
Reza, Lynam, Vasquez, Coronella (CR27) 2012; 31
Thomsen, Thygesen, Thomsen (CR35) 2008; 99
Kruse, Gawlik (CR38) 2003; 42
Inoue, Hanaoka, Minowa (CR34) 2002; 35
Garcia-Alba, Torri, Samori, van der Spek, Fabbri, Kersten (CR25) 2012; 26
CR2
Yu, Lou, Wu (CR5) 2008; 22
Yan, Hastings, Acharjee, Coronella, Vasquez (CR7) 2010; 24
Uslu, Faaij, Bergman (CR18) 2008; 33
Mursito, Hirajima, Sasaki (CR23) 2010; 89
Dong, Zhang, Christianson, Funk, Wang, Wang (CR20) 2009; 52
Schuhmacher, Huntjens, van Krevelen (CR36) 1960; 39
Bjerre, Soerensen (CR41) 1992; 31
Knezevic, van Swaaij, Kersten (CR39) 2009; 48
Libra, Ro, Kammann, Funke, Berge, Neubauer (CR8) 2011; 2
CR29
Jaffrezo, Calas, Bouchet (CR31) 1998; 32
Bobleter (CR1) 1994; 19
Titirici, Antonietti (CR9) 2010; 39
Lehmann, Gaunt, Rondon (CR14) 2006; 11
Ruyter (CR37) 1982; 61
Berge, Ro, Mao, Flora, Chappell, Bae (CR22) 2011; 45
Hoekman, Broch, Robbins (CR30) 2011; 25
JP Schuhmacher (66_CR36) 1960; 39
AA Peterson (66_CR4) 2008; 1
66_CR29
O Bobleter (66_CR1) 1994; 19
J Lehmann (66_CR14) 2006; 11
A Funke (66_CR3) 2010; 4
U Jena (66_CR26) 2011; 102
AT Mursito (66_CR23) 2010; 89
S Inoue (66_CR34) 2002; 35
D Knezevic (66_CR39) 2009; 48
Y Yu (66_CR5) 2008; 22
W Stelte (66_CR28) 2011; 35
BM Kabyemela (66_CR40) 1999; 38
K Mochidzuki (66_CR12) 2005; 11
Z Liu (66_CR11) 2009; 167
JL Jaffrezo (66_CR31) 1998; 32
SM Heilmann (66_CR24) 2010; 34
M Fowles (66_CR15) 2007; 31
MT Reza (66_CR27) 2012; 31
JA Libra (66_CR8) 2011; 2
A Uslu (66_CR18) 2008; 33
W Yan (66_CR6) 2009; 28
A Kruse (66_CR38) 2003; 42
66_CR17
B Glaser (66_CR16) 2002; 35
66_CR19
B Hu (66_CR10) 2010; 22
AB Bjerre (66_CR41) 1992; 31
HP Ruyter (66_CR37) 1982; 61
66_CR2
R Dong (66_CR20) 2009; 52
MM Titirici (66_CR9) 2010; 39
L Garcia-Alba (66_CR25) 2012; 26
SK Hoekman (66_CR30) 2011; 25
MH Thomsen (66_CR35) 2008; 99
SM Heilmann (66_CR21) 2011; 35
M-M Titirici (66_CR13) 2007; 31
W Yan (66_CR7) 2010; 24
66_CR32
66_CR33
ND Berge (66_CR22) 2011; 45
References_xml – volume: 28
  start-page: 435
  issue: 3
  year: 2009
  end-page: 440
  ident: CR6
  article-title: Thermal pretreatment of lignocellulosic biomass
  publication-title: Environ Prog Sustain Energy
  doi: 10.1002/ep.10385
– volume: 35
  start-page: 219
  year: 2002
  end-page: 230
  ident: CR16
  article-title: Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal—a review
  publication-title: Biol Fertil Soils
  doi: 10.1007/s00374-002-0466-4
– volume: 99
  start-page: 4221
  year: 2008
  end-page: 4228
  ident: CR35
  article-title: Hydrothermal treatment of wheat straw at pilot plant scale using a three-step reactor system aiming at high hemicellulose recovery, high cellulose digestibility and low lignin hydrolysis
  publication-title: Bioresour Technol
  doi: 10.1016/j.biortech.2007.08.054
– volume: 33
  start-page: 1206
  year: 2008
  end-page: 1223
  ident: CR18
  article-title: Pre-treatment technologies, and their effect on international bioenergy supply chain logistics. techno-economic evaluation of torrefaction, fast pyrolysis and pelletisation
  publication-title: Energy
  doi: 10.1016/j.energy.2008.03.007
– volume: 102
  start-page: 3380
  issue: 3
  year: 2011
  end-page: 3387
  ident: CR26
  article-title: Evaluation of microalgae cultivation using recovered aqueous co-product from thermochemical liquefaction of algal biomass
  publication-title: Bioresour Technol
  doi: 10.1016/j.biortech.2010.09.111
– volume: 19
  start-page: 797
  issue: 5
  year: 1994
  end-page: 841
  ident: CR1
  article-title: Hydrothermal degradation of polymers derived from plants
  publication-title: Prog Polym Sci
  doi: 10.1016/0079-6700(94)90033-7
– ident: CR2
– volume: 1
  start-page: 32
  year: 2008
  end-page: 65
  ident: CR4
  article-title: Thermochemical biofuel production in hydrothermal media: a review of sub- and supercritical water technologies
