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Pulsed electrolysis of carbon dioxide by large-scale solid oxide electrolytic cells for intermittent renewable energy storage 被引量:2
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作者 Anqi Wu Chaolei Li +5 位作者 Beibei Han Wu Liu Yang Zhang Svenja Hanson Wanbing Guan Subhash C.Singhal 《Carbon Energy》 SCIE CSCD 2023年第4期2-12,共11页
CO_(2) electrolysis with solid oxide electrolytic cells(SOECs)using intermittently available renewable energy has potential applications for carbon neutrality and energy storage.In this study,a pulsed current strategy... CO_(2) electrolysis with solid oxide electrolytic cells(SOECs)using intermittently available renewable energy has potential applications for carbon neutrality and energy storage.In this study,a pulsed current strategy is used to replicate intermittent energy availability,and the stability and conversion rate of the cyclic operation by a large-scale flat-tube SOEC are studied.One hundred cycles under pulsed current ranging from -100 to -300 mA/cm^(2) with a total operating time of about 800 h were carried out.The results show that after 100 cycles,the cell voltage attenuates by 0.041%/cycle in the high current stage of−300 mA/cm^(2),indicating that the lifetime of the cell can reach up to about 500 cycles.The total CO_(2) conversion rate reached 52%,which is close to the theoretical value of 54.3% at -300 mA/cm^(2),and the calculated efficiency approached 98.2%,assuming heat recycling.This study illustrates the significant advantages of SOEC in efficient electrochemical energy conversion,carbon emission mitigation,and seasonal energy storage. 展开更多
关键词 carbon dioxide cyclic electrolysis pulse current solid oxide electrolytic cells
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High-temperature electrocatalysis and key materials in solid oxide electrolysis cells 被引量:11
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作者 Lingting Ye Kui Xie 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第3期736-745,共10页
Solid oxide electrolysis cells(SOECs)can convert electricity to chemicals with high efficiency at ~600-900℃,and have attracted widespread attention in renewable energy conversion and storage.SOECs operate in the inve... Solid oxide electrolysis cells(SOECs)can convert electricity to chemicals with high efficiency at ~600-900℃,and have attracted widespread attention in renewable energy conversion and storage.SOECs operate in the inverse mode of solid oxide fuel cells(SOFCs)and therefore inherit most of the advantages of SOFC materials and energy conversion processes.However,the external bias that drives the electrochemical process will strongly change the chemical environments in both in the cathode and anode,therefore necessitating careful reconsideration of key materials and electrocatalysis processes.More importantly,SOECs provide a unique advantage of electrothermal catalysis,especially in converting stable low-carbon alkanes such as methane to ethylene with high selectivity.Here,we review the state-of-the-art of SOEC research progress in electrothermal catalysis and key materials and provide a future perspective. 展开更多
