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Technical and Environmental Perspectives on Solar-Driven Seawater Desalination: A Case Study of Multi-Effect Distillation

机译:太阳能驱动海水淡化的技术和环境观点:多效蒸馏的案例研究

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There is growing interest in enhancing the energy sustainability of seawater desalination processes given the increasing reliance on this technology in water-stressed regions. In this paper, we present the design and modelling of an energy-efficient thermal desalination plant (using low-pressure multi-effect distillation) powered by a solar linear Fresnel collector. A steady-state computer model was developed in engineering equation solver (EES) using energy, mass, and salt balance equations. The EES model was used to evaluate the annual performance of the plant and to calculate its equivalent mechanical energy consumption. We also assessed environmental impacts using the life-cycle assessment (LCA) methodology. The equivalent mechanical energy of the optimized desalination plant was 8 kWh/m~3, which is 59% lower than that of conventional thermal desalination plants. This significant reduction in equivalent energy consumption reduces the required solar field size by 25%. The environmental assessment showed that the operation phase accounted for approximately 80% of the plant's climate change impact. Our integrated solar desalination plant can potentially reduce CO_2 emissions by 10 kg per 1 m~3 of freshwater produced, and can reduce human toxicity impacts three fold. Chemical usage in the desalination process has a significant impact on ozone depletion based on the consumption of antifoaming agents that contain many ozone-depleting substances.
机译:鉴于在缺水地区越来越依赖这种技术,人们越来越关注提高海水淡化过程的能源可持续性。在本文中,我们介绍了由太阳能线性菲涅尔集热​​器驱动的节能型热淡化厂(使用低压多效蒸馏)的设计和建模。使用能量,质量和盐平衡方程,在工程方程求解器(EES)中开发了稳态计算机模型。 EES模型用于评估工厂的年度绩效并计算其等效机械能耗。我们还使用生命周期评估(LCA)方法评估了环境影响。优化的海水淡化厂的当量机械能为8 kWh / m〜3,比常规的热海水淡化厂低59%。等效能耗的显着降低将所需的太阳能场面积减少了25%。环境评估表明,运营阶段约占工厂对气候变化影响的80%。我们的综合太阳能海水淡化厂每生产1 m〜3的淡水可潜在减少10 kg的CO_2排放,并可将人体毒性影响降低三倍。脱盐过程中的化学药品使用会消耗大量含有消耗臭氧层物质的消泡剂,因此会对臭氧层消耗产生重大影响。

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