PERFORMANCE OF CATALYTIC AND NON-CATALYTIC FOAM CERAMIC ELEMENTS IN LOG WOOD STOVES

被引:0
|
作者
Mack, Robert [1 ]
Hartmann, Hans [1 ]
机构
[1] Ctr Excellence Renewable Resources TFZ, Technol & Support Ctr, Schulgasse 18, D-94315 Straubing, Germany
关键词
catalyst; ceramic material; emissions; reduction; stove; COMBUSTION; EMISSIONS; MODEL;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To meet the strict emission thresholds for log wood stoves foam ceramic elements (filters or catalysts) could be an alternative to electrostatic precipitators. To evaluate the potential of foam ceramic elements three differently aged foam ceramic filters and one retrofit foam ceramic catalyst were tested in a log wood stove applying a "close to real life" test cycle. Results show that foam ceramic filters without catalyst coating provide no appreciable emission improvement under practical conditions. When the foam ceramic was catalytically coated while having the same flow properties, the reduction effects were significant: -46 % for carbon monoxide (CO), -21 % for non-methane-organic gaseous carbon (non-methane OGC) and -10 % for particulate matter (PM). When operated in partial load the reductions were: -47 % for CO, -23 % for non-methane-OGC and -12 % for PM. No effect on NOx concentration was observed for any of the tested variants. Foam ceramic elements can reduce gaseous flue gas emissions (CO, OGC) from log wood stoves noticeably, if they have been catalytically activated. For general recommendation in real life applications this finding should however be verified in long term field tests.
引用
收藏
页码:393 / 398
页数:6
相关论文
共 50 条
  • [31] A KINETICS STUDY ON CATALYTIC AND NON-CATALYTIC STEAM GASIFICATION OF BIOMASS
    DASTIDAR, MG
    SARKAR, MK
    FUEL PROCESSING TECHNOLOGY, 1983, 7 (03) : 261 - 275
  • [32] Eph receptor signalling: from catalytic to non-catalytic functions
    Liang, Lung-Yu
    Patel, Onisha
    Janes, Peter W.
    Murphy, James M.
    Lucet, Isabelle S.
    ONCOGENE, 2019, 38 (39) : 6567 - 6584
  • [33] Non-catalytic hydrodesulfurization and hydrodemetallization of residua
    Ramirez, Sergio
    Ancheyta, Jorge
    Centeno, Guillermo
    Marroquin, Gustavo
    FUEL, 2011, 90 (12) : 3571 - 3576
  • [34] NON-CATALYTIC HYDRATION OF BITUMINOUS COAL
    WIEN, H
    SCHLUPP, KF
    LANGHOFF, J
    WOLOWSKI, E
    ERDOL & KOHLE ERDGAS PETROCHEMIE, 1977, 30 (01): : 39 - 39
  • [35] NON-CATALYTIC HYDROGENATION OF AUSTRALIAN COALS
    CUDMORE, JF
    FUEL PROCESSING TECHNOLOGY, 1978, 1 (03) : 227 - 241
  • [36] NON-CATALYTIC CHLORINATION OF DIPHENYL ETHER
    WATSON, WD
    HENNIS, HE
    JOURNAL OF ORGANIC CHEMISTRY, 1979, 44 (07): : 1155 - 1158
  • [37] Kinetics & Simulation of Non-catalytic Esterification
    Hussain, Zakir
    Kumar, Rakesh
    MATERIALS TODAY-PROCEEDINGS, 2018, 5 (09) : 18287 - 18296
  • [38] The non-catalytic polymerization and hydrogenation of ethylene
    Pease, RN
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1930, 52 : 1158 - 1164
  • [39] Non-catalytic carbon gasification modelling
    Silva, IS
    Palma, C
    Lemos, F
    Ribeiro, FR
    Lobo, JS
    DYNAMICS OF SURFACES AND REACTION KINETICS IN HETEROGENEOUS CATALYSIS, 1997, 109 : 535 - 540
  • [40] Catalytic and non-catalytic synergistic effects and their individual contributions to improved combustion performance of coal/biomass blends
    Oladejo, Jumoke
    Adegbite, Stephen
    Gao, Xiang
    Liu, Hao
    Wu, Tao
    APPLIED ENERGY, 2018, 211 : 334 - 345