A two-step modelling approach for plasma reactors – experimental validation for CO2 dissociation in surface wave microwave plasma
文献情報
Sergio H. Moreno, Andrzej I. Stankiewicz, Georgios D. Stefanidis
Plasma reactors have the potential to enable CO2 utilization technologies and so there is need to investigate their performance from a chemical or process engineering perspective. Multiphysics models are excellent tools to carry out this analysis; however, practical engineering models of plasma reactors are limited. Herein a two-step modelling approach for plasma reactors is presented. In the first step, a 2D plasma reactor model with a simple chemistry is used to characterize the discharge. The result of this step is used in the second step to develop a global (volume averaged) model of the reactor with the actual chemistry. The approach is applied in the case of CO2 dissociation in a non-thermal surface wave microwave plasma reactor. Preliminary calculations reveal the need to include the vibrationally enhanced dissociation of CO2 in the chemistry of the model. Reduced vibrational kinetics are employed for this purpose by introducing the fictitious species . The model predictions are compared to experimental results to validate the model and obtain insight into the performance of the reactor. In comparison to the experimental results the conversions obtained with the model are underestimated between 11% and 25%. The dominant dissociation paths in the plasma reactor are also identified. Further calculations are performed to show the importance of an approximate description of the power deposition. Limitations of the approach are discussed as well, especially those with major contribution to the discrepancies between experimental and modelling results.
関連文献
Clarifying the role of sodium in the silica oligomerization reaction
Anna Pavlova, Thuat T. Trinh, Rutger A. van Santen, Evert Jan Meijer
DOI: 10.1039/C2CP42436C
Understanding the different activities of highly promiscuous MbtI by computational methods
Silvia Ferrer, Sergio Martí, Vicent Moliner, Iñaki Tuñón, Juan Bertrán
DOI: 10.1039/C2CP23149B
An advanced sodium-ion rechargeable battery based on a tin–carbon anode and a layered oxide framework cathode
Seung-Taek Myung, Min-Woo Jang, Jusef Hassoun
DOI: 10.1039/C3CP00070B
General treatment of the multimode Jahn–Teller effect: study of fullerenecations
Harry Ramanantoanina, Matija Zlatar, Pablo García-Fernández, Claude Daul
DOI: 10.1039/C2CP43591H
Polymer-regulated epitaxial crystallization of methanofullerene on mica
Lidong Zheng, Jiangang Liu, Yanchun Han
DOI: 10.1039/C2CP42614E
Organic photovoltaic devices with colloidal TiO2nanorods as key functional components
Luisa De Marco, Maria R. Belviso, Gianvito Caputo
DOI: 10.1039/C2CP23971J
A novel three-step method for preparation of a TiB2-promoted LiBH4–MgH2 composite for reversible hydrogen storage
Xiangdong Kang, Kuikui Wang, Yujie Zhong, Bing Yang, Ping Wang
DOI: 10.1039/C2CP43532B
A new type of low-cost counter electrode catalyst based on platinum nanoparticles loaded onto silicon carbide (Pt/SiC) for dye-sensitized solar cells
Sining Yun, Liang Wang, Chunyu Zhao, Yanxiang Wang, Tingli Ma
DOI: 10.1039/C3CP44048F
Plasma electrochemistry: voltammetry in a flame plasma electrolyte
Atif Elahi, Daren J. Caruana
DOI: 10.1039/C2CP43431H
Tunable photoluminescence from nc-Si/a-SiNx:H quantum dot thin films prepared by ICP-CVD
Basudeb Sain, Debajyoti Das
DOI: 10.1039/C3CP43875A
こちらもおすすめ
間溴苯甲酰腈の市場動向や研究トレンドはどうですか?
間 brom 苯甲酰腈は、合成化学や薬物化学において重要な Intermediate として使用されています。市場動向としては、その合成性と機能性により、研究開...
Methyl 2-amino-5-(trifluoromethyl)benzoateに適用される法規ガイドラインは何ですか?
CAS番号117324-58-0の塩酸メチル2アミノ-5-トリフルオロメチルベンゼートは、GHS分類により腐食性物質と判定されます。REACH規則では、製造、販...
3-ブロモ-1,3,4,5-四水化-2H-1-ベンザアゼピン-2-オンは安全ですか?
毒性があるため、適切な安全対策が必須です。皮膚や粘膜への刺激性が強く、吸入や誤飲により健康被害を引き起こす可能性があります。取扱時にはガスマスクや手袋、眼鏡を使...
三氟甲基ピリジン-2-甲アミン塩酸塩は安全ですか?
三氟甲基ピリジン-2-甲アミン塩酸塩は安全性に注意が必要です。毒性は低レベルですが、直接的接触や吸入は避けるべきです。適切な手袋や防塵マスクを着用し、密閉された...
1-エチル-4-(4-硝基フェニル)ピペリジンは安全ですか?
1-エチル-4-(4-硝基フェニル)ピペリジンは有毒であり、取扱には注意が必要です。保管や作業中に手袋を着用し、目や皮膚に接触しないように注意する必要があります...
1,1-ジメトキシプロパン-2-オンは安全ですか?
1,1-ジメトキシプロパン-2-オンは一般的に低毒性ですが、皮膚や目への刺激性があるため、取扱いには注意が必要です。蒸気や液体の吸入には有害な可能性があり、適切...
コバルト(II) 3,3'-{[(1S,2S)-1,2-ジメチルフENCYCLICALE-1,2-エチエンジイル]ビス[ニトロリルメチルイリデン]}ビス[4-オキソ-2-ペンテン-2-olate]について「に適用される法規ガイドラインは何ですか?
この化合物はCAS番号259259-80-8に対応しています。GHS分類では、毒性、燃焼性、反応性、炎症性を考慮に入れ、適切な危険性分類が行われます。REACH...
「カーバミル酸, N-[8-[[2-[[2-(2,6-ジオキソ-3-ピペリジニル)-2,3-ジオキソ-1,3-ジヒドロ-1H-イソイソインドール-4-イルオキシ]アセチル]アミノ]オクチル]-1,1-ジメチレチルエステル」はどのように保存すればよいですか?
この化合物は、冷却庫で-20℃の温度、乾燥した容器に保管し、直日光から保護する必要があります。湿度の高い環境や高温は避けてください。
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'-[(E)-1,2-Ethenediyl]bis(4-bromobenzene) structure 1,1'-[(E)-1,2-Ethenediyl]bis(4-bromobenzene) structure](https://static.chemtradehub.com/structs/188/18869-30-2-c907.webp)


