One-step high-value conversion of heavy oil into H2, C2H2 and carbon nanomaterials by non-thermal plasma

被引:23
作者
Fan, Zhe [1 ,2 ]
Sun, Hao [1 ]
Dou, Liguang [1 ]
Zhang, Shuai [1 ]
Han, Wei [3 ]
Zhang, Cheng [1 ,2 ]
Shao, Tao [1 ,2 ,4 ]
机构
[1] Chinese Acad Sci, Inst Elect Engn, Beijing Int S&T Cooperat Base Plasma Science& Ener, Beijing 100190, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[3] Sinopec Res Inst Petr Proc, Beijing 100083, Peoples R China
[4] Chinese Acad Sci, Inst Elect Engn, Beijing 100190, Peoples R China
基金
中国国家自然科学基金;
关键词
Non-thermal plasma; Plasma cracking; Hydrogen; Acetylene; Carbon; Heavy oil; PYROLYSIS FUEL-OIL; HYDROGEN-PRODUCTION; PHYSICOCHEMICAL CHARACTERIZATIONS; THERMODYNAMIC ANALYSIS; ASSISTED SYNTHESIS; ARC-DISCHARGE; N-DODECANE; METHANE; ACETYLENE; OXIDATION;
D O I
10.1016/j.cej.2023.141860
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Non-thermal plasma is promising for cracking the abundant but low-quality heavy oil into value-add chemicals due to its wide feedstock adaptability and high conversion rate. In this work, heavy oil cracking characteristics by microsecond pulsed spark discharge plasma were investigated in terms of pulse voltage, pulse repetition fre-quency and discharge power. Experiment results indicate pulse voltage and pulse repetition frequency are the main factors to control product yields and distribution. Pulse voltage determines single pulse energy and in-fluences discharge stability and gas temperature. Pulse repetition frequency determines discharge intervals and affects collision reactions and quenching process. The maximum heavy oil conversion rate was 50.4% and the mass yields of H-2 and C2H2 were 3.3% and 19.7% with 10.1 W discharge power, and H-2 and C2H2 production energy consumption were 25.2 kW.h/m(3)H(2) and 55.4 kW.h/m(3)C(2)H(2). Compared with thermal plasma, heavy oil conversion rate of this work increased 12% with above 95% reduction in discharge power, and this work has a significant advantage in H-2 and C2H2 production energy consumption. Carbon nanomaterials composed of carbon nanoflakes and nanoparticles can be obtained while producing H-2 and C2H2. Especially, there were few-layers graphene nanoflakes (GNFs) in the carbon nanomaterials, which realized the full utilization of heavy oil. The possible reaction mechanism of heavy oil cracking was discussed using saturates-nucleating-aromatics-flaking theory. This work provides an effective COx-free method for one-step production of H-2, C2H2 and car -bon nanomaterials, which has wide application prospects for heavy oil utilization.
引用
收藏
页数:12
相关论文
共 66 条
[1]   Production of Hydrogen-Rich Synthesis Gas by Pulsed Atmospheric Plasma Submerged in Mixture of Water with Ethanol [J].
Bardos, L. ;
Barankova, H. ;
Bardos, A. .
PLASMA CHEMISTRY AND PLASMA PROCESSING, 2017, 37 (01) :115-123
[2]   PRODUCTION OF ACETYLENE FROM COAL, USING A PLASMA JET [J].
BOND, RL ;
LADNER, WR ;
MCCONNELL, GIT ;
GALBRAITH, IF .
NATURE, 1963, 200 (491) :1313-&
[3]   Emissions reductions using hydrogen from plasmatron fuel converters [J].
Bromberg, L ;
Cohn, DR ;
Rabinovich, A ;
Heywood, J .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2001, 26 (10) :1115-1121
[4]   Hydrogen production by microwave based plasma dissociation of water [J].
Chehade, Ghassan ;
Lytle, Spencer ;
Ishaq, Haris ;
Dincer, Ibrahim .
FUEL, 2020, 264
[5]   Thermodynamic analysis of hydrogen production from methane via autothermal reforming and partial oxidation followed by water gas shift reaction [J].
Chen, Wei-Hsin ;
Lin, Mu-Rong ;
Lu, Jau-Jang ;
Chao, Yu ;
Leu, Tzong-Shyng .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (21) :11787-11797
[6]   Accurate determination of oxide nanoparticle size and shape based on X-ray powder pattern simulation:: Application to boehmite AlOOH [J].
Chiche, David ;
Digne, Mathieu ;
Revel, Renaud ;
Chaneac, Corinne ;
Jolivet, Jean-Pierre .
JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (23) :8524-8533
[7]   Substrate-free microwave synthesis of graphene: experimental conditions and hydrocarbon precursors [J].
Dato, Albert ;
Frenklach, Michael .
NEW JOURNAL OF PHYSICS, 2010, 12
[8]   COx-free co-cracking of n-decane and CH4 to hydrogen and acetylene using pulsed spark plasma [J].
Fan, Zhe ;
Sun, Hao ;
Zhang, Shuai ;
Han, Wei ;
Zhang, Cheng ;
Yang, Qinghe ;
Shao, Tao .
CHEMICAL ENGINEERING JOURNAL, 2022, 436
[9]   Coupling bimetallic Ni-Fe catalysts and nanosecond pulsed plasma for synergistic low-temperature CO2 methanation [J].
Gao, Yuan ;
Dou, Liguang ;
Zhang, Shuai ;
Zong, Lijun ;
Pan, Jie ;
Hu, Xiucui ;
Sun, Hao ;
Ostrikov, Kostya ;
Shao, Tao .
CHEMICAL ENGINEERING JOURNAL, 2021, 420 (420)
[10]   Graphene materials from microwave-derived carbon precursors [J].
Gonzalez, Zoraida ;
Acevedo, Beatriz ;
Predeanu, Georgeta ;
Axinte, Sorin M. ;
Dragoescu, Marius-Florin ;
Slavescu, Valerica ;
Fernandez, Juan J. ;
Granda, Marcos ;
Gryglewicz, Grazyna ;
Melendi-Espina, Sonia .
FUEL PROCESSING TECHNOLOGY, 2021, 217