首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Investigation of effect of particle size and rumen fluid addition on specific methane yields of high lignocellulose grass silage
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Investigation of effect of particle size and rumen fluid addition on specific methane yields of high lignocellulose grass silage

机译:粒度和瘤胃液添加量对高木质纤维素草青贮饲料中特定甲烷产量影响的研究

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摘要

This work examines the digestion of advanced growth stage grass silage. Two variables were investigated: particle size (greater than 3 cm and less than 1 cm) and rumen fluid addition. Batch studies indicated particle size and rumen fluid addition had little effect on specific methane yields (SMYs). In continuous digestion of 3 cm silage the SMY was 342 and 343 L CH4 kg(-1) VS, respectively, with and without rumen fluid addition. However, digester operation was significantly affected through silage floating on the liquor surface and its entanglement in the mixing system. Digestion of 1 cm silage with no rumen fluid addition struggled; volatile fatty acid concentrations rose and SMYs dropped. The best case was 1 cm silage with rumen fluid addition, offering higher SMYs of 371 L CH4 kg(-1) VS and stable operation throughout. Thus, physical and biological treatments benefited continuous digestion of high fibre grass silage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作研究了晚期生草青贮饲料的消化。研究了两个变量:粒径(大于3 cm且小于1 cm)和添加瘤胃液。批处理研究表明,粒径和瘤胃液的添加对特定甲烷产量(SMYs)的影响很小。在连续消化3厘米青贮饲料时,SMY分别为342和343 L CH4 kg(-1)VS,添加和不添加瘤胃液。但是,蒸煮器的运行受到青贮饲料在浮选液表面漂浮和缠结在混合系统中的影响很大。没有添加瘤胃液的情况下,消化1厘米青贮饲料的过程很困难。挥发性脂肪酸浓度上升,SMY下降。最好的情况是添加了瘤胃液的1厘米青贮饲料,提供了371 L CH4 kg(-1)VS的更高SMY,并且始终稳定运行。因此,物理和生物处理有益于高纤维草料青贮饲料的持续消化。 (C)2015 Elsevier Ltd.保留所有权利。

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