  publication-title: Energy Environ Sci
  doi: 10.1039/b810100k
– volume: 26
  start-page: 642
  issue: 1
  year: 2012
  end-page: 657
  ident: CR25
  article-title: Hydrothermal treatment (HTT) of microalgae: evaluation of the process as conversion method in an algae biorefinery concept
  publication-title: Energy Fuel
  doi: 10.1021/ef201415s
– volume: 167
  start-page: 933
  year: 2009
  end-page: 939
  ident: CR11
  article-title: Removal of lead from water using biochars prepared from hydrothermal liquefaction of biomass
  publication-title: J Hazard Mater
  doi: 10.1016/j.jhazmat.2009.01.085
– volume: 11
  start-page: 403
  year: 2006
  end-page: 427
  ident: CR14
  article-title: Bio-char sequestration in terrestrial ecosystems—a review
  publication-title: Mitig Adapt Strateg Glob Chang
  doi: 10.1007/s11027-005-9006-5
– ident: CR33
– volume: 42
  start-page: 267
  year: 2003
  end-page: 279
  ident: CR38
  article-title: Biomass conversion in water at 330–410 °C and 30–50 MPa. Identification of key compounds for indicating different chemical reaction pathways
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie0202773
– volume: 89
  start-page: 635
  year: 2010
  end-page: 641
  ident: CR23
  article-title: Upgrading and dewatering of raw tropical peat by hydrothermal treatment
  publication-title: Fuel
  doi: 10.1016/j.fuel.2009.07.004
– ident: CR29
– volume: 48
  start-page: 4731
  year: 2009
  end-page: 4743
  ident: CR39
  article-title: Hydrothermal conversion of biomass: I. Glucose conversion in hot compressed water
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie801387v
– volume: 11
  start-page: 669
  year: 2005
  end-page: 673
  ident: CR12
  article-title: Production and characterization of carbonaceous adsorbents from biomass wastes by aqueous phase carbonization
  publication-title: Adsorption
  doi: 10.1007/s10450-005-6004-6
– volume: 35
  start-page: 4690
  year: 2011
  end-page: 4698
  ident: CR28
  article-title: Pelletizing properties of torrefied spruce
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2011.09.025
– volume: 39
  start-page: 223
  issue: 3
  year: 1960
  end-page: 234
  ident: CR36
  article-title: Chemical structure and properties of coal XXVI—studies on artificial coalification
  publication-title: Fuel
– volume: 4
  start-page: 160
  year: 2010
  end-page: 177
  ident: CR3
  article-title: Hydrothermal carbonization of biomass: a summary and discussion of chemical mechanisms for process engineering
  publication-title: Biofuels, Bioprod Biorefin
  doi: 10.1002/bbb.198
– volume: 2
  start-page: 89
  issue: 1
  year: 2011
  end-page: 124
  ident: CR8
  article-title: Hydrothermal carbonization of biomass residuals: a comparative review of the chemistry, processes and applications of wet and dry pyrolysis
  publication-title: Biofuels
  doi: 10.4155/bfs.10.81
– volume: 38
  start-page: 2888
  issue: 8
  year: 1999
  end-page: 2895
  ident: CR40
  article-title: Glucose and fructose decomposition in subcritical and supercritical water: detailed reaction pathway, mechanisms, and kinetics
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie9806390
– volume: 22
  start-page: 46
  year: 2008
  end-page: 60
  ident: CR5
  article-title: Some recent advances in hydrolysis of biomass in hot-compressed water and its comparisons with other hydrolysis methods
  publication-title: Energy Fuel
  doi: 10.1021/ef700292p
– volume: 32
  start-page: 2705
  issue: 14–15
  year: 1998
  end-page: 2708
  ident: CR31
  article-title: Carboxylic acids measurements with ionic chromatography
  publication-title: Atmos Environ
  doi: 10.1016/S1352-2310(98)00026-0
– ident: CR19
– volume: 31
  start-page: 787
  year: 2007
  end-page: 789
  ident: CR13
  article-title: Back in the black: hydrothermal carbonization of plant material as an efficient chemical process to treat the CO problem?
