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Dynamics and control of a biodiesel process by reactive absorption

机译:反应吸收对生物柴油过程的动力学和控制

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摘要

Integrated biodiesel processes based on reactive separations powered by solid acid/base catalysts are available nowadays, offering significant advantages such as minimal capital investment and operating costs, as well as no catalyst-related waste streams and no soap formation. However, the controllability of the process is just as important as the capital and operating savings. In such processes the small number of degrees of freedom is a drawback which makes it difficult to correctly set the ratio of reactant feeds and consequently to avoid impurities in the products. This work considers the process control of biodiesel production by reactive absorption, the main result being an efficient control structure that ensures the excess of methanol that is necessary for the total conversion of the fatty acids and for prevention of the difficult separations, while maintaining high purity of the water by-product. Rigorous simulations were performed - using Aspen Plus and Aspen Plus Dynamics as efficient computer-aided process engineering tools - for a plant producing lOktpy biodiesel from waste vegetable oil with high free fatty acids content, using solid acids as green catalysts. This reactive absorption process eliminates all conventional catalyst-related operations, and efficiently uses the raw materials and the reactor volume in an integrated setup that is well controllable in spite of the reduced number of degrees of freedom.
机译:如今,基于固体酸/碱催化剂驱动的反应分离的集成生物柴油工艺已面世,具有显着的优势,例如最小的资本投资和运营成本,并且没有与催化剂相关的废物流,也不会形成皂。但是,过程的可控性与资本和运营节省一样重要。在这样的方法中,少量的自由度是一个缺点,这使得难以正确地设定反应物进料的比例,因此难以避免产物中的杂质。这项工作考虑了通过反应吸收进行生物柴油生产的过程控制,主要结果是一种有效的控制结构,该结构可确保过量的甲醇,这对于脂肪酸的总转化和防止困难的分离是必需的,同时保持高纯度水副产物。进行了严格的模拟-使用Aspen Plus和Aspen Plus Dynamics作为有效的计算机辅助过程工程工具-使用固体酸作为绿色催化剂,从具有高游离脂肪酸含量的废植物油生产10ktp生物柴油的工厂进行了严格的模拟。这种反应吸收过程消除了所有常规的与催化剂相关的操作,并有效地利用了原材料和反应器的体积,尽管自由度降低了,但仍可很好地控制集成装置。

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