首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biologically pretreated sugarcane top as a potential raw material for the enhancement of gaseous energy recovery by two stage biohythane process
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Biologically pretreated sugarcane top as a potential raw material for the enhancement of gaseous energy recovery by two stage biohythane process

机译:经过生物预处理的甘蔗表皮,可以作为通过两步生物丙烷工艺提高气态能量回收的潜在原料

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The aim of the present study was to develop a suitable pretreatment method to enhance the microbial degradation of lignocellulosic biomass and to maximize the overall energy recovery by using biohythane process. An efficient and eco-friendly biological pretreatment was used. Maximum lignin removal using biological pretreatment of sugarcane top was 60.4% w/w after 21 d incubation at 28 degrees C in static condition. Confocal microscopy observation and FTIR analysis confirmed the removal of lignin from sugarcane top. The maximum hydrogen production rate (R-m), hydrogen production potential (P) and lag time (lambda) using pretreated sugarcane top were 16.76 mL/g-VS/h, 87.40 mL/g-VS and 3.38 h respectively. The maximum methane production potential using spent medium of dark fermentation was 180.86 mL/g-VS with the lag time of 2.9 d. The overall gaseous energy recovery was 37.7% which is 54% higher than that of the untreated one. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究的目的是开发一种合适的预处理方法,以增强木质纤维素生物质的微生物降解作用,并通过使用生物hy烷工艺使总能量回收最大化。使用了一种高效且生态友好的生物预处理方法。在静态条件下于28°C孵育21天后,使用生物预处理甘蔗顶的最大木质素去除率为60.4%w / w。共聚焦显微镜观察和FTIR分析证实了甘蔗顶部木质素的去除。使用预处理的甘蔗顶部的最大产氢速率(R-m),产氢潜能(P)和滞后时间(λ)分别为16.76 mL / g-VS / h,87.40 mL / g-VS和3.38 h。使用深色发酵废培养基的最大甲烷生产潜力为180.86 mL / g-VS,滞后时间为2.9 d。整体气态能量回收率为37.7%,比未经处理的气态能量回收率高54%。 (C)2016 Elsevier Ltd.保留所有权利。

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