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首页> 外文期刊>Journal of Cleaner Production >Systems engineering based advanced optimization for sustainable water management in refineries
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Systems engineering based advanced optimization for sustainable water management in refineries

机译:基于系统工程的高级优化,用于炼油厂的可持续水管理

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Refineries are increasingly compelled to play an imperative role in achieving sustainable management of water as mandated by sustainable development goals (SDGs). Existing optimization models lack the ability to addresses this challenge of obtaining optimal refinery water network configuration for problems of industrial scale due to difficulty in application of complex solution algorithms of mixed integer non-linear problem (MINLP) formulations to large dimensions. Therefore, the optimization formulation in this work exploits process engineering derived constraints to build an integrated superstructure, which results in a simplified non-linear problem (NLP), and thus reduces computational complexity. Further, to substantially minimize fresh water consumption, the proposed model incorporates novel features of a modern refinery complex viz. distributed effluent treatment plant based on total dissolved solids (TDS) levels in waste water, segregation of sour water treatment based on phenolics content in condensate stream, and minimizing cooling tower blowdown rates by optimizing the cycles of concentration in cooling tower operation. The formulation is demonstrated for optimal water routing and economic benefits of the proposed approach through a representative case study of a real refinery complex. Towards the goal of zero liquid discharge, an efficient new scheme of recycling treated water to the boiler feed water system and cooling tower make up water requirements in optimal ratios, has been suggested from the results of the proposed model. Sensitivity of water reallocation in optimal refinery water network with respect to crude quality and desalter performance is also presented through application of proposed optimization framework in the case studies. (C) 2019 Elsevier Ltd. All rights reserved.
机译:精炼厂越来越被迫在实现可持续发展目标(SDGs)要求的水的可持续管理中起着至关重要的作用。由于难以将混合整数非线性问题(MINLP)公式的复杂求解算法应用于大尺寸,因此现有的优化模型缺乏解决针对工业规模问题的最佳炼油厂水网配置这一挑战的能力。因此,这项工作中的优化公式利用了过程工程派生的约束条件来构建集成的上部结构,从而简化了非线性问题(NLP),从而降低了计算复杂性。此外,为充分减少淡水消耗,建议的模型结合了现代炼油厂的新颖特征,即。基于废水中总溶解固体(TDS)水平的分布式废水处理厂,基于冷凝物流中酚含量的酸性水处理分离装置,以及通过优化冷却塔运行中的浓度循环来最大程度地降低冷却塔排污率。通过对实际精炼厂的典型案例研究,该配方可为拟议方法的最佳水流路线和经济效益证明。为了实现零液体排放的目标,从该模型的结果中提出了一种有效的新方案,该方案将处理后的水循环到锅炉给水系统和冷却塔中,以最佳比例补足水需求。通过在案例研究中应用拟议的优化框架,还提出了最佳炼油厂水网络中水重新分配对原油质量和脱盐性能的敏感性。 (C)2019 Elsevier Ltd.保留所有权利。

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