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首页> 外文期刊>Biotechnology for Biofuels >Pilot-scale conversion of lime-treated wheat straw into bioethanol: quality assessment of bioethanol and valorization of side streams by anaerobic digestion and combustion
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Pilot-scale conversion of lime-treated wheat straw into bioethanol: quality assessment of bioethanol and valorization of side streams by anaerobic digestion and combustion

机译:石灰处理过的小麦秸秆向生物乙醇的中试转化:生物乙醇的质量评估和厌氧消化和燃烧对侧流的增值作用

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Introduction The limited availability of fossil fuel sources, worldwide rising energy demands and anticipated climate changes attributed to an increase of greenhouse gasses are important driving forces for finding alternative energy sources. One approach to meeting the increasing energy demands and reduction of greenhouse gas emissions is by large-scale substitution of petrochemically derived transport fuels by the use of carbon dioxide-neutral biofuels, such as ethanol derived from lignocellulosic material. Results This paper describes an integrated pilot-scale process where lime-treated wheat straw with a high dry-matter content (around 35% by weight) is converted to ethanol via simultaneous saccharification and fermentation by commercial hydrolytic enzymes and bakers' yeast (Saccharomyces cerevisiae). After 53 hours of incubation, an ethanol concentration of 21.4 g/liter was detected, corresponding to a 48% glucan-to-ethanol conversion of the theoretical maximum. The xylan fraction remained mostly in the soluble oligomeric form (52%) in the fermentation broth, probably due to the inability of this yeast to convert pentoses. A preliminary assessment of the distilled ethanol quality showed that it meets transportation ethanol fuel specifications. The distillation residue, which contained non-hydrolysable and non-fermentable (in)organic compounds, was divided into a liquid and solid fraction. The liquid fraction served as substrate for the production of biogas (methane), whereas the solid fraction functioned as fuel for thermal conversion (combustion), yielding thermal energy, which can be used for heat and power generation. Conclusion Based on the achieved experimental values, 16.7 kg of pretreated wheat straw could be converted to 1.7 kg of ethanol, 1.1 kg of methane, 4.1 kg of carbon dioxide, around 3.4 kg of compost and 6.6 kg of lignin-rich residue. The higher heating value of the lignin-rich residue was 13.4 MJ thermal energy per kilogram (dry basis).
机译:引言化石燃料资源的有限供应,全球能源需求的增长以及由于温室气体增加导致的预期气候变化是寻找替代能源的重要动力。满足不断增长的能源需求和减少温室气体排放的一种方法是通过使用二氧化碳中性生物燃料(例如衍生自木质纤维素材料的乙醇)大规模替代石油化学衍生的运输燃料。结果本文描述了一个综合的中试规模工艺,其中干物质含量高(按重量计约35%)的经石灰处理的麦草通过商业水解酶和面包酵母(酿酒酵母)同时糖化和发酵而转化为乙醇。 )。温育53小时后,检测到乙醇浓度为21.4g /升,对应于理论最大值的48%葡聚糖-乙醇转化率。木聚糖部分在发酵液中大部分保持为可溶性寡聚形式(52%),这可能是由于该酵母不能转化戊糖。对蒸馏乙醇质量的初步评估表明,它符合运输乙醇燃料的规格。将包含不可水解和不可发酵的(有机)有机化合物的蒸馏残余物分为液体和固体部分。液体馏分用作产生沼气(甲烷)的底物,而固体馏分用作热转化(燃烧)的燃料,产生热能,可用于热能和发电。结论根据获得的实验值,可以将16.7千克预处理过的麦草转化为1.7千克乙醇,1.1千克甲烷,4.1千克二氧化碳,约3.4千克堆肥和6.6千克富含木质素的残渣。富含木质素的残渣的较高的热值为每千克13.4 MJ热能(干基)。

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