92
3 Advanced Technologies (Biological and Thermochemical) …
43. Karagöz S, Bhaskar T, Muto A, Sakata Y (2006) Hydrothermal upgrading of biomass: effect
of K 2 CO 3 concentration and biomass/water ratio on products distribution. Bioresour Technol
97(1):90–98
44. Shuping Z, Yulong W, Mingde Y, Kaleem I, Chun L, Tong J (2010) Production and characterization of bio-oil from hydrothermal liquefaction of microalgae Dunaliella tertiolecta cake.
Energy 35(12):5406–5411
45. Ross AB, Biller P, Kubacki ML, Li H, Lea-Langton A, Jones JM (2010) Hydrothermal
processing of microalgae using alkali and organic acids. Fuel 89(9):2234–2243
46. Minowa T, Masanori M, Yutaka D, Tomoko O, Shin-Ya Y (1995) Oil production from garbage
by thermochemical liquefaction. Biomass Bioenergy 8(2):117–120
47. Sun P, Heng M, Sun S, Chen J (2010) Direct liquefaction of paulownia in hot compressed
water: influence of catalysts. Energy 35(12):5421–5429
48. Zhang L, Xu CC, Champagne P (2010) Energy recovery from secondary pulp/paper-mill
sludge and sewage sludge with supercritical water treatment. Bioresour Technol 101(8):2713–
2721
49. Xu C, Lancaster J (2008) Conversion of secondary pulp/paper sludge powder to liquid oil
products for energy recovery by direct liquefaction in hot-compressed water. Water Res 42(6–
7):1571–1582
50. Lemoine F et al (2013) Alternative fuel production by catalytic hydroliquefaction of solid
municipal wastes, primary sludges and microalgae. Bioresour Technol 142:1–8
51. Xu C (Charles), Nazari L, Ray MB (2020) Hydrothermal liquefaction co-processing of
wastewater sludge and lignocellulosic biomass for co-production of biogas and bio-oils. US
10,689,282 B2
52. Nazari L, Yuan Z, Ray MB, Xu C (Charles) (2017) Co-conversion of waste activated sludge
and sawdust through hydrothermal liquefaction: optimization of reaction parameters using
response surface methodology. Appl Energy 203:1–10
53. Shayan E, Zare V, Mirzaee I (2018) Hydrogen production from biomass gasification;
a theoretical comparison of using different gasification agents. Energy Convers Manag
159:30–41
54. Shahbaz M, Yusup S, Inayat A, Patrick DO, Ammar M (2017) The influence of catalysts
in biomass steam gasification and catalytic potential of coal bottom ash in biomass steam
gasification: a review. Renew Sustain Energy Rev 73:468–476
55. Ahmad AA, Zawawi NA, Kasim FH, Inayat A, Khasri A (2016) Assessing the gasification
performance of biomass: a review on biomass gasification process conditions, optimization
and economic evaluation. Renew Sustain Energy Rev 53:1333–1347
56. Udomsirichakorn J, Salam PA (2014) Review of hydrogen-enriched gas production from
steam gasification of biomass: the prospect of CaO-based chemical looping gasification.
Renew Sustain Energy Rev 30:565–579
57. Gao N, Li A, Quan C, Qu Y, Mao L (2012) Characteristics of hydrogen-rich gas production
of biomass gasification with porous ceramic reforming. Int J Hydrogen Energy 37(12):9610–
9618
58. Moghadam RA, Yusup S, Uemura Y, Chin BLF, Lam HL, Al Shoaibi A (2014) Syngas
production from palm kernel shell and polyethylene waste blend in fluidized bed catalytic
steam co-gasification process. Energy 75:40–44
59. Weijin G, Binbin L, Qingyu W, Zuohua H, Liang Z (2017) Supercritical water gasification
of landfill leachate for hydrogen production in the presence and absence of alkali catalyst.
Waste Manag 73:439–446
60. Yakaboylu O et al (2016) Supercritical water gasification of biomass in fluidized bed: First
results and experiences obtained from TU Delft/Gensos semi-pilot scale setup. Biomass
Bioenergy 111:330–342
61. Amrullah A, Matsumura Y (2018) Supercritical water gasification of sewage sludge in
continuous reactor. Bioresour Technol 249:276–283
62. Xiao Y, Xu S, Song Y, Shan Y, Wang C, Wang G (2017) Biomass steam gasification for
hydrogen-rich gas production in a decoupled dual loop gasification system. Fuel Process
Technol 165:54–61
3 Advanced Technologies (Biological and Thermochemical) …
43. Karagöz S, Bhaskar T, Muto A, Sakata Y (2006) Hydrothermal upgrading of biomass: effect
of K 2 CO 3 concentration and biomass/water ratio on products distribution. Bioresour Technol
97(1):90–98
44. Shuping Z, Yulong W, Mingde Y, Kaleem I, Chun L, Tong J (2010) Production and characterization of bio-oil from hydrothermal liquefaction of microalgae Dunaliella tertiolecta cake.
