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Volumn 273, Issue 1-3, 2001, Pages 41-52
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Exergy analysis in the assessment of the sustainability of waste gas treatment systems
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Author keywords
Active carbon filter; Biofilter; Catalytic oxidator; Cumulative exergy consumption; Exergy; Sustainability; Thermal oxidator; Volatile organic compounds; Waste gas treatment
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Indexed keywords
ACTIVATED CARBON TREATMENT;
BIOFILTERS;
ENVIRONMENTAL IMPACT;
EXERGY;
EXHAUST GASES;
SUSTAINABLE DEVELOPMENT;
THERMOOXIDATION;
VOLATILE ORGANIC COMPOUNDS;
ACTIVE CARBON ADSORPTION;
SECOND LAW OF THERMODYNAMICS;
WASTE GAS TREATMENT;
WASTE TREATMENT;
ACTIVATED CARBON;
ALUMINUM;
ALUMINUM OXIDE;
CONCRETE;
COPPER;
GLASS;
HYDROGEN;
LIMESTONE;
PAINT;
POLYMER;
SODIUM HYDROXIDE;
STEEL;
VOLATILE ORGANIC COMPOUND;
ZINC;
EXERGY;
GAS;
SUSTAINABILITY;
VOLATILE ORGANIC COMPOUND;
WASTEWATER TREATMENT PLANT;
ARTICLE;
BIOFILTRATION;
CATALYST;
CERAMICS;
COMPOST;
ELECTRICITY;
GAS;
GAS WASTE;
LIFE CYCLE;
OXIDATION;
PRIORITY JOURNAL;
PRODUCTIVITY;
THERMODYNAMICS;
WASTE MANAGEMENT;
WATER VAPOR;
WOOL;
AIR POLLUTION;
CARBON;
CATALYSIS;
EQUIPMENT DESIGN;
GASES;
ORGANIC CHEMICALS;
OXIDATION-REDUCTION;
THERMODYNAMICS;
VOLATILIZATION;
WASTE DISPOSAL, FLUID;
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EID: 0035849602
PISSN: 00489697
EISSN: None
Source Type: Journal
DOI: 10.1016/S0048-9697(00)00841-X Document Type: Article |
Times cited : (82)
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References (40)
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