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光伏发电技术
★ 5.0
一种具有光热、储热和电化学性能的新型集成碳化木电极用于太阳能驱动的热化学电池
A novel integrated carbon-wood electrode with photothermal, heat storage, and electrochemical properties for solar-driven thermochemical cells
| 作者 | Jun Zhang · Xiaotian Li · Jili Zheng · Yanan Zou · Xuanshi Ji · Zhiwei Hu · Wei Yang · Shiwei Zhang |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 326 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Eco-friendly integrated carbon-wood electrode was used in thermochemical cell. |
语言:
中文摘要
摘要 热化学电池为太阳能利用提供了一种可持续且环保的解决方案,但其性能常受到太阳辐射波动的限制。传统方法是将储热系统整合到热化学电池中,然而这些方法受限于较低的传热速率以及传统电极较小的电化学活性表面积。本研究创新性地提出一种碳化木电极设计,集成了增强的光热转换、储热和电化学性能,可实现太阳能驱动热化学电池中的连续发电。与传统的石墨电极相比,碳化木结构使光热转换效率提高了67%,电化学活性表面积增加了28%,单位体积(每立方厘米)的放热时间延长至16.67分钟。采用此类电极的热化学电池在太阳辐射波动条件下仍能实现稳定的功率输出,最大电流密度提升达250%,达到0.9 A/m²。这些结果表明,碳化木电极在稳定并提高热化学电池效率方面具有巨大潜力,尤其适用于光照间歇的环境条件。此外,这种一体化电极设计具备低成本、易于制造的优点,为发展经济高效、可持续的太阳能热化学电池技术提供了新途径。
English Abstract
Abstract Thermochemical cells present a sustainable and eco-friendly solution for solar energy utilization, but their performance is often limited by fluctuations in solar radiation. Traditional methods involve incorporating thermal storage systems into thermochemical cells, though these are limited by low heat transfer rates and the small electrochemically active surface area of conventional electrodes. This study introduces, innovatively, a carbon-wood electrode design that integrates enhanced photothermal, heat storage, and electrochemical properties for continuous electricity generation in solar-powered thermochemical cells. The carbon-wood structure increases photothermal conversion efficiency by 67 %, electrochemically active surface area by 28 %, and heat release time up to 16.67 min/cm 3 compared to traditional graphite electrodes. Thermochemical cells with these electrodes achieve stable power output under fluctuating solar conditions, boosting maximum current density by 250 % to 0.9 A/m 2 . These findings highlight the great potential of carbon-wood electrodes to stabilize and improve the efficiency of thermochemical cells, especially under intermittent lighting conditions. In addition, the integrated electrode design provides a low-cost, easy-to-manufacture solution, offering a novel approach for the sustainable development of affordable and efficient solar thermochemical cells technology.
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SunView 深度解读
该碳木一体化电极的光热-储热-电化学集成技术为阳光电源储能系统提供创新思路。其光热转换效率提升67%、电化学活性面积增加28%的设计理念,可应用于ST系列PCS的热管理优化和PowerTitan储能系统的温控策略改进。特别是其应对间歇性光照的稳定输出能力,与SG系列光伏逆变器的MPPT优化技术形成协同,有助于开发低成本、易制造的光储热一体化解决方案,提升iSolarCloud平台对波动性可再生能源的智能调控能力。