Energy 35(12):5406–5411
45. Ross AB, Biller P, Kubacki ML, Li H, Lea-Langton A, Jones JM (2010) Hydrothermal
processing of microalgae using alkali and organic acids. Fuel 89(9):2234–2243
46. Minowa T, Masanori M, Yutaka D, Tomoko O, Shin-Ya Y (1995) Oil production from garbage
by thermochemical liquefaction. Biomass Bioenergy 8(2):117–120
47. Sun P, Heng M, Sun S, Chen J (2010) Direct liquefaction of paulownia in hot compressed
water: influence of catalysts. Energy 35(12):5421–5429
48. Zhang L, Xu CC, Champagne P (2010) Energy recovery from secondary pulp/paper-mill
sludge and sewage sludge with supercritical water treatment. Bioresour Technol 101(8):2713–
2721
49. Xu C, Lancaster J (2008) Conversion of secondary pulp/paper sludge powder to liquid oil
products for energy recovery by direct liquefaction in hot-compressed water. Water Res 42(6–
7):1571–1582
50. Lemoine F et al (2013) Alternative fuel production by catalytic hydroliquefaction of solid
municipal wastes, primary sludges and microalgae. Bioresour Technol 142:1–8
51. Xu C (Charles), Nazari L, Ray MB (2020) Hydrothermal liquefaction co-processing of
wastewater sludge and lignocellulosic biomass for co-production of biogas and bio-oils. US
10,689,282 B2
52. Nazari L, Yuan Z, Ray MB, Xu C (Charles) (2017) Co-conversion of waste activated sludge
and sawdust through hydrothermal liquefaction: optimization of reaction parameters using
response surface methodology. Appl Energy 203:1–10
53. Shayan E, Zare V, Mirzaee I (2018) Hydrogen production from biomass gasification;
a theoretical comparison of using different gasification agents. Energy Convers Manag
159:30–41
54. Shahbaz M, Yusup S, Inayat A, Patrick DO, Ammar M (2017) The influence of catalysts
in biomass steam gasification and catalytic potential of coal bottom ash in biomass steam
gasification: a review. Renew Sustain Energy Rev 73:468–476
55. Ahmad AA, Zawawi NA, Kasim FH, Inayat A, Khasri A (2016) Assessing the gasification
performance of biomass: a review on biomass gasification process conditions, optimization
and economic evaluation. Renew Sustain Energy Rev 53:1333–1347
56. Udomsirichakorn J, Salam PA (2014) Review of hydrogen-enriched gas production from
steam gasification of biomass: the prospect of CaO-based chemical looping gasification.
Renew Sustain Energy Rev 30:565–579
57. Gao N, Li A, Quan C, Qu Y, Mao L (2012) Characteristics of hydrogen-rich gas production
of biomass gasification with porous ceramic reforming. Int J Hydrogen Energy 37(12):9610–
9618
58. Moghadam RA, Yusup S, Uemura Y, Chin BLF, Lam HL, Al Shoaibi A (2014) Syngas
production from palm kernel shell and polyethylene waste blend in fluidized bed catalytic
steam co-gasification process. Energy 75:40–44
59. Weijin G, Binbin L, Qingyu W, Zuohua H, Liang Z (2017) Supercritical water gasification
of landfill leachate for hydrogen production in the presence and absence of alkali catalyst.
Waste Manag 73:439–446
60. Yakaboylu O et al (2016) Supercritical water gasification of biomass in fluidized bed: First
results and experiences obtained from TU Delft/Gensos semi-pilot scale setup. Biomass
Bioenergy 111:330–342
61. Amrullah A, Matsumura Y (2018) Supercritical water gasification of sewage sludge in
continuous reactor. Bioresour Technol 249:276–283
62. Xiao Y, Xu S, Song Y, Shan Y, Wang C, Wang G (2017) Biomass steam gasification for
hydrogen-rich gas production in a decoupled dual loop gasification system. Fuel Process
Technol 165:54–61
