Tar destruction using non-thermal plasma technology-a critical review

被引:0
|
作者
Pathak, Ram Mohan [1 ]
Jayanarasimhan, Ananthanarasimhan [1 ]
Rao, Lakshminarayana [1 ]
机构
[1] Indian Inst Sci, Ctr Sustainable Technol, Bengaluru 560012, India
关键词
biomass; tar destruction; toluene; naphthalene; plasma technology; chemical modeling; DIELECTRIC BARRIER DISCHARGE; GLIDING ARC-DISCHARGE; BIOMASS GASIFICATION TAR; OXIDE FUEL-CELL; MODEL-COMPOUND; PRODUCER GAS; SIMULTANEOUS REMOVAL; LOWER HYDROCARBONS; TOLUENE; DECOMPOSITION;
D O I
10.1088/1361-6463/adb43c
中图分类号
O59 [应用物理学];
学科分类号
摘要
Tar, a by-product of gasification, is a complex mixture of high molecular weight hydrocarbons that can cause significant damage to downstream equipment and reduce the efficiency of gas utilization. Effective tar destruction is therefore essential for producing clean syngas. Non-thermal plasmas (NTP's) technology offers a promising solution for gas cleaning by effectively destroying tar. This review explores various plasma sources and experimental approaches for using NTP's in tar destruction. It evaluates the performance of different plasma sources on the destruction of toluene and naphthalene, the most prevalent tar compounds in gasifier product gas, and discusses the chemical mechanisms and modeling approaches involved in their destruction. The most common modeling approach includes reaction kinetics, demonstrating how chemical reactions occur and behave in the NTP's system. This approach, known as the plasma global model, simplifies plasma modeling by focusing on reaction rates to predict the production and loss of species without needing to model plasma's bulk properties. The works that investigated plasma-catalysis for tar destruction were considered. A comparison of literature works reveals that the best performance for naphthalene destruction is achieved by corona plasma and reverse vortex flow gliding arc reactors, with the destruction efficiency (eta d) of 99% and 99.8% at concentrations of 5 g m-3 and 10.3 g m-3, respectively. For toluene, the gliding arc discharge and rotating gliding arc combined with the catalyst demonstrate the highest efficiency, achieving 99% and 99.9% destruction at 22.9 g m-3 and 4 g m-3, respectively. The synergy between plasma and catalysts offers key benefits, including higher energy efficiency, faster reactions, and lower operating temperatures compared to traditional thermal methods. The review suggests that NTP's technology shows strong potential for removing biomass tar from gasification. It could be a promising solution for biomass tar cracking and upgrading product gas in real gasification applications. Several pilot and small-scale plasma plants have been developed, but the technology is still emerging and faces various technical and economic challenges.
引用
收藏
页数:33
相关论文
共 50 条
  • [31] Removal of dyes from aqueous solutions using non-thermal plasma: a review
    Kumar, T. N.
    Mohapatro, S.
    Dash, R. R.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2024, 21 (11) : 7819 - 7836
  • [32] A Review of Microbial Decontamination of Cereals by Non-Thermal Plasma
    Scholtz, Vladimir
    Jiresova, Jana
    Sera, Bozena
    Julak, Jaroslav
    FOODS, 2021, 10 (12)
  • [33] Abatement of VOCs Using Packed Bed Non-Thermal Plasma Reactors: A Review
    Veerapandian, Savita K. P.
    Leys, Christophe
    De Geyter, Nathalie
    Morent, Rino
    CATALYSTS, 2017, 7 (04):
  • [34] Non-thermal plasma destruction of allyl alcohol in waste gas: kinetics and modelling
    De Visscher, A.
    Dewulf, J.
    Van Durme, J.
    Leys, C.
    Morent, R.
    Van Langenhove, H.
    PLASMA SOURCES SCIENCE & TECHNOLOGY, 2008, 17 (01):
  • [35] Research on Toluene Removal with Non-Thermal Plasma Catalysis Technology
    Guo, Yufang
    Liao, Xiaobin
    He, Jianhua
    Ou, Weijian
    Ye, Daiqi
    CONFERENCE ON ENVIRONMENTAL POLLUTION AND PUBLIC HEALTH, VOL 1-2, 2010, : 39 - +
  • [36] 1,2,4-trichlorobenzene decomposition using non-thermal plasma technology
    竹涛
    张星
    马名烽
    王礼锋
    薛泽宇
    侯益铭
    叶泽甫
    刘桐珅
    Plasma Science and Technology, 2020, 22 (03) : 73 - 80
  • [37] 1,2,4-trichlorobenzene decomposition using non-thermal plasma technology
    Zhu, Tao
    Zhang, Xing
    Ma, Mingfeng
    Wang, Lifeng
    Xue, Zeyu
    Hou, Yiming
    Ye, Zefu
    Liu, Tongshen
    PLASMA SCIENCE & TECHNOLOGY, 2020, 22 (03)
  • [38] New technological trajectories of non-thermal plasma technology in medicine
    Coccia, Mario
    Finardi, Ugo
    INTERNATIONAL JOURNAL OF BIOMEDICAL ENGINEERING AND TECHNOLOGY, 2013, 11 (04) : 337 - 356
  • [39] Cold Plasma: A novel Non-Thermal Technology for Food Processing
    Rohit Thirumdas
    Chaitanya Sarangapani
    Uday S. Annapure
    Food Biophysics, 2015, 10 : 1 - 11
  • [40] Catalytic Effect on Toluene Removal by Non-thermal Plasma Technology
    Guo Yufang
    Liao Xiaobin
    Ye Daiqi
    2009 3RD INTERNATIONAL CONFERENCE ON BIOINFORMATICS AND BIOMEDICAL ENGINEERING, VOLS 1-11, 2009, : 3829 - +