Titre de série : |
Technical report Data, 4 |
Titre : |
Reclamation of energy from organic waste |
Type de document : |
texte imprimé |
Auteurs : |
Pfeffer, J. T. |
Mention d'édition : |
NTIS EPA University |
Editeur : |
NTIS EPA University |
Année de publication : |
1974 |
ISBN/ISSN/EAN : |
CI-03672 |
Note générale : |
This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. |
Langues : |
Anglais (eng) |
Mots-clés : |
Energie Temperature Coût Méthane Analyse économique Canal Dechet organique Processus anaerobique |
Index. décimale : |
531.6 Energie |
Résumé : |
This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. |
Note de contenu : |
This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. |
Technical report Data, 4. Reclamation of energy from organic waste [texte imprimé] / Pfeffer, J. T. . - NTIS EPA University . - NTIS EPA University, 1974. ISSN : CI-03672 This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. Langues : Anglais ( eng)
Mots-clés : |
Energie Temperature Coût Méthane Analyse économique Canal Dechet organique Processus anaerobique |
Index. décimale : |
531.6 Energie |
Résumé : |
This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. |
Note de contenu : |
This study applied the anaerobic fermentation process to the production of methane from the organic fraction of urban refuse. Shredded domestic refuse from which the inorganic fraction is separated is used as a substrate law sewage sludge is added to the substrate in proportion to the rate at wich it is produce by a population producting a given quatity of refuse. The quantity and quality of gas a population produced, the rate of gas production, the solids reduction, nutritional requirements, and oprating problems were evaluated in a laboratory system operating at temperatures ranging from 35 c to 60 c. the results of the laboraory study together with published data on both capital and operating costs of refuse shredding, refuse separation, reator volume, reator mixing, reator heating, and residue dewatering used to analyze the economic of the process. |
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