  publication-title: New J Chem
  doi: 10.1039/b616045j
– volume: 39
  start-page: 103
  year: 2010
  end-page: 116
  ident: CR9
  article-title: Chemistry and materials options of sustainable carbon materials made by hydrothermal carbonization
  publication-title: Chem Soc Rev
  doi: 10.1039/b819318p
– volume: 31
  start-page: 225
  year: 2012
  end-page: 234
  ident: CR27
  article-title: Pelletization of biochar from hydrothermally carbonized wood
  publication-title: Environ Prog Sustain Energy
  doi: 10.1002/ep.11615
– volume: 34
  start-page: 875
  issue: 6
  year: 2010
  end-page: 882
  ident: CR24
  article-title: Hydrothermal carbonization of microalgae
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2010.01.032
– ident: CR17
– volume: 25
  start-page: 1802
  year: 2011
  end-page: 1810
  ident: CR30
  article-title: Hydrothermal carbonization (HTC) of lignocellulosic biomass
  publication-title: Energy Fuel
  doi: 10.1021/ef101745n
– volume: 22
  start-page: 813
  year: 2010
  end-page: 828
  ident: CR10
  article-title: Engineering carbon materials from the hydrothermal carbonization process of biomass
  publication-title: Adv Mater
  doi: 10.1002/adma.200902812
– ident: CR32
– volume: 31
  start-page: 1574
  issue: 6
  year: 1992
  end-page: 1577
  ident: CR41
  article-title: Thermal decomposition of dilute aqueous formic acid solutions
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie00006a022
– volume: 45
  start-page: 5696
  issue: 13
  year: 2011
  end-page: 5703
  ident: CR22
  article-title: Hydrothermal carbonization of municipal waste streams
  publication-title: Environ Sci Technol
  doi: 10.1021/es2004528
– volume: 31
  start-page: 426
  year: 2007
  end-page: 432
  ident: CR15
  article-title: Black carbon sequestration as an alternative to bioenergy
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2007.01.012
– volume: 35
  start-page: 2526
  year: 2011
  end-page: 2533
  ident: CR21
  article-title: Hydrothermal carbonization of distiller’s grains
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2011.02.022
– volume: 61
  start-page: 1182
  year: 1982
  end-page: 1187
  ident: CR37
  article-title: Coalification model
  publication-title: Fuel
  doi: 10.1016/0016-2361(82)90017-5
– volume: 52
  start-page: 1239
  issue: 4
  year: 2009
  end-page: 1248
  ident: CR20
  article-title: Product distribution and implication of hydrothermal comversion of swine manure at low temperatures
  publication-title: Trans ASABE
– volume: 24
  start-page: 4738
  issue: 9
  year: 2010
  end-page: 4742
  ident: CR7
  article-title: Mass and energy balances of wet torrefaction of lignocellulosic biomass
  publication-title: Energy Fuel
  doi: 10.1021/ef901273n
– volume: 35
  start-page: 1020
  issue: 10
  year: 2002
  end-page: 1023
  ident: CR34
  article-title: Hot compressed water treatment for production of charcoal from wood
  publication-title: J Chem Eng Jpn
  doi: 10.1252/jcej.35.1020
– volume: 19
  start-page: 797
  issue: 5
  year: 1994
  ident: 66_CR1
  publication-title: Prog Polym Sci
  doi: 10.1016/0079-6700(94)90033-7
– volume: 35
  start-page: 2526
  year: 2011
  ident: 66_CR21
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2011.02.022
– volume: 38
  start-page: 2888
  issue: 8
  year: 1999
  ident: 66_CR40
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie9806390
– volume: 4
  start-page: 160
  year: 2010
  ident: 66_CR3
  publication-title: Biofuels, Bioprod Biorefin
  doi: 10.1002/bbb.198
– volume: 31
  start-page: 426
  year: 2007
  ident: 66_CR15
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2007.01.012
– volume: 31
  start-page: 225
  year: 2012
  ident: 66_CR27
  publication-title: Environ Prog Sustain Energy
  doi: 10.1002/ep.11615
– volume: 32
  start-page: 2705
  issue: 14–15
  year: 1998
  ident: 66_CR31
  publication-title: Atmos Environ
  doi: 10.1016/S1352-2310(98)00026-0
– ident: 66_CR2
– volume: 42
  start-page: 267
  year: 2003
  ident: 66_CR38
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie0202773
– volume: 102
  start-page: 3380
  issue: 3
  year: 2011
