Energy optimization of bio-oil production from biomass by fast pyrolysis using microwaves
文献情報
Lilivet Ubiera, Isabelle Polaert, Michel Delmotte, Lokmane Abdelouahed, Bechara Taouk
Microwave pyrolysis is relatively new and has become an interesting option for the treatment of biomass residue due to its energy efficiency and high-quality products. The objective of this work was to investigate the microwave pyrolysis of flax shives and the influence of the operating conditions on product yield and quality. Three phases of pyrolysis, i.e., dehydration, primary devolatilization and passive lignin/residue degradation, were identified during microwave irradiation. Bio-oil production was clearly found to depend on two main parameters, which are the energy absorbed and the internal heating rate of the system. The optimal condition for the production of bio-oil was found to be around 13 000 J g−1 of treated flax shives, with a tendency to increase with the energy absorbed before going through a maximum, followed by a slight decrease, resulting in the production of gas. High heating rates of at least 120 °C min−1 and up to 200 °C min−1 provided the best bio-oil yields, which can only be achieved via microwave technology by internal heating. The bio-oil and gas quality in terms of chemical families was also discussed. It was found that the principal chemical families in bio-oil are carboxylic acids, ketones and phenols, where carboxylic acids are the dominant group. The four main compounds present in the produced gas are H2, CO, CH4 and CO2, where CO and H2 are the most abundant with concentrations of 43% and 31%, respectively. This work is a preliminary and essential step for an industrial transposition, the key features of which are finally examined.
おすすめジャーナル

