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HcRX
Hydrocarbon Resources Conversion Group
Analytical technologies
clarify the mechanism of phenomena and help to develop novel conversion processes
Process design technologies
optimize the whole system of conversion processes in nano/micro/macro scales: molecular reaction/reactor/process/ society/environment.
News
Apr. 17, 2020 - Website opened
Apr. 01, 2020 - Group started
HcR-to-X
Hydrocarbon resource, biomass, wastes, petroleum, coal, asphaltene, coke
molecular structure analysis, process analysis
pretreatment, extraction, pyrolysis, gasification, catalytic cracking, fouling
Research topics
(A part of our on-going and finished works)
Molecular structure analysis
Enthalpy/exergy flow analyses
(bio-oil production process)
Fluid dynamics simulation
(biomass conversion processes)
Asphaltene aggregation and fauling analysis by Petroleomics
Molecular aggregation and solubility analyses
Model compounds synthesis and application
Catalytic cracking in steam atmosphere
Chemical looping combustion
Supercritical water upgrading of heavy oil
Organic microsphere
made by subcritical water technology
HyperCoal = Ashless coal
Metallurgical coke making
from low-rank coals
back
Molecular structure analysis
テクノブリッジ
(要登録)
Sato, S. J. Jpn. Petrol. Inst. 40, 46–51 (1997)
麓 恵里, 佐藤 信也, 川又 勇来, 小山 啓人, 吉川 琢也, 中坂 佑太, 多湖 輝興, 増田 隆夫, 第49回石油・石油化学討論会, #2D04
CiNii
Enthalpy/exergy flow analyses
(bio-oil production process)
Enthalpy/exergy flow analyses
Energy/material flow analysis
Process simulation
Cost evaluation
テクノブリッジ
細貝 聡, 鈴木 善三, 日本エネルギー学会機関誌えねるみくす, 2017 年 96 巻 4 号 p. 482-486
Hosokai S, Matsuoka K, Kuramoto K, Suzuki Y. Modification of Dulong's formula to estimate heating value of gas, liquid and solid fuels. Fuel Processing Technology 2016;152:399-405.
Hosokai S, Matsuoka K, Kuramoto K, Suzuki Y. Practical estimation of reaction heat during the pyrolysis of cedar wood. Fuel Processing Technology 2016;154:156-62.
CiNii
Fluid dynamics simulation
(biomass conversion processes)
Mixing process visualization and optimization
テクノブリッジ
CiNii
Asphaltene aggregation and fauling analysis by Petroleomics
Aggregation analysis by light/X-ray scattering measurement
Hansen solubility parameter analysis
Molecular simulation
Petroleomics / Hydrocarbonomics
森本 正人, 田中 隆三, 荒木 貞夫, 山本 秀樹, 森田 剛, 熊谷 治夫, 佐藤 信也, 鷹觜 利公, 日本エネルギー学会機関誌えねるみくす, 2017 年 96 巻 4 号 p. 451-456
森本正人、田中隆三、多成分系溶液の性状推定方法、装置、及びプログラム, 特開2018-18448
Morimoto, M.; Sato, T.; Araki, S.; Tanaka, R.; Yamamoto, H.; Sato, S.; Takanohashi, T., Energy Fuels 2015, 29 (5), 2808-2812.
Morimoto, M.; Imamura, H.; Shibuta, S.; Morita, T.; Nishikawa, K.; Yamamoto, H.; Tanaka, R.; Takanohashi, T., Energy Fuels 2015, 29 (9), 5737-5743.
CiNii
Molecular aggregation and solubility analyses
Aggregation analysis by X-ray scattering measurement at SPring-8 (RIKEN/JASRI)
2017A1550
,
2017B1592
,
2018A1550
,
2019A1759
Hansen solubility parameter analysis
Molecular simulation
Morimoto, M.; Imamura, H.; Shibuta, S.; Morita, T.; Nishikawa, K.; Yamamoto, H.; Tanaka, R.; Takanohashi, T., Energy Fuels 2015, 29 (9), 5737-5743.
Morimoto, M.; Fukatsu, N.; Tanaka, R.; Takanohashi, T.; Kumagai, H.; Morita, T.; Tykwinski, R. R.; Scott, D. E.; Stryker, J. M.; Gray, M. R.; Sato, T.; Yamamoto, H., Energy Fuels 2018, 32 (11), 11296-11303.
