DocumentCode
3589383
Title
Temperature, pH and loading rate effect on biogas generation from domestic waste
Author
Vikrant, U. Dupade ; Ajit, C. Chaudhari ; Yogesh, V. Aaher
Author_Institution
Dept. of Mech. Eng., VPCOE, Baramati, India
fYear
2014
Firstpage
1
Lastpage
6
Abstract
Biogas typically refers to a gas produced by the biological breakdown of organic matter in the absence of oxygen. Anaerobic digestion is a microbial process for production of biogas, which consists of primarily methane (CH4) & carbon dioxide (CO2). In this paper the various factors affecting biogas generation rate such as temperature, pH, and organic loading rate are studied. An Organic Processing Facility has been created for generation of the biogas which will cut down on landfill waste, be more cost effective, eco-friendly, generate a high-quality renewable fuel and reduce carbon dioxide & methane emissions. From the results and graphs we can conclude that biogas generration rate increases with increase in temperature (i.e. thermophilic range) and loading rate at neutral pH value. We can achieve higher biogas yield from the organic waste and which is equals to 1900l from 2.2kg of domestic waste. Biogas generation rate increases with decrease in methane content but with neglegible amount i. e. 2%. But operating cost of the setup is increases for heating purpose and additives so this may useful for the higher wastage.
Keywords
additives; biofuel; carbon compounds; costing; heating; pH; refuse disposal; additives; anaerobic digestion; biogas generation rate; biogas generration rate; biogas production; biological breakdown; carbon dioxide emission reduction; domestic waste; heating purpose; landfill waste; loading rate effect; methane content; methane emission reduction; microbial process; neutral pH value; operating cost; organic matter; organic processing facility; renewable fuel; Degradation; Feeds; Loading; Microorganisms; Production; Temperature distribution; Temperature measurement; Biogas; Energy; Factors; Organic etc;
fLanguage
English
Publisher
ieee
Conference_Titel
Advances in Engineering and Technology (ICAET), 2014 International Conference on
Type
conf
DOI
10.1109/ICAET.2014.7105292
Filename
7105292
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