Institute of Agricultural Biotechnology, University of Caldas, Calle 65, No. 26-10, Manizales, Colombia.
Bioresour Technol. 2012 Jan;104:305-14. doi: 10.1016/j.biortech.2011.08.125. Epub 2011 Sep 8.
In this work, the hierarchical decomposition methodology was used to conceptually design the production of fuel ethanol from sugarcane. The decomposition of the process into six levels of analysis was carried out. Several options of technological configurations were assessed in each level considering economic and environmental criteria. The most promising alternatives were chosen rejecting the ones with a least favorable performance. Aspen Plus was employed for simulation of each one of the technological configurations studied. Aspen Icarus was used for economic evaluation of each configuration, and WAR algorithm was utilized for calculation of the environmental criterion. The results obtained showed that the most suitable synthesized flowsheet involves the continuous cultivation of Zymomonas mobilis with cane juice as substrate and including cell recycling and the ethanol dehydration by molecular sieves. The proposed strategy demonstrated to be a powerful tool for conceptual design of biotechnological processes considering both techno-economic and environmental indicators.
在这项工作中,使用了层次分解方法来从甘蔗中概念设计生产燃料乙醇。该过程被分解为六个分析级别。在每个级别中,都考虑了经济和环境标准来评估几种技术配置的选择。选择了最有前途的替代方案,拒绝了那些表现最差的方案。对于研究的每一种技术配置,都使用了 Aspen Plus 进行模拟。使用 Aspen Icarus 对每个配置进行经济评估,并使用 WAR 算法计算环境标准。结果表明,最合适的综合流程图涉及用甘蔗汁作为基质连续培养运动发酵单胞菌,并包括细胞回收和分子筛脱水乙醇。所提出的策略被证明是一种用于生物技术过程概念设计的强大工具,同时考虑了技术经济和环境指标。