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Superstructure-based Design and Optimization of Batch Biodiesel Production Using Heterogeneous Catalysts

机译:基于上部结构的基于批量生植物的设计和优化使用异质催化剂

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Biodiesel as a fuel comprised of mono alkyl esters of long chain fatty acids derived from renewable lipid feedstock, such as vegetable oil and animal fat. Biodiesel production is complex process which need systematic design and optimization. However, no case study using the process system engineering (PSE) elements which are superstructure optimization of batch process, it involves complex problems and uses mixed-integer nonlinear programming (MINLP). The PSE offers a solution to complex engineering system by enabling the use of viable tools and techniques to better manage and comprehend the complexity of the system. This study is aimed to apply the PSE tools for the simulation of biodiesel process and optimization and to develop mathematical models for component of the plant for case A, B, C by using published kinetic data. Secondly, to determine economic analysis for biodiesel production, focusing on heterogeneous catalyst. Finally, the objective of this study is to develop the superstructure for biodiesel production by using heterogeneous catalyst. The mathematical models are developed by the superstructure and solving the resulting mixed integer non-linear model and estimation economic analysis by using MATLAB software. The results of the optimization process with the objective function of minimizing the annual production cost by batch process from case C is $23.2587 million USD. Overall, the implementation a study of process system engineering (PSE) has optimized the process of modelling, design and cost estimation. By optimizing the process, it results in solving the complex production and processing of biodiesel by batch.
机译:生物柴油作为由长链脂肪酸的单烷基酯组成的燃料,该脂肪酸衍生自再生脂质原料,例如植物油和动物脂肪。生物柴油生产是复杂的过程,需要系统的设计和优化。但是,无需使用批处理过程的超大结构优化的过程系统工程(PSE)元件的案例研究,它涉及复杂的问题,并使用混合整数非线性编程(MINLP)。 PSE通过能够使用可行的工具和技术来提供复杂工程系统的解决方案,以更好地管理和理解系统的复杂性。本研究旨在应用用于模拟生物柴油工艺和优化的PSE工具,并通过使用公开的动力学数据为案例A,B,C进行工厂组件的数学模型。其次,确定生物柴油生产的经济分析,重点是异质催化剂。最后,本研究的目的是通过使用异质催化剂来开发用于生物柴油生产的超大结构。通过使用MATLAB软件,由上部结构开发数学模型并解决得到的混合整数非线性模型和估计经济分析。优化过程的结果具有通过案例C批量流程最小化年生产成本的客观函数为2325.87亿美元。总的来说,实施过程系统工程(PSE)的研究已经优化了建模,设计和成本估算的过程。通过优化该过程,它会通过批次解决生物柴油的复杂生产和加工。

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