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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Network-Based Life Cycle Optimization of the Net Atmospheric CO2-eq Ratio (NACR) of Fuels and Chemicals Production from Biomass
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Network-Based Life Cycle Optimization of the Net Atmospheric CO2-eq Ratio (NACR) of Fuels and Chemicals Production from Biomass

机译:基于网络的生物质燃料和化学品的净大气CO2-当量比(NACR)的生命周期优化

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摘要

A biofuels and bioproducts conversion network is optimized over unit cost and unit greenhouse gas emissions objectives. We use a multiobjective, functional unit approach based on the life cycle analysis methodology with simultaneous consideration of capital budget constraints. A novel functional unit of mass of input biogenic CO2-eq is proposed to capture common benefits of bioproducts and biofuels. A novel dimensionless net atmospheric carbon ratio (NACR) for bioconversion processes is defined that captures the life cycle carbon footprint of the process from feedstock cultivation to product end use. The model is formulated as a nonconvex multiobjective mixed integer nonlinear fractional programming problem. We address computational complexity by developing a novel global optimization algorithm that incorporates the parametric algorithm and successive piecewise linear approximations to estimate nonconvex terms, and we introduce nonlinear programming subproblems to ensure global convergence under capital cost budget constraints. We consider large-scale case studies of a bioconversion network of 200 technologies and 142 materials/ compounds where fuels and chemicals can be made from biomass. Unit costs range from -$0.27 to -$0.43/kg input CO2-eq, and the NACRs range from 0.17 to 0.25. An optimal NACR that includes biofuel combustion emissions over a network where only biofuels are produced was found to be 1.90.
机译:针对单位成本和单位温室气体排放目标优化了生物燃料和生物产品转化网络。我们使用基于生命周期分析方法的多目标功能单元方法,同时考虑资本预算约束。提出了一种输入生物碳当量的新型功能单位,以捕捉生物产品和生物燃料的共同利益。定义了一种用于生物转化过程的新颖的无量纲净大气碳比(NACR),可捕获从原料种植到产品最终用途的整个过程的生命周期碳足迹。该模型被公式化为非凸多目标混合整数非线性分数规划问题。我们通过开发一种新颖的全局优化算法来解决计算复杂性,该算法将参数算法和逐段线性逼近相结合来估计非凸项,并且引入非线性规划子问题以确保在资本成本预算约束下实现全局收敛。我们考虑对200种技术和142种材料/化合物的生物转化网络进行大规模的案例研究,其中可以利用生物质来制造燃料和化学品。单位成本范围为-0.27美元至-0.43美元/千克输入二氧化碳当量,而NACR的范围为0.17至0.25美元。发现包括仅产生生物燃料的网络上的生物燃料燃烧排放的最优NACR为1.90。

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