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LCA studies comparing alkaline and immobilized enzyme catalyst processes for biodiesel production under Brazilian conditions

机译:LCA研究将碱性和固定化酶催化剂工艺与巴西条件下的生物柴油生产进行比较

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摘要

Brazil is a leader in the production of biodiesel, and some challenges still exist in improving the energy usage and feedstocks alternatives for the transesterification process. In this paper, an industrial scale simulation was conducted to show a comparison of the traditional alkali-catalyzed process using catalysis sodium hydroxide with an enzyme-catalyzed process novel developed by the research team of one of the authors. LCA methodology was used to evaluate the potential multiple effects on the environment in Brazilian scenarios. In this regard, three basic cases were carried out: Case 1, where 1 t of soybean biodiesel was produced from the alkali-catalyzed process; Case 2 and 3, where 1 t of biodiesel, using the enzyme-catalyzed process, was produced from soybean oil and waste cooking oil respectively. The results reveal that considerable contribution can be made to the environment in Case 3 when waste cooking oil (WCO) is considered as a nearly environment-burden-free resource. Additionally, as illustrated in Case 2, not only the feedstock but also the technologic process can generate great influence on the environment when producing biodiesel in a large-scale plant. The efficiency of electric and thermal energy usage should be appropriately considered to diminish these impacts as much as possible. Likewise, chemicals and waste disposal also need to be well managed. (C) 2016 Elsevier B.V. All rights reserved.
机译:巴西是生产生物柴油的领导者,在改善酯交换过程中的能量使用和原料替代品方面仍然存在一些挑战。在本文中,进行了工业规模模拟,表明使用氢氧化钠的传统碱催化方法与作者研究团队开发的酶催化的工艺小说进行比较。 LCA方法用于评估巴西情景中对环境的潜在多种影响。在这方面,进行了三种基本情况:壳体1,其中由碱催化方法产生1吨大豆生物柴油;壳体2和3,其中使用酶催化方法的1吨生物柴油分别由大豆油和废物烹饪油制备。结果表明,当废物烹饪油(WCO)被认为是几乎环境负担资源时,可以对环境进行大量贡献。另外,如在情况2中所示,不仅在大型植物中产生生物柴油时可能对环境产生很大影响。应适当地考虑电气和热能使用的效率以尽可能地减少这些影响。同样,化学品和废物处理也需要良好管理。 (c)2016年Elsevier B.v.保留所有权利。

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