关键词 ELECTROCATALYSIS solid oxide electrolysis cell CATHODE ANODE ELECTROLYTE
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Low Temperature Preparation of Ceria Solid Solutions Doubly Doped with Rare-Earth and Alkali-Earth and Their Properties as Solid Oxide Fuel Cells 被引量:1
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作者 任引哲 蒋凯 +2 位作者 王海霞 孟健 苏锵 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第4期461-465,共5页
A series of solid electrolytes, (Ce 0.8 Ln 0.2 ) 1- x M x O 2-δ (Ln= La, Nd, Sm, Gd, M:Alkali earth), were prepared by amorphous citrate gel method. XRD patterns indicate that a pure fluorite... A series of solid electrolytes, (Ce 0.8 Ln 0.2 ) 1- x M x O 2-δ (Ln= La, Nd, Sm, Gd, M:Alkali earth), were prepared by amorphous citrate gel method. XRD patterns indicate that a pure fluorite phase is formed at 800 ℃. The electrical conductivity and the AC impedance spectra were measured. XPS spectra show that the oxygen vacancies increase owing to the MO doping, which results in the increase of the oxygen ionic transport number and conductivity. The performance of ceria based solid electrolyte is improved. The effects of rare earth and alkali earth ions on the electricity were discussed. The open circuit voltages and maximum power density of planar solid oxide fuel cell using (Ce 0.8 Sm 0.2 ) 1-0.05 Ca 0.05 O 2- δ as electrolyte are 0.86 V and 33 mW·cm -2 , respectively. 展开更多
关键词 CERIA solid electrolyte amorphous citrate gel method impedance spectra solid oxide fuel cell rare earths
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Progress on direct assembly approach for in situ fabrication of electrodes of reversible solid oxide cells 被引量:1
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作者 Na Ai Yuanfeng Zou +2 位作者 Zhiyi Chen Kongfa Chen San Ping Jiang 《Materials Reports(Energy)》 2021年第2期61-69,共9页
Reversible solid oxide cells(SOCs)are very efficient and clean for storage and regeneration of renewable electrical energy by switching between electrolysis and fuel cell modes.One of the most critical factors governi... Reversible solid oxide cells(SOCs)are very efficient and clean for storage and regeneration of renewable electrical energy by switching between electrolysis and fuel cell modes.One of the most critical factors governing the efficiency and durability of SOCs technology is the stability of the interface between oxygen electrode and electrolyte,which is conventionally formed by sintering at a high temperature of~1000–1250℃,and which suffers from delamination problem,particularly for reversibly operated SOCs.On the other hand,our recent studies have shown