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Modeling and design of multi-stage separation systems

机译:多级分离系统的建模与设计

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Interest in recycling has surged in recent years due to shifting material costs, environmental concerns over material production and disposal, and laws in many countries designed to improve material recycling rates. In response, recycling systems are becoming more complex as increasing material recovery is required from products with complicated material mixtures such as WEEE (Waste Electric and Electronic Equipment). One common approach to increasing system separation performance is the use of multi-stage separation systems. The problem of estimating the performance and designing multi-stage separation processes has rarely been tackled from a system engineering perspective, resulting in poor integration and sub-optimal configuration of industrial multi-stage separation systems. This paper presents a systematic approach to modeling and analyzing multi-stage separation processes. Individual separation processes modeled as Bayesian binary separation steps are incorporated into network models through mass flow rate equations. The model can be used to evaluate the performance of these multi-stage separations under varying conditions, informing decisions about system configuration and process performance. Several basic examples demonstrate the utility of this model for design decisions. The industrial value is demonstrated through a real case study featuring PET plastic and aluminum flake separation in the beverage container recycling industry.
机译:近年来,由于材料成本的变化,对材料生产和处置的环境关注以及许多国家旨在提高材料回收率的法律,对回收的兴趣激增。作为响应,随着要求从具有复杂材料混合物的产品(例如WEEE(废电气和电子设备))中提高材料回收率,再循环系统变得越来越复杂。提高系统分离性能的一种常用方法是使用多级分离系统。从系统工程的角度来看,评估性能和设计多级分离过程的问题很少得到解决,从而导致工业多级分离系统的集成度差和配置欠佳。本文提出了一种建模和分析多级分离过程的系统方法。通过质量流率方程将建模为贝叶斯二元分离步骤的单个分离过程合并到网络模型中。该模型可用于评估在不同条件下这些多级分离的性能,从而提供有关系统配置和过程性能的决策。几个基本示例演示了该模型在设计决策中的实用性。通过在饮料容器回收行业中采用PET塑料和铝薄片分离的真实案例研究来证明其工业价值。

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