Application of Heterogeneous Catalysis in Small-Scale Biomass Combustion Systems

被引:27
作者
Bindig, Rene [1 ]
Butt, Saad [1 ]
Hartmann, Ingo [1 ]
Matthes, Mirjam [1 ]
Thiel, Christian [1 ]
机构
[1] DBFZ Deutsch Biomasseforschungszentrum Gemeinnutz, Leipzig, Germany
关键词
biomass combustion; flue gas treatment; electrostatic precipitation; VOC; PAH; soot; emission reduction;
D O I
10.3390/catal2020223
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Combustion of solid biomass fuels for heat generation is an important renewable energy resource. The major part among biomass combustion applications is being played by small-scale systems like wood log stoves and small wood pellet burners, which account for 75% of the overall biomass heat production. Despite an environmentally friendly use of renewable energies, incomplete combustion in small-scale systems can lead to the emission of environmental pollutants as well as substances which are hazardous to health. Besides particles of ash and soot, a wide variety of gaseous substances can also be emitted. Among those, polycyclic aromatic hydrocarbons (PAH) and several organic volatile and semi-volatile compounds (VOC) are present. Heterogeneous catalysis is applied for the reduction of various gaseous compounds as well as soot. Some research has been done to examine the application of catalytic converters in small-scale biomass combustion systems. In addition to catalyst selection with respect to complete oxidation of different organic compounds, parameters such as long-term stability and durability under flue gas conditions are considered for use in biomass combustion furnaces. Possible catalytic procedures have been identified for investigation by literature and market research. Experimental studies with two selected oxidation catalysts based on noble metals have been carried out on a wood log stove with a retrofit system. The measurements have been performed under defined conditions based on practical mode of operation. The measurements have shown that the catalytic flue gas treatment is a promising method to reduce carbon monoxide and volatile organic compounds. Even a reduction of particulate matter was observed, although no filtering effect could be detected. Therefore, the oxidation of soot or soot precursors can be assumed. The selected catalysts differed in their activity, depending on the compound to be oxidized. Examinations showed that the knitted wire catalyst showed better activity for the reduction of carbon monoxide, whereas the honeycomb induced a higher reduction of aromatic compounds. The properties of the two catalysts can be combined by integrating both together. The one drawback of the catalyst so far is the deactivation for the conversion of methane.
引用
收藏
页码:223 / 243
页数:21
相关论文
共 12 条
[1]   Thermally sprayed wire-mesh catalysts for the purification of flue gases from small-scale combustion of bio-fuel - Catalyst preparation and activity studies [J].
AhlstromSilversand, AF ;
Odenbrand, CUI .
APPLIED CATALYSIS A-GENERAL, 1997, 153 (1-2) :177-201
[2]  
Bindig R., 2011, P IBC LEIPZIG INT BI
[3]   Exhaust Gas Purification at Small-Scale Biomass Combustion and Experimental Investigation of a Combination of Catalytic and Electrostatic Exhaust Aftertreatment [J].
Bindig, Rene ;
Hartmann, Ingo ;
Koch, Christian ;
Matthes, Mirjam ;
Schenker, Marian ;
Thiel, Christian ;
Kraus, Markus ;
Roland, Ulf ;
Einicke, Wolf-Dietrich .
CHEMIE INGENIEUR TECHNIK, 2011, 83 (12) :2105-2120
[4]   Catalytic abatement of emissions from small-scale combustion of wood - A comparison of the catalytic effect in model and real flue gases [J].
Carno, J ;
Berg, M ;
Jaras, S .
FUEL, 1996, 75 (08) :959-965
[5]  
Dr. Pley Environmental GmbH, SAUB EN BIOM
[6]   CATALYTIC CHEMISTRY OF SUPPORTED PALLADIUM FOR COMBUSTION OF METHANE [J].
FARRAUTO, RJ ;
HOBSON, MC ;
KENNELLY, T ;
WATERMAN, EM .
APPLIED CATALYSIS A-GENERAL, 1992, 81 (02) :227-237
[7]   Thermal stability of metal-supported catalysts for reduction of cold-start emissions in a wood-fired domestic boiler [J].
Ferrandon, M ;
Berg, M ;
Björnbom, E .
CATALYSIS TODAY, 1999, 53 (04) :647-659
[8]  
Hartmann I., 2011, CHEM-ING-TECH, V83, P1
[9]   Catalytic filter elements for combined particle separation and nitrogen oxides removal from gas streams [J].
Heidenreich, Steffen ;
Nacken, Manfred ;
Hackel, Marius ;
Schaub, Georg .
POWDER TECHNOLOGY, 2008, 180 (1-2) :86-90
[10]  
Lenz V, 2011, BWK-ENERGIE-FACHMAG, V63, P42