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Study of microalgae cultivation systems based on integrated analytic hierarchy process-life cycle optimization

机译:基于集成层次分析法-生命周期优化的微藻栽培系统研究

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Optimization of sustainable process plant configurations requires the use of systematic assessment methods based on the usage of natural resources, release of pollutants and generation of environmental impact. This paper presents an integrated life cycle optimization framework for the synthesis of microalgae cultivation systems, using a multiple objective linear program formulation; in the model, individual objective functions are aggregated and weighted using the analytic hierarchy process. Four different cultivation alternatives were used as case study to demonstrate the capability of this formulated integrated model. The model takes into account three main environmental criteria in assessing different cultivation alternatives, namely energy, water (direct and indirect water) and carbon footprints. It is determined in the case study that the open pond cultivation system is preferred compared to other alternatives.
机译:优化可持续过程工厂配置需要使用基于自然资源使用,污染物释放和环境影响产生的系统评估方法。本文提出了一个集成的生命周期优化框架,该框架使用多目标线性程序公式来合成微藻培养系统。在模型中,使用层次分析法对单个目标函数进行汇总和加权。四种不同的栽培替代品被用作案例研究,以证明这种配制的整合模型的功能。该模型在评估不同的耕作方式时考虑了三个主要的环境标准,即能源,水(直接和间接水)和碳足迹。在案例研究中确定,与其他替代方案相比,开放池塘养殖系统更为可取。

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