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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Can hydrothermal pretreatment improve anaerobic digestion for biogas from lignocellulosic biomass?
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Can hydrothermal pretreatment improve anaerobic digestion for biogas from lignocellulosic biomass?

机译:热水预处理可以改善来自木质纤维素生物量的沼气的厌氧消化吗?

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摘要

Hydrothermally-pretreated rice straw (HPRS) from various pretreatment temperatures was anaerobically-digested in whole slurry. Results indicated promoting pretreatment temperature significantly deconstructed rice straw, and facilitated the conversion of insoluble fractions to soluble fractions. Although 306.6 mL/g TS biogas was maximally yielded in HPRS-90 and HPRS-180, respectively, via digestion in whole slurry, it was only 3% promotion compared to the unpretreated rice straw. HPRS-210 yielded 208.5 mL/g TS biogas, which was 30% reduction with longer lag period of 19.8 d, suggesting serious inhibitions happened. Through slightly increasing organic loading, more serious acidification and reduction on biogas yield, especially at higher pretreatment temperatures, indicated the soluble fractions controlled digestion performances. Pearson correlation analysis suggested negative relationship existed between methane yield and the soluble fractions including soluble carbohydrates, formic acid and furfural. Hydrothermal pretreatment, especially at higher temperature, did not improve anaerobic digestion, thereby, was not recommended, however, lower temperature can be considered potentially.
机译:来自各种预处理温度的水热预处理的稻草(HPRS)在整个浆料中厌氧消化。结果表明,促进预处理温度显着解构稻草,促进了不溶性级分与可溶性级分的转化。尽管通过整体浆料的消化分别在HPRS-90和HPRS-180中最大地产生306.6ml / g TS沼气,但与未经预折叠的稻草相比,促进仅为3%。 HPRS-210产生208.5毫升/克/克沼气,随着较长的滞后时间为19.8天,减少了30%,表明发生了严重的抑制。通过略微增加有机负载,更严重的酸化和沼气产量的降低,特别是在更高的预处理温度下,表明可溶性分数控制的消化性能。 Pearson相关性分析表明甲烷产率和可溶性级分,包括可溶性碳水化合物,甲酸和糠醛之间存在负面关系。水热预处理,特别是在较高温度下,没有改善厌氧消化,从而不推荐,然而,较低的温度可以被认为是可能的。

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