that the electrode/electrolyte interface can be in situ formed by a direct assembly approach under the electrochemical polarization conditions at 800℃and lower.The direct assembly approach provides opportunities for significantly simplifying the cell fabrication procedures without the doped ceria barrier layer,enabling the utilization of a variety of high-performance oxygen electrode materials on barrier layer–free yttria-stabilized zirconia(YSZ)electrolyte.Most importantly,the in situ polarization induced interface shows a promising potential as highly active and durable interface for reversible SOCs.The objective of this progress report is to take an overview of the origin and research progress of in situ fabrication of oxygen electrodes based on the direct assembly approach.The prospect of direct assembly approach in the development of effective SOCs and in the fundamental studies of electrode/electrolyte interface reactions is discussed. 展开更多
关键词 Reversible solid oxide cell Direct assembly Oxygen electrode Hydrogen electrode Polarization induced interface Electrode/electrolyte interface stability
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用于风功率平抑的SOEC系统功率控制策略
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作者 武鑫 冯歌 熊星宇 《动力工程学报》 CAS CSCD 北大核心 2023年第12期1626-1633,1674,共9页
为了平抑风电场输出功率波动,考虑到固体氧化物电解池(SOEC)电解水制氢的高效率特性,基于实际数据构建千瓦级SOEC电堆模型并验证了模型精度。针对SOEC系统的非线性和时滞特性,提出一种基于模型预测的功率控制策略,用于平抑风电场输出功... 为了平抑风电场输出功率波动,考虑到固体氧化物电解池(SOEC)电解水制氢的高效率特性,基于实际数据构建千瓦级SOEC电堆模型并验证了模型精度。针对SOEC系统的非线性和时滞特性,提出一种基于模型预测的功率控制策略,用于平抑风电场输出功率波动。根据某15 MW风电场运行数据,采用集合经验模态分解方法,提出一种风电场输出功率分解方法,获得SOEC系统的充电功率指令并进行仿真验证。结果表明:基于模型预测的SOEC系统功率控制效果很好,可以实现充电功率指令的跟随变化,且平均绝对百分比误差为1.674%,平抑风功率波动效果的准确性较高。 展开更多
关键词 风力发电 固体氧化物电解池 模型预测控制策略 风电场输出功率
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Characteristic Analysis of the Solid Oxide Fuel Cell with Proton Conducting Ceramic Electrolyte 被引量:2
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作者 谭小耀 孟波 +1 位作者 杨乃涛 K.Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第1期107-117,共11页
An electrolyte model for the solid oxide fuel cell (SOFC) with proton conducting perovskite electrolyte is developed in this study, in which four types of charge carriers including proton, oxygen vacancy (oxide ion), ... An electrolyte model for the solid oxide fuel cell (SOFC) with proton conducting perovskite electrolyte is developed in this study, in which four types of charge carriers including proton, oxygen vacancy (oxide ion), free electron and electron hole are taken into consideration. The electrochemical process within the SOFC with hydrogen as the fuel is theoretically analyzed. With the present model, the effects of some parameters, such as the thickness of electrolyte, operating temperature and gas composition, on the ionic transport (or gas permeation) through the electrolyte and the electrical performance, i.e., the electromotive force (EMF) and internal resistance of the cell, are investigated in detail. The theoretical results are tested partly by comparing with the experimental data obtained from SrCe0.05M0.05O3-α(M=Yb, Y) cells. 展开更多
