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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Performance evaluation and economic analysis of the bioethanol and flour production using rejected unripe plantain fruits (Musa paradisiaca L.) as raw material
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Performance evaluation and economic analysis of the bioethanol and flour production using rejected unripe plantain fruits (Musa paradisiaca L.) as raw material

机译:生物乙醇和面粉生产的性能评价与经济分析使用被拒绝的未成熟的植物水果(Musa Paradisiaca L.)作为原料

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Plantain needs to accomplish different quality conditions to be exported. Nevertheless, organoleptic aspects contribute to rejecting more than 20% of the plantain production gener-ating environmental problems. Therefore, this study aims to perform the techno-economic analysis of the bioethanol and plantain flour production using unripe plantain as raw mate-rial. For this, different scenarios were proposed and simulated. The first scenario comprises the production of bioethanol and plantain flour using whole plantain flour (with peel), while the second scenario uses separately the peel and pulp. Then, an overall analysis of the mass and energy performance of the processes as well as an economic assessment in Colombia, and Mexico was done. The starch content of peel (39.4%) and pulp (84.2%) in the unripe plan-tain fruits allows proposing this raw material to produce flour and bioethanol. Moreover, the calorific value obtained for the peel and pulp flours (15.32 MJ/kg and 15.12 MJ/kg, respectively) allows elucidating a high potential of this raw material to be upgraded in biotechnological processes. The simulation results suggest that plantain flour with peel has a better process performance than the use of separately the peel and pulp in the flour and bioethanol pro-duction. Moreover, flour with peel has greater potential, especially to produce foodstuffs due to the nutritional content, commercial value and, defined market. Instead, the lower annual operating costs in Mexico make a difference to obtain a more profitable project compared with the Colombian case. Finally, the rejected plantain has the potential to be used as a raw material to obtain flour. However, other energy vectors such as biogas could be better than bioethanol as an option to increase the number of products from this raw material at low scales. Therefore, rejected plantain represents an entrepreneurship opportunity to obtain marketable products at a local and regional level. (C) 2020 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:植物需要完成不同的质量条件。尽管如此,呼吸式方面有助于拒绝超过20%的植物生产生成的环境问题。因此,本研究旨在使用未成熟的植物作为原始伴侣进行生物乙醇和植物面粉生产的技术经济分析。为此,提出了不同的场景和模拟。第一种情况包括使用全植物面粉(用剥离)生产生物乙醇和植物面粉,而第二种情况是单独使用的果皮和纸浆。然后,完成了对哥伦比亚和墨西哥的过程的质量和能量绩效的总体分析,并进行了经济评估。未成熟的果实果皮(39.4%)和纸浆(84.2%)的淀粉含量允许提出这种原料以产生面粉和生物乙醇。此外,对果皮和纸浆面粉(分别为15.32mJ / kg和15.12mJ / kg)获得的热值允许阐明这种原料的高潜力在生物技术过程中升级。仿真结果表明,吐蕃面粉具有比在面粉和生物乙醇中的单独剥离和纸浆的使用更好的过程性能。此外,由于营养含量,商业价值和定义市场,面粉具有更大的潜力,特别是生产食物。相反,与哥伦比亚案例相比,墨西哥的年度运营成本较低,达到了更有利可图的项目。最后,被拒绝的植物具有用作获得面粉的原料。然而,诸如沼气之类的其他能量载体可以优于生物乙醇作为增加在低尺度下从该原料的产品数量增加的选项。因此,被拒绝的植物代表着在当地和区域一级获得可销售产品的企业家机会。 (c)由elsevier b.v发表的2020年代代表化学工程师机构。

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