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麻风树油酶法生物柴油合成中温度影响的建模:一种最优控制方法。

Modeling the Effects of Temperature in Enzymatic Biodiesel Synthesis of Jatropha Oil: An Optimal Control Approach.

作者信息

Al Basir Fahad, Jana Goutam Kumar, Raezah Aeshah A, Roy Priti Kumar

机构信息

Department of Mathematics, Asansol Girls' College, Asansol-4, Asansol, West Bengal 713304, India.

Department of Chemistry, Asansol Girls' College, Asansol-4, Asansol, West Bengal 713304, India.

出版信息

ACS Omega. 2024 Sep 18;9(39):41097-41104. doi: 10.1021/acsomega.4c07754. eCollection 2024 Oct 1.

Abstract

Biodiesel, an alternative to diesel, is produced through the enzymatic transesterification of vegetable oil or animal fats. Enzymatic transesterification of oil is gaining more importance, as this method possesses no such disadvantages that are associated with the chemical process. Temperature is the most important factor in enzymatic transesterification for biodiesel synthesis. In this study, a mathematical model is developed to understand the effects of temperature on the enzymatic transesterification of oil. Reaction rates are expressed as a function of temperature using an appropriate function, and the effects of temperature on the overall enzymatic system are investigated using the mathematical model. A suitable temperature is determined using the mathematical model, keeping the other reaction conditions unchanged that gives maximum yield. Furthermore, an optimal control problem (OCP) is formulated to identify the temperature control strategy that maximizes the biodiesel yield while minimizing production costs. Simulated outcomes obtained from the mathematical model are analogized with the experimental results to make them acceptable. The optimal profile of temperature is determined from the developed OCP, which maximizes the biodiesel yield.

摘要

生物柴油是柴油的一种替代品,它通过植物油或动物脂肪的酶促酯交换反应生产。油的酶促酯交换反应越来越重要,因为这种方法没有化学过程所具有的那些缺点。温度是生物柴油合成酶促酯交换反应中最重要的因素。在本研究中,建立了一个数学模型来了解温度对油的酶促酯交换反应的影响。使用适当的函数将反应速率表示为温度的函数,并使用该数学模型研究温度对整个酶系统的影响。在保持其他反应条件不变的情况下,使用数学模型确定能给出最大产率的合适温度。此外,制定了一个最优控制问题(OCP),以确定能使生物柴油产率最大化同时使生产成本最小化的温度控制策略。将从数学模型获得的模拟结果与实验结果进行类比,使其更具可信度。从所建立的最优控制问题中确定温度的最优分布,以实现生物柴油产率的最大化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5dd/11447844/2728b0605e88/ao4c07754_0001.jpg

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