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2篇 您的检索式:作者名="PALACIOS Anabel"
    题名 作者 年代 出处 被引量
1陶瓷-熔融盐复合相变储能材料(英文)显示文摘研究了石墨材料包括纳米石墨对基于硝酸盐陶瓷复合相变储热材料性能的影响。其目的在于制备一种可用于集中式太阳能热发电(CSP)和工业废热回收(IWH)等应用的新型高温复合相变材料,并且使用导热增强物质(TCE)提升相变材料的导热性能。复合相变储热材料主要由硝酸钠(NaNO_3)相变材料,氧化镁(MgO)陶瓷基体,以及不同种类、不同比例的石墨导热增强剂组成。通过对复合材料的形态及热物理性质测定表明:不同种类的石墨导热增强剂对复合材料的导热性能影响不同,复合材料的储热密度随复合材料中相变材料比例的增加而增加。所得基于硝酸盐的陶瓷复合材料均可在500℃保持良好的热稳定性,因此其潜在应用包括工业废热回收及集中式太阳能热发电系统(CSP)等。NAVARRO Maria Elena PALACIOS Anabel HUGHES Tomos CONNOLLY Chloe UPPAL Harkiran CONG Lin LEI Xianzhang QIAO Geng LENG Guanghui DING Yulong 2017储能科学与技术2017,6,4:1
2Research progress on protective coatings against molten nitrate salts for thermal energy storage in concentrating solar power plants显示文摘Concentrating solar power(CSP) has garnered considerable global attention as a reliable means of generating bulk electricity, effectively addressing the intermittent nature of solar resources.The integration of molten salt technology for thermal energy storage(TES) has further contributed to the growth of CSP plants;however, the corrosive nature of molten salts poses challenges to the durability of container materials, necessitating innovative corrosion mitigation strategies.This review summarizes scientific advancements in high-temperature anticorrosion coatings for molten nitrate salts, highlighting the key challenges and future trends.It also explores various coating types, including metallic, ceramic, and carbon-based coatings, and compares different coating deposition methods.This review emphasizes the need for durable coatings that meet long-term performance requirements and regulatory limitations, with an emphasis on carbon-based coatings and emerging nanomaterials.A combination of multiple coatings is required to achieve desirable anticorrosion properties while addressing material compatibility and cost considerations.The overall goal is to advance the manufacturing, assembly, and performance of CSP systems for increased efficiency, reliability, and durability in various applications.HOU Wenjie Maria Elena Navarro Rivero PAN Jin ZOU Boyang Benjamin Grégoire Anabel Palacios DING Yulong 2023Baosteel Technical Research2023,17,4:0
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