关键词 固体氧化物燃料电池 质子传导性能 钙钛矿 电解液
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固体氧化物电解槽辅助煤电机组深度调峰技术可行性研究
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作者 王林 刘晓莎 +3 位作者 胡平 李治宽 李昭 张鹏 《热力发电》 CAS CSCD 北大核心 2024年第2期133-141,共9页
常规的煤电机组灵活性改造方案,难以消除频繁快速变负荷对热力系统造成的潜在寿命折损与设备安全风险。为提高煤电机组参与深度调峰的长期安全性与经济性,以某国产超超临界二次再热1000 MW燃煤机组为应用对象,提出了基于氢储能系统的煤... 常规的煤电机组灵活性改造方案,难以消除频繁快速变负荷对热力系统造成的潜在寿命折损与设备安全风险。为提高煤电机组参与深度调峰的长期安全性与经济性,以某国产超超临界二次再热1000 MW燃煤机组为应用对象,提出了基于氢储能系统的煤电机组“健康调峰”技术路线,并论证了调峰煤电制氢的间接碳减排意义。在此基础上,分析比较了不同制氢工艺与煤电厂生产条件的匹配程度,认为固体氧化物电解槽(SOEC)制氢为综合最优方案,据此给出了SOEC耦合煤电调峰的原理性设计方案,最后以年度负荷曲线对新方案进行了财务分析。计算结果表明,示例机组自第6年起每年可获得1.07亿元/年的净利润,每年减少碳排放281.92 t,同时获得设备延寿、降耗减碳等其他收益。相关结论对于指导调峰煤电机组的健康安全运行具有参考意义。 展开更多
关键词 电解制氢 固体氧化物电解槽 煤电机组 可行性 财务分析
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基于氢储能的煤电机组灵活性改造方案研究
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作者 王林 刘晓莎 +2 位作者 胡平 李昭 张鹏 《工业加热》 CAS 2024年第4期63-67,共5页
现有的煤电机组灵活性改造方案,聚焦局部与短期,难以消除频繁快速变负荷对热力系统造成的长期寿命折损与安全风险。为提高煤电机组参与电力市场辅助服务的安全性与经济性,提出建立基于氢储能系统的煤电机组系统级灵活性改造方案。分析... 现有的煤电机组灵活性改造方案,聚焦局部与短期,难以消除频繁快速变负荷对热力系统造成的长期寿命折损与安全风险。为提高煤电机组参与电力市场辅助服务的安全性与经济性,提出建立基于氢储能系统的煤电机组系统级灵活性改造方案。分析了现有制氢路线,认为固体氧化物电解槽路线与煤电机组结合度高,且具有辅助煤电机组削减碳排放、提升经营收益的综合优点。以某国产1000 MW超超临界二次再热燃煤机组为应用对象,提出了氢储能系统与煤电机组的可行性结合方案。相关研究成果对于开发新型系统级的安全、健康经济的煤电灵活性提升改造方案具有参考意义。 展开更多
关键词 氢储能 固体氧化物电解槽 煤电机组 灵活性 安全健康
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基于CuO-ZnO的低温固体氧化物燃料电池性能
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作者 田宁 谭雯竹 +5 位作者 于吉 罗寅先 黄永涛 王诚源 郑若宁 屈艳梅 《沈阳师范大学学报(自然科学版)》 CAS 2024年第1期88-92,共5页
制备具有优异离子导电性和低温高化学性能的电解质是固体氧化物燃料电池实际应用的重要发展方向.基于p型CuO和n型ZnO构建p-n半导体异质结材料,并将其作为电解质应用于低温固体氧化物燃料电池.制备了不同质量比例CuO-ZnO的电解质材料,并... 制备具有优异离子导电性和低温高化学性能的电解质是固体氧化物燃料电池实际应用的重要发展方向.基于p型CuO和n型ZnO构建p-n半导体异质结材料,并将其作为电解质应用于低温固体氧化物燃料电池.制备了不同质量比例CuO-ZnO的电解质材料,并组装Ni_(0.8) Co_(0.15)Al_(0.05)LiO_(2-δ)/CuO-ZnO/Ni_(0.8)Co_(0.15)Al_(0.05)LiO_(2-δ)单电池进行性能测试.结果表明,基于纯ZnO电解质材料的燃料电池性能最低(在550℃开路电压为为0.8 V,最大功率密度为187.5mW/cm^(2)),复合质量比例为1∶9的燃料电池性能最为优异(在550℃开路电压为1.065V,瞬时最大功率密度为555mW/cm^(2)).通过对CuO-ZnO异质结复合材料的电化学阻抗分析,发现构建的p-n半导体异质结为离子传输提供了通道,提高了离子电导率.研究表明p-n型电解质复合材料在低温固体氧化物燃料电池的应用中具有很大潜力. 展开更多
关键词 低温固体氧化物燃料电池 电解质材料 半导体p-n型
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金属支撑型固体氧化物电解池的3D建模与性能分析
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作者 张梦茹 王恩华 +3 位作者 胡浩然 欧阳明高 王贺武 卢兰光 《北京理工大学学报》 EI CAS CSCD 北大核心 2024年第1期69-75,共7页
建立了一种铈基电解质的金属支撑型固体氧化物电解池的三维模型,通过多物理场耦合分析了其电化学工作性能.设计的3层电解质结构为10Sc1CeSZ|GDC|10Sc1CeSZ,以GDC为主电解质.针对连接体、流体域和多层单电池结构建立了三维模型,将质量、... 建立了一种铈基电解质的金属支撑型固体氧化物电解池的三维模型,通过多物理场耦合分析了其电化学工作性能.设计的3层电解质结构为10Sc1CeSZ|GDC|10Sc1CeSZ,以GDC为主电解质.针对连接体、流体域和多层单电池结构建立了三维模型,将质量、动量、能量控制方程与物质输运方程和电化学反应耦合建立多物理场分析模型.研究了设计的金属支撑型固体氧化物电解池的电化学工作性能,详细分析了电池内部的速度场、浓度场和温度场分布.结果表明,设计的金属支撑型固体氧化物电解池在650℃下,电流密度为2.4 A/cm^(2)时,电压损失为0.38 V,欧姆损失和极化损失分别占33.72%和66.28%.采用金属支撑对气体的输运仅有轻微的影响,但是整个电池内部的温度分布均匀性得到明显改善. 展开更多
