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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Unraveling Optimal Biomass Processing Routes from Bioconversion Product and Process Networks under Uncertainty: An Adaptive Robust Optimization Approach
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Unraveling Optimal Biomass Processing Routes from Bioconversion Product and Process Networks under Uncertainty: An Adaptive Robust Optimization Approach

机译:在不确定性下从生物转化产品和过程网络中揭示最佳生物量处理路线:一种自适应鲁棒优化方法

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摘要

A bioconversion product and process network converts different types of biomass to various fuels and chemicals via a plethora of technologies. Reliable bioconversion processing pathways should be designed considering the effect of uncertain parameters, such as biomass feedstock price and biofuel product demand. Given a large-scale bioconversion product and process network of 194 technologies and 139 materials/compounds, we propose a two-stage adaptive robust mixed-integer nonlinear programming problem. The model allows for decisions at the design and operational stages to be made sequentially and considers budgets of uncertainty to control the level of robustness. Nonlinearity in this model appears in the first-stage objective function, and the second-stage problem is a linear program. We efficiently solve the proposed problem with a tailored algorithm. The robust optimal solutions corresponding to various uncertainty budgets show that the minimum total annualized cost is more sensitive to biofuel demand uncertainty compared to biomass feedstock price uncertainty.
机译:生物转化产品和工艺网络通过多种技术将不同类型的生物质转化为各种燃料和化学品。应考虑不确定参数(例如生物质原料价格和生物燃料产品需求)的影响,设计可靠的生物转化处理途径。鉴于大型生物转化产品和工艺网络包含194种技术和139种材料/化合物,我们提出了两阶段自适应鲁棒混合整数非线性规划问题。该模型允许按顺序进行设计和操作阶段的决策,并考虑不确定性预算以控制鲁棒性水平。该模型的非线性出现在第一阶段的目标函数中,第二阶段的问题是线性程序。我们使用量身定制的算法有效地解决了提出的问题。与各种不确定性预算相对应的稳健最优解表明,与生物质原料价格不确定性相比,最低总年化成本对生物燃料需求不确定性更为敏感。

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