Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Symposium <Biochemcal and thermochemical convresion of biomass and their collaboration> | |||||
(9:00–10:00) (Chair: Kumagai S.) | |||||
M301 | Elucidation of factors affecting fermentation rate in aerobic fermentation of woody biomass | wood chip water content C/N ratio | S-10 | 563 | |
M302 | Effect of Grinding Aid Addition on grindability of Woody Biomass (Department of Chemical Eng., Nagoya U.) Murayama Yuka, (Department of Mechanical Eng., Gifu U.) Kobayashi Nobusuke, (Department of Chemical Eng., Nagoya U.) Tanabe Yasuhiro | Grinding aid Woody biomass Cellulose crystallinity | S-10 | 351 | |
M303 | Production of levulinic acid from cellulose through two-step treatments | cellulose levulinic acid solubilization | S-10 | 976 | |
(10:00–11:00) (Chair: Matsumura Y.) | |||||
M304 | [Invited Lecture]Development of simultaneous succharification and co-fermentation (SSCF) process for woody bioethanol production using fast fermentation microorganism | SSCF woody biomass bioethanol | S-10 | 651 | |
M306 | The efficient and stable methan fermentation disposal method of the kitchen garbage using subcritical water | subcritical water kitchen garbage methan fermentaion | S-10 | 20 | |
(11:00–12:00) (Chair: Hasegawa I.) | |||||
M307 | Hydrothermal decompsoition of xylose | Supercritical water Gasification Xylose | S-10 | 470 | |
M308 | Comparative analysis of enzymatic hydrolysis using hydrothermally dissolved cellulose and crystalline cellulose | Hydrothermal dissolution enzymatic hydrolysis cellulose | S-10 | 702 | |
M309 | Enzymatic saccharification of hydrothermal trated moso-bamboo | Hydrothermal treatment Bamboo Enzyme | S-10 | 983 | |
(13:00–14:00) (Chair: Nakashimada Y.) | |||||
M313 | Comparison of Ethanol Production of Simultaneous Saccharification and fermentation (SSF) and Separate Hydrolysis and Fermentation using Cellulose | cellulose fermentation SSF | S-10 | 743 | |
M314 | Optimization of biomass saccharification and efficient production of biosurfactants | lignocellulosic biomass biosurfactant yeast | S-10 | 211 | |
M315 | Characteristics of Enzymatic Hydrolysis of Biomass | Biomass Enzyme Hydrolysis | S-10 | 142 | |
(14:00–15:00) (Chair: Takahashi N.) | |||||
M316 | Conversion into lignin-derived resin material from biomass by combining fomic acid saccharification and aceton treatment | resin material lignin treatments | S-10 | 469 | |
M317 | Calorific Value Change during Carbonization of Bio-drying Sludge | Sludge Calorific value Char | S-10 | 359 | |
M318 | Preparation of porous char by ionothermal carbonization of cellulose | Cellulose Ionic liquid Activated carbon | S-10 | 954 | |
(15:00–16:00) (Chair: Kanna M.) | |||||
M319 | [Invited Lecture]Development of simultaneous succharification and co-fermentation (SSCF) process for woody bioethanol production using fast fermentation microorganism | ammonia salinity anaerobic digestion | S-10 | 655 | |
M321 | Variations in biomass and lipid yields of fresh water microalgae Scenedesmus quadricauda in column photobioreactor | microalga growth lipid production | S-10 | 804 | |
(16:00–17:00) (Chair: Uemura Y.) | |||||
M322 | Improvement of biodiesel solidification at low temperature | Saturated fatty acid Extraction Cloud point | S-10 | 711 | |
M323 | Biodiesel production under supercritical fluids using a novel spiral reactor: a comparative study between methanol and ethanol | Biodiesel Supercritical fluid Spiral reactor | S-10 | 472 | |
M324 | Bio-oil upgrading using Iron-loaded catalysts | bio-oil catalyst deoxygenation | S-10 | 207 |