粒径和温度对菲克蔗渣产甲烷的影响

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY
Liliana Del Pilar Castro Molano, Carolina Guzmán Luna, Humberto Escalante Hernández
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引用次数: 5

摘要

本研究的目的是通过以牛瘤胃液和猪粪作为接种剂共同消化这种木质纤维素基质,来评估菲克蔗渣(FB)粒度对厌氧生物降解和沼气生产的影响。厌氧反应器孵育8天。采用三种不同粒径的甘蔗渣,测定了还原糖、挥发性脂肪酸(VFA)和甲烷产量;5毫米(甘蔗渣的自然尺寸),2.36毫米和0.85毫米。蔗渣粒径的减小增加了还原糖的形成,并改善了底物向微生物接种体的传质。当粒径较小时,有利于水解步骤和VFA的生产。天然粒径的甘蔗渣比低粒径的甘蔗渣更难生物降解。当粒径为0.8 mm时,甲烷浓度增加19%。在25℃和39℃条件下进行厌氧发酵。在25°C条件下的甲烷产量,表明这些微生物群能够抵抗温度变化并将所有产物转化为厌氧消化过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Particle Size and Temperature on Methane Production From Fique’s Bagasse
The aim of this work was to evaluate the effect of particle size of fique`s bagasse (FB) on anaerobic biodegradation and biogas production, by means of co-digestion of this lignocellulosic substrate using both bovine ruminal fluid and pig manure as inoculums. Anaerobic reactors were incubated by 8 days. Reducing sugar, Volatile Fatty Acid (VFA) and methane productions were measured using three different bagasse particle diameter; 5 mm (bagasse´s natural size), 2.36 mm and 0.85 mm. Reduction of bagasse particle size increased reducing sugars formation and improved substrate mass transfer to microbial inoculums. At minor particle size it was favored hydrolytic step and VFA production. Natural particle sizes of bagasse were more difficult to biodegrade than lower ones. In this sense, methane concentration was increased 19% when 0.8 mm particle size was used. Anaerobic fermentation processes were carried out at 25°C and 39°C. Methane production at 25°C, show that these microbial consortia are able to resist temperature changes and transform all products on anaerobic digestion process.
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来源期刊
Revista Iteckne
Revista Iteckne ENGINEERING, MULTIDISCIPLINARY-
自引率
50.00%
发文量
3
审稿时长
24 weeks
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