关键词 固体氧化物电解池 金属支撑 铈基电解质 多物理场模型 极化曲线
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固体氧化物电解池的发展及研究现状
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作者 李晓艳 李星 +4 位作者 魏甲明 付云枫 陈宋璇 王玮玮 刘召波 《中国有色冶金》 CAS 北大核心 2024年第2期1-12,共12页
固体氧化物电解池(SOEC)可以高效、清洁地与可再生能源进行耦合并将其转化为化学能,是一种高效、环保的能量转化装置,但是存在长期运行性能衰减问题,这个问题也是固体氧化物电解水制氢实现大规模商业化的关键所在。本文简要介绍了SOEC... 固体氧化物电解池(SOEC)可以高效、清洁地与可再生能源进行耦合并将其转化为化学能,是一种高效、环保的能量转化装置,但是存在长期运行性能衰减问题,这个问题也是固体氧化物电解水制氢实现大规模商业化的关键所在。本文简要介绍了SOEC的发展历程、类别及其组成和运行原理;详细阐述了该项技术的优、缺点及运行成本;重点对SOEC性能衰减的因素进行了分析,SOEC的组成、运行模式、连接板材料及运行条件等是造成性能衰减的主要因素;最后通过论文和专利数量分析了固体氧化物电解池的研究现状和未来发展趋势,认为虽然固体氧化物燃料电池(SOFC)发展较为成熟,但迫于目前环境需求,为了充分利用清洁能源,降低碳排放,SOEC制氢技术的大规模商业化必然是未来行业的发展方向,目前SOEC性能的稳定及低成本制备是该技术发展面临的主要问题。 展开更多
关键词 固体氧化物电解池(soec) 制氢技术 电解池性能 制备成本 固体氧化物燃料电池(SOFC) 储能电池 清洁能源
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SDC/YSZ/GDC复合电解质膜燃料电池研究
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作者 王坤 李庆勋 +1 位作者 邵志刚 程谟杰 《电源技术》 CAS 北大核心 2024年第6期1011-1017,共7页
在钐掺杂的氧化铈(SDC)主电解质层上利用射频磁控溅射法沉积了氧化钇稳定的氧化锆(YSZ)电子阻隔层和钆掺杂的氧化铈(GDC)化学隔层,制备了SDC/YSZ/GDC多层复合电解质膜及电池。对复合电解质膜的固体氧化物燃料电池进行了物相分析、微观... 在钐掺杂的氧化铈(SDC)主电解质层上利用射频磁控溅射法沉积了氧化钇稳定的氧化锆(YSZ)电子阻隔层和钆掺杂的氧化铈(GDC)化学隔层,制备了SDC/YSZ/GDC多层复合电解质膜及电池。对复合电解质膜的固体氧化物燃料电池进行了物相分析、微观结构表征和电化学性能测试。结果表明,复合电解质膜有效提升了电池的开路电位(OCV)和最大输出功率密度,这是因为复合电解质膜具有较高的离子电导率和电子电阻。 展开更多
关键词 固体氧化物燃料电池 复合电解质膜 钐掺杂的氧化铈 电池性能
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K掺杂的SrSiO_(3-δ)基电解质材料的制备与性能研究
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作者 曹志坤 陈超 +2 位作者 朱民正 刘洋 田长安 《兵器材料科学与工程》 CAS CSCD 北大核心 2024年第2期89-93,共5页
采用固相法制备了固体氧化物燃料电池(SOFC)电解质材料Sr_(1-x)K_(x)SiO_(3-δ)(x=0.00、0.05、0.10、0.15、0.20、0.25、0.30、0.35)。通过红外光谱、X射线衍射、扫描电镜、交流阻抗等对试样进行表征分析。结果表明:用固相法经950℃煅... 采用固相法制备了固体氧化物燃料电池(SOFC)电解质材料Sr_(1-x)K_(x)SiO_(3-δ)(x=0.00、0.05、0.10、0.15、0.20、0.25、0.30、0.35)。通过红外光谱、X射线衍射、扫描电镜、交流阻抗等对试样进行表征分析。结果表明:用固相法经950℃煅烧所得粉体呈立方钙钛矿结构。Sr_(1-x)K_(x)SiO_(3-δ)的烧结活性较好,在1200℃烧结的电解质陶瓷相对密度均大于98%,平均晶粒尺寸为7~15μm;中温条件下该系列电解质材料的离子电导率较高、电导活化能较低。其中800℃时Sr_(0.90)K_(0.10)SiO_(2).95的离子电导率最高(8.66×10^(-2)S/cm),电导活化能最低(1.27 eV)。 展开更多
关键词 固体氧化物燃料电池 电解质 固相法 烧结活性 电导率 活化能
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氨燃料固体氧化物燃料电池性能研究进展
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作者 倪士栋 魏胜利 +2 位作者 杜振华 马万达 路品智 《精细化工》 EI CAS CSCD 北大核心 2024年第4期750-760,共11页
氨(NH_(3))是一种零碳燃料,也是富氢载体,具有较大储运优势。固体氧化物燃料电池(SOFC)是一种清洁高效发电装置,在分布式发电、热电联供、储能调峰等领域有广阔应用前景,NH_(3)可直接用作SOFC阳极燃料以实现高效、清洁、低成本发电。该... 氨(NH_(3))是一种零碳燃料,也是富氢载体,具有较大储运优势。固体氧化物燃料电池(SOFC)是一种清洁高效发电装置,在分布式发电、热电联供、储能调峰等领域有广阔应用前景,NH_(3)可直接用作SOFC阳极燃料以实现高效、清洁、低成本发电。该文简介了质子传导型和氧离子传导型氨SOFC的工作原理,电解质、电极材料的选择以及NH_(3)在阳极的分解过程,总结了氨SOFC的实验研究现状,以单电池最大功率密度为评价指标,综述了不同电解质/电极材料、电解质厚度、工作温度、电池结构类型等因素下2种传导类型的氨SOFC的性能表现,并分析了造成电池性能差异的原因,介绍了氨SOFC目前面临的挑战。最后,对氨SOFC未来研究方向、热电联供系统的应用进行了展望。 展开更多
关键词 氨燃料 固体氧化物燃料电池 工作原理 电解质 电极材料 电池性能
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氢电双联供的火电机组全容量深度调峰方案研究
