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Biogas Production from Co-Digestion of Poultry Manure and Orange Peel through Thermal Pre-Treatments in Batch Fermentation

著者: Lami, Misgana; Chimdessa, Meseret
出版社: Global Society of Scientific Research and Researchers 2017-12-21
エディション/フォーマット:   ダウンロード可能な記録資料 : English
概要:
Biogas production decreases environmental pollution through decomposing organic wastes and positively affects the socio-economy of the society. With the aim of producing biogas from co-digestion of Poultry Manure (PM) and Orange Peel (OP) a series of experiments were carried out for 21 consecutive days. Five different proportions of PM and OP (100%PM, 75%MP+25%OP, 50%PM+50%OP, 25%PM+75%OP, 100%OP) were used to  続きを読む
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ジャンル/形式: info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
Peer-reviewed Article
資料の種類: インターネット資料
ドキュメントの種類 インターネット資料, アーカイブ資料
すべての著者/寄与者: Lami, Misgana; Chimdessa, Meseret
言語注記: English
OCLC No.: 1090939523
メモ: application/pdf
application/vnd.openxmlformats-officedocument.wordprocessingml.document
application/vnd.openxmlformats-officedocument.wordprocessingml.document

概要:

Biogas production decreases environmental pollution through decomposing organic wastes and positively affects the socio-economy of the society. With the aim of producing biogas from co-digestion of Poultry Manure (PM) and Orange Peel (OP) a series of experiments were carried out for 21 consecutive days. Five different proportions of PM and OP (100%PM, 75%MP+25%OP, 50%PM+50%OP, 25%PM+75%OP, 100%OP) were used to obtain the suitable mix ratio (which gives maximum biogas production). Having determined the optimum mix ratio, temperature pre-treatment at 60 and 80 oC were applied to compare the results with those obtained with non-pre-treated waste. Cumulative biogas production obtained from 75%PM+25%OP was 768ml, whereas 218.33ml was measured from 100%OP. Increasing the proportion of OP above 25% decreased the amount of gas production, volatile solids (VS) and total solids (TS) reduction. This indicated that addition of PM to mix ratios improves biogas production. Thus 75%PM+25%OP mix was found to be the optimum mix ratio which resulted in high biogas yield. In thermal pre-treatments, maximum cumulative gas production was measured at 80 ºC pre-treated substrate. It exceeded by 11.7% and 6.6% over the control and the 60 ºC pre-treated sample respectively. Overall the results indicated that the biogas yield and VS and TS reduction of the 75%PM+25%OP mix ratio can be enhanced with the use of thermal pre-treatments prior to anaerobic digestion.
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