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A mathematical, economic and energetic appraisal of biomethane and biohydrogen production from Brazilian ethanol plants' waste: Towards a circular and renewable energy development

机译:巴西乙醇植物废物的生物甲烷和生物氢化生物氢化的数学,经济和能量评估:朝向圆形和可再生能源发展

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The high production of sugarcane in Brazil and its application of ethanol and sugar production results in a higher generation of vinasse and bagasse. The treatment of these residues can be carried out using anaerobic co-digestion procedures. Besides promoting waste treatment, it enables energy exploration through biogas and hydrogen generation. Bioenergy use can also generate steam in sugar and alcohol plants by burning, sugarcane milling, fueling vehicles for the transport of products, among others. These energy applications allow total and efficient, energetic exploring of sugarcane. Hence, this study estimated the production of methane, hydrogen, thermal and electrical energy generated from vinasse and bagasse in the autonomous and annexed Brazilian ethanol and sugar plants. Three scenarios present the use of biogas generated: Scenario 1: energy use of all methane from biogas; Scenario 2: hydrogen production from the remaining methane, after considering the energy autonomy of the ethanol plants; Scenario 3: hydrogen production from all the methane generated. All the scenarios which considered the use of methane led to energy self-sufficiency in the sector. However, only annexed plants present economic feasibility for implementing the project. Scenario 2 is highlighted in this study, once beyond the sectors energetic self-sufficiency, the operational conditions enabled the storage of 9.26E+07 Nm(3).d(-1) of hydrogen, equal 3.04E+08 ton per year. CH4 and H-2 production seen in a global scenario of circular economy and energy security have high benefits, contributing to the gradual transformation of an economy dependent on nonrenewable resources into a circular and renewable economy. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:巴西甘蔗的高产量及其对乙醇和糖生产的应用,导致更高一代的Vinasse和甘蔗渣。可以使用厌氧共消化方法进行这些残留物的处理。除了促进废物处理外,它还通过沼气和氢气产生能量探索。生物能源使用也可以通过燃烧,甘蔗碾磨,加油车辆用于运输产品的燃料和酒精植物中的蒸汽。这些能源应用允许甘蔗的全部和高效探索。因此,本研究估计,在自主和被吞并的巴西乙醇和糖植物中,从Vinasse和Bagasse产生的甲烷,氢气,热和电能的生产。三种情景呈现使用生物糖生物糖:情景1:从沼气中的所有甲烷的能量使用;情景2:在考虑乙醇植物的能量自主性后,剩余甲烷的氢气产生;情景3:产生的所有甲烷的氢气产生。所有考虑使用甲烷的方案导致了该部门的能源自给自足。然而,只有被附带的植物目前实行实施项目的经济可行性。在本研究中突出显示的情景2,一旦超出了能量自给自足的行业,运营条件使得氢气的储存为9.26e + 07 nm(3).d(-1),每年等于3.04e + 08吨。在全球循环经济和能源安全方案中看到的CH4和H-2生产具有高利益,有助于经济逐渐转变,依赖于不可再生资源进入循环和可再生经济。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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