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首页> 外文期刊>Waste and biomass valorization >Acetone, Butanol, Ethanol and, Xylitol Production Through a Biorefinery Platform: An Experimental & Simulation Approach
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Acetone, Butanol, Ethanol and, Xylitol Production Through a Biorefinery Platform: An Experimental & Simulation Approach

机译:丙酮,丁醇,乙醇和木糖醇通过生物术平台生产:实验和模拟方法

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Purpose Butanol is an interesting biofuel and a product precursor, that could be obtained with acetone and ethanol via fermentation. The biofuels production has been identified as not economically competitive, thus, the parallel production of high value-added products, such as xylitol, could be an alternative to improve the profit. Xylitol can be produced from xylose, which might be considered as a coproduct in a second generation biorefinery.Methods This study presents a systematic biorefinery process design for the simultaneous acetone, butanol, ethanol (ABE) and xylitol production, based on experimental and simulation approaches. Experiments were performed for the pretreatment of sugarcane bagasse and ABE fermentation. The simulation part used the experimental results and experimental data from literature, to perform rigorous calculations of the ABE and xylitol production process. The economic analysis (EA) was performed relying on some indicators such as, the net present value (NPV) and payback period (PBP); EA includes several scenarios for producing only ABE and some scenarios for simultaneous ABE and xylitol production.Results The results showed that the combined butanol and xylitol production could reduce by 17% the selling price of butanol, compared with only producing butanol. The study also included the combustion of residual solids and carbon dioxide depletion analyses.Conclusion This approach illustrates the opportunity to perform a rigorous techno-economic analysis, to identify the feasibility of the process at industrial scale, based on realistic data. This approach was implemented for ABE and xylitol production, but it can be used to any other bioproduct.[GRAPHICS]
机译:目的是丁醇是一种有趣的生物燃料和产物前体,可以通过发酵用丙酮和乙醇获得。生物燃料生产已被确定为在经济上具有经济上竞争,因此,高附加值产品(如木糖醇)的平行生产可能是提高利润的替代方案。木糖醇可以由木糖制备,其可以在第二代生物晶体中被认为是群体。本研究提出了一种基于实验和模拟方法的同时丙酮,丁醇,乙醇(ABE)和木糖醇生产的系统生物遗料工艺设计。对甘蔗面包蛋白的预处理和ABE发酵进行实验。仿真部分使用了文献的实验结果和实验数据,对ABE和木糖醇生产过程进行严格计算。经济分析(EA)依赖于某些指标,如净现值(NPV)和投资回收期(PBP); EA包括若干场景仅用于同时发布的ABE和一些方案,用于同时和木糖醇生产。结果表明,只有生产丁醇的丁醇的销售价格可以减少17%的丁醇和木糖醇产量。该研究还包括残留固体和二氧化碳耗尽分析的燃烧。结论这种方法说明了执行严格的技术经济分析的机会,以确定工业规模的过程的可行性,基于现实数据。这种方法是为ABE和木糖醇生产实施的,但它可用于任何其他生物中文化。[图形]

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