首页> 外文期刊>Journal of Applied Phycology >Biogas production from the brown seaweed Saccharina latissima: thermal pretreatment and codigestion with wheat straw
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Biogas production from the brown seaweed Saccharina latissima: thermal pretreatment and codigestion with wheat straw

机译:褐藻Saccharina latissima生产沼气:热预处理和麦秸共消化

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摘要

Saccharina latissima is a carbohydrate-rich fast-growing seaweed (SW) which may be utilized as a marine energy crop. In this study, S. latissima was anaerobically digested for biogas production, and the effects of thermal pretreatment and codigestion with wheat straw (WS) were investigated. Batch experiments showed that pretreatment of SW increased the methane yield from 223 to 268 mL g-1 VS. Codigestion of SW and steam-exploded WS had a clear positive effect on biogas production, giving yields that were considerably higher than what would be expected on the basis of the yields obtained with either of the individual feedstocks. Thus, anaerobic digestion of blends of SW and lignocellulosic substrates provides a promising strategy for biogas production. Although thermal pretreatment increased the yield of biogas from SW such a harsh pretreatment is probably more relevant for the more recalcitrant lignocellulosic substrates.
机译:Saccharina latissima是一种富含碳水化合物的快速生长的海藻(SW),可以用作海洋能源作物。在这项研究中,厌氧消化链球菌以生产沼气,并研究了热预处理和麦秸秆共消化的效果。批处理实验表明,SW的预处理将甲烷的产率从223 mL增加到268 mL g -1 VS。 SW和蒸汽爆破的WS的共消化对沼气的产生有明显的积极影响,其产量远高于根据使用任何一种原料获得的产量所预期的产量。因此,SW和木质纤维素底物混合物的厌氧消化为沼气生产提供了一种有希望的策略。尽管热预处理增加了SW沼气的产量,但这种苛刻的预处理可能与难降解的木质纤维素底物更为相关。

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