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Sustainable Process Synthesis,Design and Innovation of Bio-succinic Acid Production

机译:生物琥珀酸生产的可持续工艺综合,设计和创新

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Over the last decades,bio-succinic acid from renewable resources has gained significant attention as a precursor molecule for the synthesis of an array of other chemicals.The goal of this study is to obtain a novel process alternative for bio-succinic acid production,which is optimal and realistic in terms of process economics,implementation as well as environmental sustainability.Thereby,a hierarchical approach consisting of 3 stages:synthesis,design(& analysis)and innovation is used.In stage 1,a comprehensive superstructure is developed to systematically find the optimal processing route to produce bio-succinic acid.The proposed superstructure contains multiple process alternatives including different types of feedstock,pretreatment steps,fermentation technologies,and separation technologies all at acceptable technology readiness level(TRL).Based on the superstructure,a mixed-integer linear model was formulated.Once an optimal processing route is identified,then in stage 2,the selected process flowsheet is designed and analysed in detail.The primary goal at this stage is to identify process hotspots which enables to set design targets for further improvements.The identified process bottlenecks are then used in the 3rd stage where a phenomena-based synthesis methodology is applied,generating non-trade off and more sustainable process alternatives for producing bio-succinic acid.
机译:在过去的几十年中,来自可再生资源的生物 - 琥珀酸作为一种其他化学品阵列的前体分子获得了显着的关注。本研究的目的是获得生物 - 琥珀酸生产的新工艺替代品,这在流程经济学,实施以及环境可持续性方面是最佳的.Thersby,由3个阶段组成的分层方法:合成,设计(&分析)和创新。在第1阶段,系统地开发了全面的上层建筑寻找产生生物琥珀酸的最佳加工途径。所提出的上部结构含有多种工艺替代品,包括不同类型的原料,预处理步骤,发酵技术和分离技术,全部在可接受的技术准备水平(TRL)。基于上层建筑,a配制混合整数线性模型。识别出最佳处理路线,然后在第2阶段,选择编辑流程流程详细设计和分析。此阶段的主要目标是识别过程热点,这使得能够设置设计目标以进一步改进。然后在第三阶段使用识别的过程瓶颈,其中基于现象的合成方法是应用,产生非贸易和更可持续的工艺替代品种生产生物琥珀酸。

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