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Integrated membrane distillation-reverse electrodialysis system for energy-efficient seawater desalination

机译:集成膜蒸馏-反向电渗析系统可实现高效海水淡化

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摘要

Although desalination market is today dominated by Seawater Reverse Osmosis (SWRO), important technological issues remain unaddressed, specifically: relatively low water recovery factor (around 50%) and consequent huge amount of brine discharged, and energy consumption (3-5 kWh/m(3)) still far from the minimum thermodynamic value (similar to 1 kWh/m(3)). Herein, the energy performance of an innovative systems combining SWRO, Membrane Distillation (MD) and Reverse Electrodialysis (RED) for simultaneous production of water and energy is investigated. The valorization of hypersaline waste brine by Salinity Gradient Power production via RED and the achievement of high recovery factors (since MD is not limited by osmotic phenomena) represent a step forward to the practical implementation of Zero Liquid Discharge and low-energy desalination. The analysis is supported by lab-scale experimental tests carried out on MD and RED over a broad set of operational conditions. Among the different case studies investigated, exergetic efficiency reached 49% for the best scenario, i.e. MD feed temperature of 60 degrees C, MD brine concentration of 5M NaCl, RED power density of 2.2 W/m(2)MP (MP: membrane pair). Compared to the benchmark flowsheet (only SWRO), up to 23% reduction in electrical energy consumption and 16.6% decrease in specific energy consumption were achieved when including a RED unit. The analysis also indicates that optimization of thermal energy input at the MD stage is critical, although it can potentially be fulfilled by low-grade waste heat or solar-thermal renewable sources. Overall, the proposed integrated system is coherent with the emergent paradigm of Circular Economy and the logic of Process Intensification.
机译:尽管当今海水淡化市场主要由海水反渗透(SWRO)主导,但仍未解决重要的技术问题,特别是:相对较低的水回收率(约50%)和随之而来的大量盐水排放以及能源消耗(3-5 kWh / m) (3))仍然远离最小热力学值(类似于1 kWh / m(3))。在本文中,研究了将SWRO,膜蒸馏(MD)和逆电渗析(RED)结合起来同时生产水和能源的创新系统的能源性能。通过RED的盐度梯度发电产生的高盐度废盐水的价值化和高回收率的实现(因为MD不受渗透现象的限制)代表了向零液体排放和低能耗淡化的实际实施迈出的一步。在广泛的操作条件下,在MD和RED上进行的实验室规模的实验测试为分析提供了支持。在所研究的不同案例研究中,最佳方案的能量效率达到49%,即MD进料温度为60摄氏度,MD盐水浓度为5M NaCl,RED功率密度为2.2 W / m(2)MP(MP:膜对) )。与基准流程表(仅SWRO)相比,包括RED单元时,可减少23%的电能消耗和16.6%的比能耗。分析还表明,优化MD阶段的热能输入至关重要,尽管可以通过低品位废热或太阳热可再生资源来实现。总体而言,所提出的集成系统与循环经济的新兴范式和过程强化的逻辑相一致。

著录项

  • 来源
    《Applied Energy》 |2019年第1期|113551.1-113551.13|共13页
  • 作者单位

    Univ Chem & Technol Prague Dept Inorgan Technol Tech 5 Prague 16628 6 Czech Republic|Univ Calabria Dept Environm & Chem Engn DIATIC UNICAL Via P Bucci CUBO 45A I-87036 Arcavacata Di Rende CS Italy;

    Univ Calabria Dept Environm & Chem Engn DIATIC UNICAL Via P Bucci CUBO 45A I-87036 Arcavacata Di Rende CS Italy;

    CNR Natl Res Council Italy Inst Membrane Technol ITM Via P Bucci CUBO 17C I-87036 Arcavacata Di Rende CS Italy;

    Aalborg Univ Ctr Membrane Technol Dept Chem & Biosci Fredr Bajers Vej 7H DK-9220 Aalborg Denmark;

    CNR Natl Res Council Italy Inst Membrane Technol ITM Via P Bucci CUBO 17C I-87036 Arcavacata Di Rende CS Italy|Hanyang Univ WCU Energy Engn Dept Room 917 9th Floor FTC Bldg 17 Haengdang Dong Seoul 133791 South Korea;

    Univ Chem & Technol Prague Dept Inorgan Technol Tech 5 Prague 16628 6 Czech Republic;

    Univ Calabria Dept Environm & Chem Engn DIATIC UNICAL Via P Bucci CUBO 45A I-87036 Arcavacata Di Rende CS Italy|CNR Natl Res Council Italy Inst Membrane Technol ITM Via P Bucci CUBO 17C I-87036 Arcavacata Di Rende CS Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reverse osmosis; Membrane distillation; Salinity gradient energy; Reverse electrodialysis; Energy-exergy analysis; Cost analysis;

    机译:反渗透;膜蒸馏盐度梯度能量;反向电渗析;能量-能量分析;成本分析;

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