← 返回
储能系统技术 储能系统 ★ 5.0

共生成与协同式海水淡化及制冷系统在可持续发展应用中的研究综述

A review of co-generative and synergistic desalination & refrigeration systems for sustainable development applications

作者 Gayatri Sundar Rajan · Seda Zeynep Keleş · Christian D.Peters · Binjian Ni · Hiba Bensalah · Nicholas Peter Hankins
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 332 卷
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 First key synergy is simultaneous low-temp evaporation and chilling.
语言:

中文摘要

摘要 在水-能源-食物关联体系中,海水淡化与制冷的 cogeneration(共生成)系统能够应对紧迫的可持续发展目标。此类系统利用两个过程之间的协同效应,实现相互增益。本综述评估了现有的共生成研究,旨在为可持续发展应用(如同时生产淡水和实现冷藏储存)推荐有前景的研究方向。与近期关于海水淡化与制冷结合系统的综述相比,本文的创新之处在于聚焦适用于新鲜食品储存的制冷温度范围(0–15 °C),将混合系统区分为集成式(Integrated)或耦合式(Coupled),并突出制冷与海水淡化系统在可持续发展应用中的潜在技术与经济协同效应。所考察的关键方面包括:(1)海水淡化与制冷的产能;(2)水源及其潜在污染物;(3)系统设计与协同机制;(4)能量与物料资源的利用效率;以及(5)与可再生能源的集成。在集成式系统中,主要的协同效应表现为水的低温蒸发与冷却介质同时制冷的过程;而在耦合式系统中,协同性则来源于利用制冷系统产生的余热来驱动热法海水淡化过程。在性能方面,具有最高产水回收率和热法淡化效率的系统是混合式多效蒸馏系统。未来研究的有前景方向包括:通过实验验证数值模拟得出的结论、实现更深层次的热集成以提升系统效率,以及开发被动式措施(如间接蒸发冷却)以实现除湿、降温与产水的同时进行。

English Abstract

Abstract Within the water-energy-food nexus, desalination and refrigeration cogeneration systems are able to address pressing sustainable development goals. Such systems exploit the synergy between the two processes to yield mutual benefits. This review evaluates existing cogeneration studies to recommend promising research directions for sustainable development applications such as simultaneous freshwater production and cold storage refrigeration. Compared to recent reviews of combined desalination and cooling systems, the novelty of this review is in its focus on refrigeration temperatures suitable for fresh food storage (between 0–15 °C), differentiating hybrid systems as Integrated or Coupled, and highlighting the potential technical and economic synergies between refrigeration and desalination systems for sustainable development applications. The key aspects examined included (1) capacity of desalination and refrigeration, (2) source of water and potential contaminants, (3) system design and synergies, (4) efficiency of energy and material resources, and (5) integration with renewable energy sources. The primary synergy in integrated systems was the simultaneous low-temperature evaporation of water and chilling of a cooling fluid. In coupled systems, the synergy comes from the usage of waste heat from refrigeration systems to drive thermal desalination processes. Regarding performance, the systems with the highest water recovery rates and thermal desalination efficiencies are hybrid multiple effect distillation systems. Promising directions for future research include experimentally validating numerically derived inferences, achieving deeper heat integration to improve system efficiency, and developing passive measures such as indirect evaporative cooling for simultaneous dehumidification, cooling, and water production.
S

SunView 深度解读

该海水淡化-制冷联产技术对阳光电源储能系统具有重要启示。ST系列PCS可通过能量管理优化,将光伏发电与热驱动淡化系统耦合,实现电-热-冷多能互补。PowerTitan储能系统可集成废热回收模块,提升综合能效比。特别适用于海岛微网场景,结合iSolarCloud平台实现淡水-制冷-储能的智能协同调度,为沙漠光伏电站、海上风电等可再生能源项目提供水-能-冷一体化解决方案,拓展储能系统在可持续发展领域的应用边界。