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创新太阳能热利用系统在工业领域应用的环境性能评估:案例研究
Evaluation of the environmental performance of an innovative solar thermal system applied to the industrial sector: a case study
| 作者 | Lisa Baindu Gobio-Thomas · Mohamed Darwish · Antonio Rovir · Ruben Abbas · Juan Pedro Solano · Jose Munoz Camara · Peter Kewf · Krzysztof Naplocha · Valentina Stojceskaa |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 299 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Environmental performance of ASTEP system was performed. |
语言:
中文摘要
摘要 对一种名为ASTEP的创新太阳能热利用技术进行了环境评估。ASTEP系统由三个主要部分组成:一种新型旋转菲涅尔日晷集热器、储热系统(TES)以及控制系统,可为最高温度达400°C的工业过程提供太阳能热能。该系统已在纬度较低和较高的两个地区分别应用于两家终端用户——Mandrekas公司和Arcelor Mittal公司。研究结果表明,在整个生命周期中,ASTEP系统的制造阶段产生的环境影响最为显著,其次依次为运行阶段、运输阶段以及废弃物处置阶段。在制造阶段中,储热系统(TES)组件的环境影响最大,这主要是由于与其它组件相比,TES制造所需材料和能源的数量更多。当应用于终端用户时,ASTEP系统使Mandrekas公司(MAND)和安赛乐米塔尔公司(AMTP)的二氧化碳排放量分别减少了9.7吨和8.3吨。此外,若将系统的年供热量提升至分别为950 MWh和609 MWh,则两家企业可实现更高的温室气体减排量,分别达到332吨和182吨。本研究表明,将ASTEP系统整合到工业生产过程中,能够显著降低其对环境的影响。
English Abstract
Abstract An environmental assessment of an innovative solar thermal technology called ASTEP has been performed. ASTEP consists of three main elements: a novel rotary Fresnel Sundial, thermal energy storage (TES) and the controls. It supplies solar thermal energy to industrial processes of maximum 400 °C. This energy source has been implemented to two end-users, Mandrekas and Arcelor Mittal, located in the regions with low and high latitudes. The results revealed that manufacturing of the ASTEP system had the most significant environmental impact, followed by the operation, transportation and waste disposal. Within the manufacturing phase, TES components had the highest environmental impact. This was primarily due to the greater quantity of materials and energy required for TES manufacturing compared to the other components. When applied to the end-users, ASTEP system demonstrated notable reduction of CO 2 emissions by 9.7 tonnes for MAND and 8.3 tonnes for AMTP. Furthermore, higher GHG emissions savings of 332 tonnes for MAND and 182 tonnes for AMTP could be achieved when the system’s capacity is increased to 950 MWh/year and 609 MWh/year, respectively. The research demonstrated that the incorporation of the ASTEP system into industrial processes would result in a significant reduction of their environmental impact.
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SunView 深度解读
该ASTEP太阳能热储能系统对阳光电源工商业储能方案具有重要参考价值。研究显示储能系统(TES)在制造阶段环境影响最大,这为ST系列PCS及PowerTitan储能系统的全生命周期优化指明方向。系统在工业场景实现年减排9.7-332吨CO2,验证了光储一体化在工业领域的减碳潜力。可结合SG系列工商业逆变器与储能系统,通过iSolarCloud平台优化热电协同控制策略,提升工业用户能效管理水平,拓展400°C以下工业热能替代场景的光储融合解决方案。