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Design of end-of-pipe zero liquid discharge systems under variable operating parameters

机译:可变运行参数下的管端零液体排放系统设计

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Zero-liquid discharge systems have proven to be quite effective as a long-term brine management strategy. The availability of powerful modelling and optimization tools for the design of cost-effective zero-liquid discharge systems is vital, so as to ensure that only the best -performing systems are designed, constructed and operated. To date, the design of Zero Liquid discharge systems has been modelled in terms of flow rate only, without accounting for the effect of other parameters such as the feed salinity, temperature and pressure. The focus of this work is to integrate additional operating parameters (mainly temperature, salinity and electricity pricing), into a modified optimization model and to determine, more accurately, the best zero liquid discharge system configuration based on specific brine feed characteristics. The proposed model has been implemented using a case study, and sensitivity analysis is performed to determine the most optimal structure under different inlet conditions. The results indicate that the optimal configuration is highly sensitive to brine temperature and salinity. Moreover, this work also demonstrates how non-brine related conditions, such as electricity pricing, affects the design of such systems. When compared to Mansour et al. (2018), the capital costs were comparable, however, the operating costs of Zero-liquid discharge systems have been captured more effectively after introducing additional model parameters. (C) 2019 Elsevier Ltd. All rights reserved.
机译:事实证明,零液体排放系统作为长期盐水管理策略非常有效。对于设计经济高效的零液体排放系统而言,功能强大的建模和优化工具的可用性至关重要,以确保仅设计,构造和运行性能最佳的系统。迄今为止,零液体排放系统的设计仅以流速为模型,而未考虑其他参数(如进料盐度,温度和压力)的影响。这项工作的重点是将其他运行参数(主要是温度,盐度和电价)集成到修改后的优化模型中,并根据特定的盐水进料特性更准确地确定最佳的零液体排放系统配置。拟议的模型已通过案例研究实施,并进行了敏感性分析,以确定在不同进气条件下的最佳结构。结果表明,最佳配置对盐水温度和盐度高度敏感。此外,这项工作还证明了与非盐水相关的条件(例如电价)如何影响此类系统的设计。与Mansour等人相比。 (2018),资本成本是可比的,但是在引入其他模型参数后,零液体排放系统的运营成本得到了更有效的捕捉。 (C)2019 Elsevier Ltd.保留所有权利。

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