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Optimal scenario balance of reduction in costs and greenhouse gas emissions for municipal solid waste management

机译:用于城市固体废物管理的降低成本和减少温室气体排放的最佳方案平衡

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摘要

To reduce carbon intensity, an improved management method balancing the reduction in costs and greenhouse gas (GHG) emissions is required for Tianjin’s waste management system. Firstly, six objective functions, namely, cost minimization, GHG minimization, eco-efficiency minimization, cost maximization, GHG maximization and eco-efficiency maximization, are built and subjected to the same constraints with each objective function corresponding to one scenario. Secondly, GHG emissions and costs are derived from the waste flow of each scenario. Thirdly, the range of GHG emissions and costs of other potential scenarios are obtained and plotted through adjusting waste flow with infinitely possible step sizes according to the correlation among the above six scenarios. And the optimal scenario is determined based on this range. The results suggest the following conclusions. 1) The scenarios located on the border between scenario cost minimization and GHG minimization create an optimum curve, and scenario GHG minimization has the smallest eco-efficiency on the curve;2) Simple pursuit of eco-efficiency minimization using fractional programming may be unreasonable; 3) Balancing GHG emissions from incineration and landfills benefits Tianjin’s waste management system as it reduces GHG emissions and costs.
机译:为了降低碳强度,天津的废物管理系统需要一种在成本降低和温室气体排放之间取得平衡的改进管理方法。首先,建立了六个目标函数,即成本最小化,GHG最小化,生态效率最小化,成本最大化,GHG最大化和生态效率最大化,并受到相同的约束,每个目标函数都对应一个场景。其次,温室气体的排放量和成本是从每种情景的废物流中得出的。第三,根据上述六种情景之间的相关性,通过以无限可能的步长调整废物流量,获得并绘制了其他潜在情景的温室气体排放范围和成本。并根据此范围确定最佳方案。结果表明以下结论。 1)位于情景成本最小化和GHG最小化之间的边界的情景会创建一条最佳曲线,并且情景GHG最小化在曲线上具有最小的生态效率; 2)使用分数规划简单追求生态效率最小化可能是不合理的; 3)平衡焚烧和垃圾填埋场的温室气体排放量有利于天津的废物管理系统,因为它减少了温室气体排放量和成本。

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