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Sodium hydroxide pretreatment of ensiled sorghum forage and wheat straw to increase methane production

机译:氢氧化钠预处理青贮高粱饲料和麦秸增加甲烷产量

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The aim of this study was to determine the effect of sodium hydroxide pretreatment on the chemical composition and the methane production of ensiled sorghum forage and wheat straw. NaOH pretreatment was conducted in closed bottles, at 40 oC for 24 h. Samples were soaked in a NaOH solution at different dosages (expressed in terms of total solids (TS) content) of 1 and 10% gNaOH/gTS, with a TS concentration of 160 gTS/L. At the highest NaOH dosage the reduction of cellulose, hemicelluloses and lignin was 31, 66 and 44%, and 13, 45 and 3% for sorghum and wheat straw, respectively. The concentration of soluble chemical oxygen demand (CODs) in the liquid phase after the pretreatment was also improved both for wheat straw and sorghum (up to 24 and 33%, respectively). Total sugars content increased up to five times at 10% gNaOH/gTS with respect to control samples, suggesting that NaOH pretreatment improves the hydrolysis of cellulose and hemicelluloses. The Biochemical Methane Potential (BMP) tests showed that the NaOH pretreatment favoured the anaerobic degradability of both substrates. At 1 and 10% NaOH dosages, the methane production increased from 14 to 31% for ensiled sorghum forage and from 17 to 47% for wheat straw. The first order kinetic constant increased up to 65% for sorghum and up to 163% for wheat straw.
机译:这项研究的目的是确定氢氧化钠预处理对青贮高粱饲料和麦草化学成分和甲烷产生的影响。 NaOH预处理在密闭的瓶子中于40 oC进行24小时。将样品以1和10%gNaOH / gTS的不同剂量(以总固体(TS)含量表示)以NaOH溶液浸泡,TS浓度为160 gTS / L。在最高的NaOH用量下,高粱和小麦秸秆的纤维素,半纤维素和木质素的减少分别为31%,66%和44%,以及13%,45%和3%。对于小麦秸秆和高粱,预处理后液相中的可溶性化学需氧量(CODs)浓度也得到了改善(分别高达24%和33%)。相对于对照样品,在10%gNaOH / gTS下,总糖含量增加了五倍,这表明NaOH预处理可以改善纤维素和半纤维素的水解。生化甲烷潜力(BMP)测试表明,NaOH预处理有利于两种底物的厌氧降解性。在NaOH用量为1%和10%的情况下,青贮高粱饲料的甲烷产量从14%增至31%,小麦秸秆的甲烷产量从17%增至47%。高粱的一级动力学常数增加了高达65%,小麦秸秆的一级动力学常数增加了高达163%。

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