Model compounds synthesis and application
Design of molecule to clarify the mechanism of phenomena
Synthesis of the model molecule
Evaluation of the molecule properties such as solubility and reactivity
森本正人, えねるみくす 98(6), 670-675, 2019
Morimoto, M.; Fukatsu, N.; Tanaka, R.; Takanohashi, T.; Kumagai, H.; Morita, T.; Tykwinski, R. R.; Scott, D. E.; Stryker, J. M.; Gray, M. R.; Sato, T.; Yamamoto, H., Energy Fuels 2018, 32 (11), 11296-11303.
Catalytic cracking in steam atmosphere
Effective cracking of heavy oil using hydrogen and oxygen of water (no use of hydrogen)
Characterization of an Iron-Oxide-Based Catalyst Used for Catalytic Cracking of Heavy Oil with Steam Authors: Eri Fumoto; Shinya Sato; Toshimasa Takanohashi Published:Jan 2018 in Energy & Fuels
Upgrading of Heavy Oil with Steam Using Iron Oxide-based Catalyst Authors: Eri Fumoto Published: 2018 in Journal of the Japan Petroleum Institute
CiNii
Chemical looping combustion
産総研LINK
Supercritical water upgrading of heavy oil
Morimoto, M., Sato, S., Takanohashi, T.,
J. Jpn. Petrol. Inst.
,
53
, 61 (2010).
Morimoto, M., Sugimoto, Y., Saotome, Y., Sato, S., Takanohashi, T.,
J. Supercrit. Fluids
,
55
, 223 (2010).
Morimoto, M., Sato, S., Takanohashi, T.,
J. Supercrit. Fluids
,
68
, 113 (2012).
Morimoto, M., Sugimoto, Y., Sato, S., Takanohashi, T.,
J. Jpn. Petrol. Inst.
,
55
, 261 (2012).
Morimoto, M., Sugimoto, Y., Sato, S., Takanohashi, T.,
J. Jpn. Petrol. Inst.
,
57
, 11 (2014).
Morimoto, M., Sugimoto, Y., Sato, S., Takanohashi, T.,
Energy Fuels
,
28
, 858 (2014).
CiNii
Organic microsphere
made by subcritical water technology
Microsphere
森本 正人、鄭 慶新
、鷹觜 利公
、
特開2018-103127
Zheng, Q., Morimoto, M., Takanohashi, T., Fuel, 195, 143 (2017).
Zheng, Q., Morimoto, M., Takanohashi, RSC Adv., 7, 42123 (2017).
Zheng, Q.; Morimoto, M.; Fouquet, T.; Sato, H.; Takanohashi, T., Fuel, 234, 1301 (2018)
Zheng, Q.; Morimoto, M.; Sato, H.; Fouquet, T., Fuel, 235, 944 (2019)
CiNi
Hydrothermal treatment
Zheng, Q. X.; Morimoto, M.; Takanohashi, T., Green Chemistry 2015, 17 (2), 791-794.
Zheng, Q. X.; Morimoto, M.; Takanohashi, T., Fuel 2016, 182, 437-445.
CiNii
HyperCoal = Ashless coal
Ashless coal made by hot solvent extraction
Not only deashing, but also modification and improvement of coal
Takanohashi, T.; Shishido, T.; Kawashima, H.; Saito, I., Fuel 2008, 87 (4), 592-598.
Kawashima, H.; Koyano, K.; Takanohashi, T., Fuel Process. Technol. 2013, 106, 275-280.
Kawashima, H., Changes in sulfur functionality during solvent extraction of coal in HyperCoal production. Fuel Process. Technol. 2019, 188, 105-109.
CiNii
Metallurgical coke making
from low-rank coals
Carbonization control using HyperCoal addition
Pore structure analysis using high-resolution image (original technology)
Contribution to
COURSE50
project
CiNii
R&D for effective conversion of
hydrocarbon resources
Member
Masato Morimoto
Leader, group
Hiroyuki Kawashima
Senior researcher
Hajime Yasuda
Senior researcher
Eri Fumoto
Senior researcher
Sou Hosokai
Senior researcher
Yuya Ono
Researcher
Atul Sharma
Leader, team
Takahiro Murakami
Senior researcher
Martin Keller
Researcher
Technical consultation, etc.
AIST Tsukuba West, 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan
Hydrocarbon Resource Conversion Group
Energy Process Research Institute
National Institute of Advanced Industrial Science and Technology (AIST)
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