Polycyclic Aromatic Compounds

Main Group Chemistry

Topics in Catalysis

Journal of Chemical Sciences

Journal of Asian Natural Products Research

Herald of the Russian Academy of Sciences

Acta Metallurgica Sinica-English Letters

Journal of the Indian Institute of Science

Chinese Journal of Chemistry

Bioorganic & Medicinal Chemistry
関連文献
Pressure effects and Mössbauer spectroscopic studies on a 3D mixed-valence iron spin-crossover complex with NiAs topology
Yue-Ling Bai, Jun Tao, Rong-Bin Huang, Lan-Sun Zheng, Shao-Liang Zheng, Kazuyoshi Oshida, Yasuaki Einaga
DOI: 10.1039/B718456E
Single microbead SELEX for efficient ssDNA aptamer generation against botulinum neurotoxin‡
Jeffrey B.-H. Tok, Nicholas O. Fischer
DOI: 10.1039/B717936G
Accelerating charge transfer in a triphenylamine–subphthalocyanine donor–acceptor system
Anaïs Medina, Christian G. Claessens, G. M. Aminur Rahman, Al Mokhtar Lamsabhi, Otilia Mó, Manuel Yáñez, Dirk M. Guldi, Tomás Torres
DOI: 10.1039/B719226F
Synthesis and reactivity of tetrakis(imino)pyracene (TIP) ligands; bifunctional analogues of the BIAN ligand class
Kalyan V. Vasudevan, Michael Findlater, Alan H. Cowley
DOI: 10.1039/B719251G
Macromolecular complexation of poly(methylenephosphine) to gold(i): a facile route to highly metallated polymers
Bronwyn H. Gillon, Brian O. Patrick, Derek P. Gates
DOI: 10.1039/B719199E
Recent progress in the immobilization of catalysts for selective oxidation in the liquid phase
Luc Alaerts, Joos Wahlen, Pierre A. Jacobs, Dirk E. De Vos
DOI: 10.1039/B715691J
High-level QM/MM modelling predicts an arginine as the acid in the condensation reaction catalysed by citrate synthase
Marc W. van der Kamp, Adrian J. Mulholland
DOI: 10.1039/B800496J
Inhibition and dispersion of proteobacterial biofilms
Justin J. Richards, Robert W. Huigens III, T. Eric Ballard, Anne Basso, John Cavanagh, Christian Melander
DOI: 10.1039/B719802G
こちらもおすすめ
3-イチチルビフェニルはどのように合成されますか?
3-イチチルビフェニルは、ビフェニルとイチプロピオニトリルを回収率約90%で反応させて合成されます。触媒は通常、亜リチウムホウ素を用います。
8-溴-5-三氟甲基喹啉はどのように合成されますか?
8-溴-5-三氟甲基喹啉は、5-トリフルオロメチル-2-メチル-1,3-ベンゼンジオールをブロモエタノールと反応させて生成します。この反応は塩基性条件下で行われ...
ジメチル4-(4,4,5,5-テトラメチル-1,3,2-ドioxaborolan-2-基)-2,6-ピリジンジカルボイル酸フェニルアミニドの代替品はありますか?
ジメチル4-(4,4,5,5-テトラメチル-1,3,2-ドioxaborolan-2-基)-2,6-ピリジンジカルボイル酸フェニルアミニドの代替品としては、4-...
N-(3,5-ヘキサクロロ-4-ピリドインイル)-8-メチオキシ-5-キノリンカーボン酸の市場動向や研究トレンドはどのようなものでしょうか?
N-(3,5-ヘキサクロロ-4-ピリドインイル)-8-メチオキシ-5-キノリンカーボン酸の市場動向は、主に産業用途での需要により影響を受けます。研究トレンドとし...
イソステアロイルグリセリルは安全ですか?
イソステアロイルグリセリルは一般的に安全性が高いとされていますが、過度な使用や個人差により皮�owsん炎などの反応が起こる可能性があります。使用前に医師に相談す...
1-(二苯甲基)-3,3-二氟-氮杂环丁烷の市場動向や研究トレンドはどうですか?
1-(二苯甲基)-3,3-二氟-氮杂环丁烷の市場動向は、医薬品や合成化学の研究分野で注目を集めています。新興研究は、該当化合物の合成改良と生体内での作用メカニズ...
3-チオフェンスチオールの物理化学的性質は何ですか?
3-チオフェンスチオールのCAS番号は7774-73-4です。結晶性の白色粉末で、分子量は122.17です。この化合物は水に微溶解し、エタノールやジクロロメタン...
2-Methyl-2-propanyl (2S)-2-(aminomethyl)-1-piperidinecarboxylateは安全ですか?
2-Methyl-2-propanyl (2S)-2-(aminomethyl)-1-piperidinecarboxylateは一定の安全性基準を満たしていま...
CAS番号1316822-90-8の化合物は安全ですか?
CAS番号1316822-90-8の化合物は安全性に関しては評価が不足していますが、一般的には生物学的に活性な物質であり、取り扱いには適切な安全防護措置が必要で...
Tert-butyl 2-(2-羟基乙基)哌嗪-1-羧酸はどのように保存すればよいですか?
Tert-butyl 2-(2-羟基乙基)哌嗪-1-羧酸は、冷暗所で保存し、直射日光から遠ざけてください。容器は密閉し、高湿度や高温を避けて保管してください。
掲載誌
Reaction Chemistry & Engineering

Reaction Chemistry & Engineering is an interdisciplinary journal reporting cutting-edge research focused on enhancing the understanding and efficiency of reactions. Reaction engineering leverages the interface where fundamental molecular chemistry meets chemical engineering and technology. Challenges in chemistry can be overcome by the application of new technologies, while engineers may find improved solutions for process development from the latest developments in reaction chemistry. Reaction Chemistry & Engineering is a unique forum for researchers whose interests span the broad areas of chemical engineering and chemical sciences to come together in solving problems of importance to wider society. All papers should be written to be approachable by readers across the engineering and chemical sciences. Papers that consider multiple scales, from the laboratory up to and including plant scale, are particularly encouraged.

![1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure 1-(1-Benzyl-1,2,3,6-tetrahydropyridin-4-yl)-1H-benzo[d]imidazol-2(3H)-one structure](https://static.chemtradehub.com/structs/603/60373-71-9-7dfb.webp)


