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Optimal engineered algae composition for the integrated simultaneous production of bioethanol and biodiesel

机译:优化的工程藻类成分,可同时生产生物乙醇和生物柴油

摘要

The optimization of the composition of the algae for the simultaneous production of bioethanol and biodiesel is presented. We consider two alternative technologies for the biodiesel synthesis from algae oil, enzymatic or homogeneous alkali catalyzed that are coupled with bioethanol production from algae starch. In order to determine the optimal operating conditions, we not only couple the technologies, but simultaneously optimize the production of both biofuels and heat integrate them while optimizing the water consumption. Multi-effect distillation is included to reduce the energy and cooling water consumption for ethanol dehydration. In both cases, the optimal algae composition results in 60% oil, 30% starch, and 10% protein. The best alternative for the production of biofuels corresponds to a production price of 0.35 $/gal, using enzymes, with energy and water consumption values (4.00 MJ/gal and 0.59 gal/gal).
机译:提出了同时生产生物乙醇和生物柴油的藻类成分的优化方法。我们考虑了两种从藻类油中合成生物柴油的替代技术,即酶催化或均相碱催化,再结合藻类淀粉生产生物乙醇。为了确定最佳运行条件,我们不仅结合了这些技术,而且同时优化了两种生物燃料的生产,并在优化水消耗的同时进行了热整合。包括多效蒸馏以减少乙醇脱水所需的能量和冷却水消耗。在这两种情况下,最佳的藻类成分均可产生60%的油,30%的淀粉和10%的蛋白质。生产生物燃料的最佳替代方案是使用酶的生产价格为0.35美元/加仑,具有能源和水的消耗量(4.00 MJ / gal和0.59 gal / gal)。

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