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作者 刘道庆 杨涛 +1 位作者 黄凯 王林 《湖南邮电职业技术学院学报》 2024年第2期20-26,共7页
火电企业面临煤价高企带来的成本增加与新能源竞争带来的营收下降双重困境,开展技术改造提高深度调峰性能、丰富业务类型是火电厂未来生存与发展的关键。利用氢储能装置搭配调峰火电机组,构建低成本制氢与高效用氢产业链,在建立电化学... 火电企业面临煤价高企带来的成本增加与新能源竞争带来的营收下降双重困境,开展技术改造提高深度调峰性能、丰富业务类型是火电厂未来生存与发展的关键。利用氢储能装置搭配调峰火电机组,构建低成本制氢与高效用氢产业链,在建立电化学反应模型的基础上,利用Aspen模拟了工艺流程,计算得到氢火耦合系统能效达到50.15%,较常规电解水制氢调峰方案提高超过10%。研究结果表明,氢电双联供的火电机组能够为火电企业带来显著的经济效益。 展开更多
关键词 氢火耦合 soec 双联供
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Thermodynamic Analysis of Solid Oxide Fuel Cell Based Combined Cooling,Heating,and Power System Integrated with Solar-Assisted Electrolytic Cell 被引量:2
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作者 GAO Yuefen YAO Wenqi +1 位作者 WANG Jiangjiang CUI Zhiheng 《Journal of Thermal Science》 SCIE EI CAS CSCD 2023年第1期93-108,共16页
Syngas fuel such as hydrogen and carbon monoxide generated by solar energy is a promising method to use solar energy and overcome its fluctuation effectively.This study proposes a combined cooling,heating,and power sy... Syngas fuel such as hydrogen and carbon monoxide generated by solar energy is a promising method to use solar energy and overcome its fluctuation effectively.This study proposes a combined cooling,heating,and power system using the reversible solid oxide fuel cell assisted by solar energy to produce solar fuel and then supply energy products for users during the period without solar radiation.The system runs a solar-assisted solid oxide electrolysis cell mode and a solid oxide fuel cell mode.The thermodynamic models are constructed,and the energetic and exergetic performances are analyzed.Under the design work conditions,the SOEC mode’s overall system energy and exergy efficiencies are 19.0%and 20.5%,respectively.The electrical,energy and exergy efficiencies in the SOFC mode are 51.4%,71.3%,and 45.2%,respectively.The solid oxide fuel cell accounts for 60.0%of total exergy destruction,caused by the electrochemical reactions’thermodynamic irreversibilities.The increase of operating temperature of solid oxide fuel cell from 800℃to 1050℃rises the exergy and energy efficiencies by 11.3%and 12.3%,respectively.Its pressure from 0.2 to 0.7 MPa improves electrical efficiency by 13.8%while decreasing energy and exergy efficiencies by 5.2%and 6.0%,respectively. 展开更多
关键词 solid oxide electrolysis cell(soec) solid oxide fuel cell(SOFC) solar energy combined cooling HEATING and power(CCHP) exergy analysis
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A real proton-conductive,robust,and cobalt-free cathode for proton-conducting solid oxide fuel cells with exceptional performance 被引量:1
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作者 Yanru Yin Dongdong Xiao +3 位作者 Shuai Wu Eman Husni Da’as Yueyuan Gu Lei Bi 《SusMat》 SCIE EI 2023年第5期697-708,共12页
