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SYNTHESIS AND OPTIMIZATION OF AN INTEGRATED WATER AND MEMBRANE NETWORK SYSTEM WITH MULTIPLE ELECTRODIALYSIS REGENERATORS

机译:具有多种电渗析器的集成水和膜网络系统的合成与优化

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The shrinking supplies of freshwater globally, coupled with strict environmental regulations, have driven the manufacturing industry towards sustainable water management for the minimization of freshwater intake and wastewater generation. By using process integration and its enabling tools, this work considers the synthesis of an optimal water network with multiple regeneration capabilities. Development of the proposed framework is achieved by embedding a subnetwork of detailed electrodialysis models within a water network. Based on a superstructure and fixedflowrate, the optimization problem is formulated as an MINLP model and solved in GAMS/DICOPT. To demonstrate the applicability of the proposed mathematical model a literature case study on a pulp and paper plant is presented and the results indicate a potential 12% savings in freshwater intake, 16% reduction in wastewater generated and a 14% saving in the total annualised cost for the entire network.
机译:全球淡水的缩小耗材,加上严格的环境法规,使制造业迈向可持续水管理,以最大限度地减少淡水摄入量和废水生成。通过使用流程集成及其启用工具,这项工作考虑了具有多种再生能力的最佳水网络的合成。通过在水网络中嵌入详细电渗析模型的子网来实现所提出的框架的开发。基于超结构和超出荧光,优化问题被制定为MINLP模型并在Gams / Dicopt中解决。为了证明所提出的数学模型的适用性,提出了对纸浆和造纸厂的文献案例研究,结果表明淡水摄入量的潜在12%节约,废水减少了16%,每年总成本节省14%对于整个网络。

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