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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improving the methane yield of maize straw: Focus on the effects of pretreatment with fungi and their secreted enzymes combined with sodium hydroxide
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Improving the methane yield of maize straw: Focus on the effects of pretreatment with fungi and their secreted enzymes combined with sodium hydroxide

机译:提高玉米秸秆的甲烷产量:专注于对真菌的预处理及其分泌酶结合氢氧化钠的影响

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摘要

In order to improve the methane yield, the alkaline and biological pretreatments on anaerobic digestion (AD) were investigated. Three treatments were tested: NaOH, biological (enzyme and fungi), and combined NaOH with biological. The maximum reducing sugar concentrations were obtained using Enzyme T (2.20 mg/mL) on the 6th day. The methane yield of NaOH+Enzyme A was 300.85 mL/g TS, 20.24% higher than the control. Methane yield obtained from Enzyme (T+A) and Enzyme T pretreatments were 277.03 and 273.75 mL/g TS, respectively, which were as effective as 1% NaOH (276.16 mL/g TS) in boosting methane production, and are environmentally friendly and inexpensive biological substitutes. Fungal pretreatment inhibited methane fermentation of maize straw, 15.68% was reduced by T+A compared with the control. The simultaneous reduction of DM, cellulose and hemicellulose achieved high methane yields. This study provides important guidance for the application of enzymes to AD from lignocellulosic agricultural waste.
机译:为了提高甲烷产量,研究了厌氧消化(AD)的碱性和生物预处理。测试了三种处理:NaOH,生物(酶和真菌),并与生物学合并NaOH。使用酶T(2.20mg / ml)在第6天获得最大的还原糖浓度。 NaOH +酶A的甲烷产率为300.85mL / g TS,比对照高出20.24%。从酶(T + A)和酶T预处理中获得的甲烷产率分别为277.03和273.75ml / g Ts,其在升压甲烷生产中具有1%NaOH(276.16ml / g Ts),并且是环保的廉价的生物替代品。真菌预处理抑制玉米秸秆的甲烷发酵,与对照相比,T + A减少了15.68%。同时还原DM,纤维素和半纤维素达到高甲烷产率。本研究为从木质纤维素农业废物中施加到广告中的应用提供了重要指导。

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