Instituto de Biotecnología y Agroindustria, Laboratorio de Equilibrios Químicos y Cinética Enzimática, Departamento de Ingeniería Química, Universidad Nacional de Colombia sede Manizales, Manizales, Colombia.
Environ Sci Pollut Res Int. 2018 Dec;25(36):35971-35980. doi: 10.1007/s11356-018-1848-y. Epub 2018 Apr 7.
Two scenarios for the biogas production using Banana Peel as raw material were evaluated. The first scenario involves the stand-alone production of biogas and the second scenario includes the biogas production together with other products under biorefinery concept. In both scenarios, the influence of the production scale on the process economy was assessed and feasibility limits were defined. For this purpose, the mass and energy balances were established using the software Aspen Plus along with kinetic models reported in the literature. The economic and environmental analysis of the process was performed considering Colombian economic conditions. As a result, it was found that different process scales showed great potential for biogas production. Thus, plants with greater capacity have a greater economic benefit than those with lower capacity. However, this benefit leads to high-energy consumption and greater environmental impact.
评估了使用香蕉皮作为原料生产沼气的两种方案。第一种方案涉及独立生产沼气,第二种方案包括在生物炼制概念下与其他产品一起生产沼气。在这两种方案中,评估了生产规模对工艺经济性的影响,并确定了可行性限制。为此,使用 Aspen Plus 软件以及文献中报道的动力学模型建立了质量和能量平衡。考虑到哥伦比亚的经济条件,对该过程进行了经济和环境分析。结果表明,不同的工艺规模显示出了很大的沼气生产潜力。因此,容量较大的工厂比容量较小的工厂具有更大的经济效益。然而,这种效益会导致高能耗和更大的环境影响。