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管道与移动式热能储存用于液体除湿剂输送的技术经济可行性
Techno-economic feasibility of pipeline and mobile thermal energy storage for liquid desiccant transport
| 作者 | Alessandro Giampier · Taylor Ittn · Janie Ling-Chi · A. P. Roskilly |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 392 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 户用光伏 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A techno-economic comparison of liquid desiccant transport was conducted. |
语言:
中文摘要
摘要 利用除湿溶液进行热量回收、输送与利用,为传统的区域供热与供冷网络提供了一种替代方案,能够在单一的多功能系统中同时实现供热、供冷、湿度控制和干燥功能。除湿溶液适用于多种工业、住宅和商业应用场景,并可有效利用来自工业过程的低温余热以及低温可再生能源。本文对通过管道和移动式热能储存(M-TES)应用于区域能源网络的液体除湿系统进行了技术经济评估。研究采用氯化钙(CaCl₂)、氯化锂(LiCl)和甲酸钾(HCO₂K)的水溶液,评估了这些溶液在高效连接热源与需要湿度控制、除湿或干燥的终端用户方面的潜力。通过对三个应用案例(洁净室、室内游泳池和工业干燥过程)的分析,并与传统运行方式对比,结果表明液体除湿技术在回收低温热量以及降低温湿度控制能耗方面具有可行性。尽管除湿剂的管道输送(特别是CaCl₂水溶液)适用于短距离和大规模应用,但M-TES在无需大规模基础设施的前提下,为远距离输送提供了更高的灵活性。在有利条件下,例如缩短运输周期、延长运行时间以及高电价环境,M-TES可在超过10公里的距离上具备竞争力。本研究为优化液体除湿系统在可持续能源网络中的应用提供了关键见解,突出了该技术在固定式与移动式应用中的可扩展性、适应性及经济可行性。
English Abstract
Abstract The use of desiccant solutions for heat recovery, transport and use offers an alternative to conventional district heating and cooling networks, providing heating, cooling, moisture control and drying in one multi-service system. Desiccant solutions are appealing to various industrial, residential and commercial applications and allow the utilisation of low-grade heat from industrial processes and low-temperature renewable energy. This manuscript presents a techno-economic assessment of liquid desiccant systems applied to district networks via pipelines and mobile thermal energy storage (M-TES). By using aqueous solutions of calcium chloride (CaCl 2 ), lithium chloride (LiCl) and potassium formate (HCO 2 K), this study evaluates their potential to efficiently connect heat sources with end users requiring humidity control, removal, or drying. Evaluations of three use cases (a cleanroom, an indoor swimming pool and an industrial drying process) and comparisons to conventional operation demonstrated the feasibility of liquid desiccant technology for recovering low-temperature heat and reducing energy consumption for temperature and humidity control. While pipeline transport of desiccants, particularly aqueous CaCl 2 , is suitable for shorter distances and large-scale applications, M-TES offers flexibility for long-distance transport without extensive infrastructure. Favourable conditions, such as reduced transportation schedule, extended operating hours and high electricity prices, could enable M-TES over distances exceeding 10 km. This study offers critical insights into optimising liquid desiccant systems for sustainable energy networks, highlighting their scalability, adaptability and economic viability in stationary and mobile applications.
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SunView 深度解读
该液态干燥剂储热技术为阳光电源储能系统拓展了新应用场景。ST系列PCS可与干燥剂热泵系统耦合,实现工业余热回收与电化学储能的协同优化。特别适用于需要温湿度控制的数据中心、泳池等场景,PowerTitan储能系统可通过智能调度算法,结合移动式热储能(M-TES)实现长距离能量传输。该技术与iSolarCloud平台集成后,可优化光伏-储能-热能多能互补系统的经济性,为工商业光储一体化解决方案提供差异化竞争优势,尤其在高电价地区具有显著投资回报潜力。