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Optimal and robust synthesis of the biodiesel production process using waste cooking oil from different feedstocks

机译:使用不同原料的废食用油对生物柴油生产过程进行最佳而稳定的合成

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摘要

Waste cooking oil (WCO) is generally collected from different sources, e.g., restaurants as an economic feedstock for biodiesel production. The variations of the quality of the collected oil can create uncertainty in the components of the WCO processed in the biodiesel production process. Therefore, the optimal synthesis of an alkali-catalyzed process considering the uncertainty in the WCO components was studied. The uncertain quality of the WCO feed was modeled using a Gaussian random variable. Then, a stochastic optimization approach was proposed for the design of the plant and a chance-constrained based methodology was adopted as the solution technique of the problem. The effects of the proposed approach on the design and operating parameters were studied. It was shown that the stochastic formulation can provide a safety margin to be able to tolerate the feed quality variations. The economic performance of the plant designed using different scenarios was also compared. It was shown that a plant designed using the proposed stochastic approach has 11.9% extra fixed capital investment and revenue as high as the nominal case. The proposed design can handle a range of feed qualities without major constraint violation which was not the case for designs obtained using deterministic formulation.
机译:废弃的食用油(WCO)通常是从不同的来源(例如餐馆)收集的,作为生物柴油生产的经济原料。收集到的油的质量变化会在生物柴油生产过程中处理的WCO的成分中产生不确定性。因此,研究了考虑WCO组分不确定性的碱催化工艺的最佳合成方法。使用高斯随机变量对WCO饲料的不确定质量进行建模。然后,提出了一种用于工厂设计的随机优化方法,并采用了基于机会约束的方法作为问题的解决方法。研究了该方法对设计和运行参数的影响。结果表明,随机配方可以提供安全余量,能够耐受饲料质量的变化。还比较了使用不同方案设计的工厂的经济性能。结果表明,采用拟议的随机方法设计的工厂的固定资本投资和收入额外增加了11.9%,与名义情况一样高。拟议的设计可以处理一系列进料质量,而不会违反主要约束,这对于使用确定性公式获得的设计而言并非如此。

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