The development of proton,oxygen-ion,and electron mixed conducting materials,known as triple-conduction materials,as cathodes for proton-conducting solid oxide fuel cells(H-SOFCs)is highly desired because they can inc... The development of proton,oxygen-ion,and electron mixed conducting materials,known as triple-conduction materials,as cathodes for proton-conducting solid oxide fuel cells(H-SOFCs)is highly desired because they can increase fuel cell performance by extending the reaction active area.Although oxygen-ion and electron conductions can be measured directly,proton conduction in these oxides is usually estimated indirectly.Because of the instability of cathode materials in a reducing environment,direct measurement of proton conduction in cathode oxide is difficult.The La0.8Sr0.2Sc0.5Fe0.5O3–δ(LSSF)cathode material is proposed for H-SOFCs in this study,which can survive in an H_(2)-containing atmosphere,allowing measurement of proton conduction in LSSF by hydrogen permeation technology.Furthermore,LSSF is discovered to be a unique proton and electron mixed-conductive material with limited oxygen diffusion capability that is specifically designed for H-SOFCs.The LSSF is an appealing cathode choice for H-SOFCs due to its outstanding CO_(2)tolerance and matched thermal expansion coefficient,producing a record-high performance of 2032 mW cm^(−2)at 700℃and good long-term stability under operational conditions.The current study reveals that a new type of proton–electron mixed conducting cathode can provide promising performance for H-SOFCs,opening the way for developing high-performance cathodes. 展开更多
关键词 CATHODE high performance proton-conducting electrolyte proton-electron conductor protonic ceramic fuel cell solid oxide fuel cell
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基于DLP技术制备SOFC电解质及性能研究
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作者 王戌 樊贝贝 +2 位作者 徐晓倩 董昕虹 郭学 《中国陶瓷》 CAS CSCD 北大核心 2024年第5期35-40,47,共7页
固体氧化物燃料电池(SOFC)作为一种清洁、高效的新型燃料电池,其电解质是决定电池整体性能的关键因素。以改性后的氧化钇稳定氧化锆(YSZ)为原料,光敏树脂作为固化剂,利用数字光处理技术(DLP)将固含量为20%YSZ进行逐层打印,通过控制变量... 固体氧化物燃料电池(SOFC)作为一种清洁、高效的新型燃料电池,其电解质是决定电池整体性能的关键因素。以改性后的氧化钇稳定氧化锆(YSZ)为原料,光敏树脂作为固化剂,利用数字光处理技术(DLP)将固含量为20%YSZ进行逐层打印,通过控制变量的方法进行探究不同分散剂YSZ悬浮液稳定性影响,以及不同烧结温度下,YSZ电解质片致密度的影响。研究结果表明:以吐温-80和聚乙二醇400(PEG-400)作为分散剂的YSZ悬浮液稳定性较好,其中以吐温-80为分散剂的YSZ悬浮液最为稳定。将打印后的固含量为20%的YSZ电解质前驱体分别在1400℃、1450℃和1500℃进行烧结后,其收缩率分别为41.01%、48.81%和49.36%。在1500℃的烧结温度下,YSZ电解质在800℃的总电导率为3.19×10^(-2)S/cm。 展开更多
关键词 固体氧化物燃料电池 3D打印 YSZ 电解质 电导率
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开路状态下固体氧化物电解槽制备合成气的模型设计与验证
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作者 高颖 张涛 +5 位作者 李青山 孙元娜 李植 王涛 王俊勃 刘江南 《低碳化学与化工》 CAS 北大核心 2024年第6期95-104,共10页