  ident: 66_CR26
  publication-title: Bioresour Technol
  doi: 10.1016/j.biortech.2010.09.111
– volume: 22
  start-page: 46
  year: 2008
  ident: 66_CR5
  publication-title: Energy Fuel
  doi: 10.1021/ef700292p
– volume: 167
  start-page: 933
  year: 2009
  ident: 66_CR11
  publication-title: J Hazard Mater
  doi: 10.1016/j.jhazmat.2009.01.085
– volume: 31
  start-page: 787
  year: 2007
  ident: 66_CR13
  publication-title: New J Chem
  doi: 10.1039/b616045j
– volume: 52
  start-page: 1239
  issue: 4
  year: 2009
  ident: 66_CR20
  publication-title: Trans ASABE
  doi: 10.13031/2013.27766
– ident: 66_CR17
– volume: 45
  start-page: 5696
  issue: 13
  year: 2011
  ident: 66_CR22
  publication-title: Environ Sci Technol
  doi: 10.1021/es2004528
– volume: 48
  start-page: 4731
  year: 2009
  ident: 66_CR39
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie801387v
– volume: 39
  start-page: 223
  issue: 3
  year: 1960
  ident: 66_CR36
  publication-title: Fuel
– volume: 11
  start-page: 669
  year: 2005
  ident: 66_CR12
  publication-title: Adsorption
  doi: 10.1007/s10450-005-6004-6
– ident: 66_CR19
  doi: 10.3384/ecp11057508
– ident: 66_CR32
– volume: 26
  start-page: 642
  issue: 1
  year: 2012
  ident: 66_CR25
  publication-title: Energy Fuel
  doi: 10.1021/ef201415s
– volume: 11
  start-page: 403
  year: 2006
  ident: 66_CR14
  publication-title: Mitig Adapt Strateg Glob Chang
  doi: 10.1007/s11027-005-9006-5
– volume: 89
  start-page: 635
  year: 2010
  ident: 66_CR23
  publication-title: Fuel
  doi: 10.1016/j.fuel.2009.07.004
– volume: 35
  start-page: 1020
  issue: 10
  year: 2002
  ident: 66_CR34
  publication-title: J Chem Eng Jpn
  doi: 10.1252/jcej.35.1020
– volume: 33
  start-page: 1206
  year: 2008
  ident: 66_CR18
  publication-title: Energy
  doi: 10.1016/j.energy.2008.03.007
– ident: 66_CR29
– volume: 31
  start-page: 1574
  issue: 6
  year: 1992
  ident: 66_CR41
  publication-title: Ind Eng Chem Res
  doi: 10.1021/ie00006a022
– volume: 2
  start-page: 89
  issue: 1
  year: 2011
  ident: 66_CR8
  publication-title: Biofuels
  doi: 10.4155/bfs.10.81
– ident: 66_CR33
– volume: 24
  start-page: 4738
  issue: 9
  year: 2010
  ident: 66_CR7
  publication-title: Energy Fuel
  doi: 10.1021/ef901273n
– volume: 34
  start-page: 875
  issue: 6
  year: 2010
  ident: 66_CR24
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2010.01.032
– volume: 99
  start-page: 4221
  year: 2008
  ident: 66_CR35
  publication-title: Bioresour Technol
  doi: 10.1016/j.biortech.2007.08.054
– volume: 22
  start-page: 813
  year: 2010
  ident: 66_CR10
  publication-title: Adv Mater
  doi: 10.1002/adma.200902812
– volume: 35
  start-page: 219
  year: 2002
  ident: 66_CR16
  publication-title: Biol Fertil Soils
  doi: 10.1007/s00374-002-0466-4
– volume: 25
  start-page: 1802
  year: 2011
  ident: 66_CR30
  publication-title: Energy Fuel
  doi: 10.1021/ef101745n
– volume: 61
  start-page: 1182
  year: 1982
  ident: 66_CR37
  publication-title: Fuel
  doi: 10.1016/0016-2361(82)90017-5
– volume: 39
  start-page: 103
  year: 2010
  ident: 66_CR9
  publication-title: Chem Soc Rev
  doi: 10.1039/B819318P
– volume: 35
  start-page: 4690
  year: 2011
  ident: 66_CR28
  publication-title: Biomass Bioenergy
  doi: 10.1016/j.biombioe.2011.09.025
– volume: 1
  start-page: 32
  year: 2008
  ident: 66_CR4
  publication-title: Energy Environ Sci
  doi: 10.1039/b810100k
– volume: 28
  start-page: 435
  issue: 3
  year: 2009
  ident: 66_CR6
  publication-title: Environ Prog Sustain Energy
  doi: 10.1002/ep.10385
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Snippet A hydrothermal carbonization (HTC) process was applied to six biomass feedstocks—three woody and three herbaceous. Each feedstock was treated in liquid water...
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SubjectTerms Biotechnology
Energy
Original Article
Renewable and Green Energy
Title Hydrothermal carbonization (HTC) of selected woody and herbaceous biomass feedstocks
URI https://link.springer.com/article/10.1007/s13399-012-0066-y
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