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Comparison of second-generation processes for the conversion of sugarcane bagasse to liquid biofuels in terms of energy efficiency, pinch point analysis and Life Cycle Analysis

机译:从能源效率,夹点分析和生命周期分析的角度比较第二代甘蔗渣转化为液态生物燃料的过程

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Three alternative processes for the production of liquid transportation biofuels from sugar cane bagasse were compared, on the perspective of energy efficiencies using process modelling, Process Environmental Assessments and Life Cycle Assessment. Bio-ethanol via two biological processes was considered, i.e. Separate Hydrolysis and Fermentation (Process 1) and Simultaneous Saccharification and Fermentation (Process 2), in comparison to Gasification and Fischer Tropsch synthesis for the production of synthetic fuels (Process 3). The energy efficiency of each process scenario was maximised by pinch point analysis for heat integration. The more advanced bio-ethanol process was Process 2 and it had a higher energy efficiency at 42.3%. Heat integration was critical for the Process 3, whereby the energy efficiency was increased from 51.6% to 55.7%. For both the Process Environmental and Life Cycle Assessment, Process 3 had the least potential for detrimental environmental impacts, due to its relatively high energy efficiency. Process 2 had the greatest Process Environmental Impact due to the intensive use of processing chemicals. Regarding the Life Cycle Assessments, Process 1 was the most severe due to its low energy efficiency.
机译:从使用过程建模,过程环境评估和生命周期评估的能源效率的角度,比较了从甘蔗渣生产液体运输生物燃料的三种替代过程。与用于生产合成燃料的气化和费-托合成相比,考虑了通过两种生物过程的生物乙醇,即分别的水解和发酵(过程1)以及同时的糖化和发酵(过程2)。通过对热集成的收缩点分析,可以最大化每种工艺方案的能源效率。更先进的生物乙醇工艺是工艺2,它的能源效率更高,为42.3%。热集成对于流程3至关重要,因此能量效率从51.6%提高到55.7%。对于过程环境和生命周期评估而言,过程3由于具有相对较高的能源效率,因此对环境的不利影响最小。由于大量使用加工化学品,工艺2对工艺环境的影响最大。关于生命周期评估,由于能源效率低,过程1最严重。

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