固体氧化物电解槽(SOEC)可将H_(2)O和CO_(2)通过共电解转化为合成气(H_(2)和CO),从而实现CO_(2)的捕集与利用。然而,除了电化学反应,反应气体在高温下的逆水汽反应(RWGS反应)对该过程也存在一定影响。为了探究RWGS反应在合成气制备中的... 固体氧化物电解槽(SOEC)可将H_(2)O和CO_(2)通过共电解转化为合成气(H_(2)和CO),从而实现CO_(2)的捕集与利用。然而,除了电化学反应,反应气体在高温下的逆水汽反应(RWGS反应)对该过程也存在一定影响。为了探究RWGS反应在合成气制备中的作用,建立了一种纽扣型SOEC在开路状态下制备合成气的二维模型,研究了开路状态下进气组分和操作温度对SOEC支撑层中RWGS反应的影响。将模型仿真结果与实验数据进行对比验证,确保了模型的可靠性。结果表明,入口气体中还原性气体H_(2)含量(物质的量分数,下同)是影响RWGS反应速率的首要因素,H_(2)含量越高,RWGS反应速率越快。当H_(2)含量为30%时,CO_(2)转化率在29%以上;当H_(2)含量为10%时,CO_(2)转化率仅为9%~10%。此外,在H_(2)含量一定的情况下,RWGS反应速率主要与CO_(2)含量呈正相关,在入口气体中提高CO_(2)或者H_(2)含量,可不同程度提高开路状态下的CO_(2)转化率。更高的操作温度有利于RWGS反应更快进行,且在H_(2)含量一定的情况下,进气组分中CO_(2)含量越高,RWGS反应速率的变化率也越大。 展开更多
关键词 固体氧化物电解槽 共电解模型 逆水汽反应 合成气
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Materials of solid oxide electrolysis cells for H_(2)O and CO_(2) electrolysis:A review
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作者 Peng Qiu Cheng Li +3 位作者 Bo Liu Dong Yan Jian Li Lichao Jia 《Journal of Advanced Ceramics》 SCIE EI CAS CSCD 2023年第8期1463-1510,共48页
Reliable and economical energy storage technologies are urgently required to ensure sustainable energy supply.Hydrogen(H_(2))is an energy carrier that can be produced environmentfriendly by renewable power to split wa... Reliable and economical energy storage technologies are urgently required to ensure sustainable energy supply.Hydrogen(H_(2))is an energy carrier that can be produced environmentfriendly by renewable power to split water(H_(2)O)via electrochemical cells.By this way,electric energy is stored as chemical energy of H_(2),and the storage can be large-scale and economical.Among the electrochemical technologies for H_(2)O electrolysis,solid oxide electrolysis cells(SOECs)operated at temperatures above 500℃have the benefits of high energy conversion efficiency and economic feasibility.In addition to the H_(2)O electrolysis,SOECs can also be employed for CO_(2) electrolysis and H2O–CO_(2) co-electrolysis to produce value-added chemicals of great economic and environmental significance.However,the SOEC technology is not yet fully ready for commercial deployment because of material limitations of the key components,such as electrolytes,air electrodes,and fuel electrodes.As is well known,the reactions in SOEC are,in principle,inverse to the reactions in solid oxide fuel cells(SOFCs).Component materials of SOECs are currently adopted from SOFC materials.However,their performance stability issues are evident,and need to be overcome by materials development in line with the unique requirements of the SOEC materials.Key topics discussed in this review include SOEC critical materials and their optimization,material degradation and its safeguards,future research directions,and commercialization challenges,from both traditional oxygen ion(O_(2)−)-conducting SOEC(O-SOEC)and proton(H^(+))-conducting SOEC(H-SOEC)perspectives.It is worth to believe that H_(2)O or/and CO_(2) electrolysis by SOECs provides a viable solution for future energy storage and conversion. 展开更多
关键词 solid oxide electrolysis cells(soecs) water(H_(2)O)electrolysis CO_(2)electrolysis electrolytes ELECTRODE
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