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Methane production enhancement from products of alkaline hydrogen peroxide pretreated sweet sorghum bagasse

机译:碱性过氧化氢预处理的甜高粱甘蔗渣产品提高甲烷产量

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Alkaline hydrogen peroxide (AHP) pretreatment was applied to improve methane production from sweet sorghum bagasse under mesophilic conditions. After the pretreatment (solid-to-liquid ratio of 1?:?10, 2% NaOH at 121 °C for 60 min and then immersing with 5% (w/v) H2O2 for 24 h at room temperature), pretreated bagasse, the pretreatment effluent and the pretreatment mixture, together with the untreated bagasse, were used as substrates for methane production under the same volatile solid (VS) loading and digestion conditions. The AHP pretreatment resulted in lignin removal and different degrees of methane production. The methane production of bagasse was improved from 262.1 ± 7.3 mL CH4 per g VS to 330.4 ± 1.3 mL CH4 per g VS. The pretreatment mixture and pretreatment effluent could be successfully digested and both of the methane productions were higher than the untreated bagasse, although there were degrees of inhibition. In view of the bagasse recovery during the pretreatment, total methane production from separate digestion of pretreated bagasse and pretreatment effluent was 18.6% more than untreated bagasse based on the same mass of dry sweet sorghum bagasse. The kinetic analysis implied that the Cone model showed a better fit to the experimental data of untreated bagasse, pretreated bagasse and pretreatment effluent, and the Fitzhugh model was better to predict the methane production of the pretreatment mixture. AHP pretreatment could increase the methane production rate of sweet sorghum bagasse. These results will provide a reference to the methane production from AHP pretreated sweet sorghum bagasse in industry.
机译:碱性过氧化氢(AHP)预处理用于改善中温条件下甜高粱蔗渣的甲烷产量。预处理后(固液比为1?:?10,在121°C下2%NaOH浸泡60分钟,然后浸入5%(w / v)H 2 O 2 在室温下放置24小时),将预处理的蔗渣,预处理的出水和预处理混合物与未处理的蔗渣一起用作发酵原料。相同的挥发性固体(VS)加载和消化条件下生成甲烷。 AHP预处理可去除木质素并产生不同程度的甲烷。蔗渣的甲烷产量从每克VS 262.1±7.3 mL CH 4 增至330.4±1.3 mL CH 4 每克VS。尽管存在一定程度的抑制作用,但预处理混合物和预处理流出物可以被成功消化,并且甲烷的产量均高于未处理的蔗渣。考虑到在预处理期间蔗渣的回收,基于相同质量的干甜高粱蔗渣,预处理蔗渣和预处理流出物的单独消化产生的甲烷总量比未处理蔗渣高出18.6%。动力学分析表明,Cone模型与未经处理的蔗渣,预处理的蔗渣和预处理的流出物的实验数据拟合得更好,而Fitzhugh模型可以更好地预测预处理混合物的甲烷生成量。 AHP预处理可以提高甜高粱甘蔗渣的甲烷生产率。这些结果将为工业上AHP预处理甜高粱蔗渣的甲烷生产提供参考。

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