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Modification of BCC phase and the enhanced reversible hydrogen storage properties of Ti-V-Fe-Mn alloys with varied V/Fe ratios
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作者 Xiang-feng Ma Xin Ding +4 位作者 En-lai Liu Rui-run Chen Xin-xiu Wang Yong Zhang Jing-jie Guo 《China Foundry》 SCIE EI CAS CSCD 2024年第5期546-554,共9页
Ti-V-based alloys are proved of huge potential in storing hydrogen,but the incomplete reversible hydrogen storage capacity caused by overstability of V hydride has limited the large-scale application.In this study,Ti_... Ti-V-based alloys are proved of huge potential in storing hydrogen,but the incomplete reversible hydrogen storage capacity caused by overstability of V hydride has limited the large-scale application.In this study,Ti_(32)V_(40+x)Fe_(23-x)Mn_(5)(x=0,4,8,12,at.%)alloys were designed,and the effects of V/Fe ratio on phase constitution and hydrogen storage properties were investigated.The main phase of the alloys is body-centered cubic(BCC)phase,and the lattice constants of the BCC phase decrease with the decrease of V/Fe ratio.Moreover,C14 Laves phase exists in alloys with a Fe content of 19at.%to 23at.%.For hydrogenation,the C14 Laves phase can accelerate the hydrogen absorption rate,but the hydrogen absorption capacity is reduced.With the decrease of V/Fe ratio,the hydride gradually destabilizes.Owing to its large lattice constant and high hydrogen absorption phase content,the Ti_(32)V_(52)Fe_(11)Mn_(5)alloy shows the most enhanced hydrogen storage properties with hydrogenation and dehydrogenation capacities of 3.588wt.%at 298 K and 1.688wt.%at 343 K,respectively.The hydrogen absorption capacity of this alloy can be reserved to 3.574wt.%after 20 cycles of hydrogen absorption and desorption. 展开更多
关键词 hydrogen storage Ti-based alloy lattice constant Bcc phase
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Navigating the hydrogen prospect:A comprehensive review of sustainable source-based production technologies,transport solutions,advanced storage mechanisms,and CCUS integration
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作者 Sehar Tasleem Chandra Sekhar Bongu +1 位作者 Mohan Raj Krishnan Edreese Housni Alsharaeh 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期166-215,I0005,共51页
The review is a comprehensive discussion of current research advances,commercial scale developments,challenges,and techno-eco nomics for the entire H_(2) value chain,including production,mainly focusing on sustainable... The review is a comprehensive discussion of current research advances,commercial scale developments,challenges,and techno-eco nomics for the entire H_(2) value chain,including production,mainly focusing on sustainable sources,storage,and transport.The challenges,advantages,and uses of H_(2) energy are included at length.Moreover,apart from the sustainable production approaches,the approaches and current developments for combating the carbon dioxide(CO_(2))emissions from existing H_(2) production facilities are highlighted in terms of ca rbon capture,utilization,and storage(CCUS).Concisely,the review discusses current material and recent technological adva ncements in developing pilot projects and large-scale establishments for viable and rapidly emerging sou rce-ba sed H_(2) productio n.Moreover,the review also aims to provide an in-depthdiscussion and explore current developments based on the advantages of H_(2) energy in terms of its utilization,based on its high energy density,and its ability to be used as a feedstock and fuel.On the other hand,the challenges of H_(2) are also elabo rated.Next,the role of CCUS in a carbon-neutral economy and value chain for minimization of emissions from existing facilities is thoroughly deliberated,and the recent commercial-scale implementation of CCUS technologies is highlighted.Extending the utilization and recycling of captured CO_(2) emissions along with H_(2) to produce e-fuels in terms of current advances is detailed in this review.Fu rthermore,the most applicable,efficient,a nd develo ping approaches are discussed for physical and chemical H_(2) storage,considering recent la rge-scale implementations of liquid carriers and liquid organic hydrogen carriers as storage options.Lastly,the review elaborates on recent insights into advances in H_(2) transport infrastructure,including compressed and liquid H_(2) delivery via roads,ships,pipelines,and flight cargo.The review gives precise insights into the recent scenario through an elaborated conclusion of each discussion topic separately and a discussion of future perspectives.The current review will help researchers to fully understand the ongoing research advancements and challenges in the H_(2) value chain for formulating new solutions for sustainable H_(2) production,alo ng with focusing on suitable approaches for its storage and tra nsport to make the production and utilization of H_(2) applicable on a large scale. 展开更多
关键词 Source-based hydrogen Hydrogen utilization Carbon capture E-fuels Hydrogen storage Transport infrastructure
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Accelerating the practical application of MOFs for hydrogen storage-from performance-driven to application-oriented
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作者 Yifan Wang Jinghui Wu +5 位作者 Yidi Gao Keqing Li Chi Wang Xiaochun Cui Mingxin Huo Xianze Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第8期1193-1198,共6页
Metal–organic frameworks(MOFs)are highly promising porous materials known for their exceptional porosity,extensive surface area,and customizable pore structures,making them an ideal solution for hydrogen storage.Howe... Metal–organic frameworks(MOFs)are highly promising porous materials known for their exceptional porosity,extensive surface area,and customizable pore structures,making them an ideal solution for hydrogen storage.However,most MOFs research remains confined to the laboratory,lacking practical applications.To address this,the author proposes a shift towards practical applications,the creation of a comprehensive MOFs database,alignment of synthesis with practical considerations,and diversification of MOFs applications.These steps are crucial for harnessing the full potential of MOFs in real-world energy challenges. 展开更多
关键词 Metal–organic frameworks Hydrogen gas storage Molecular simulation Computational chemistry Machine learning
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中国计算机学会中国存储大会(CCF China Storage Conference)会议通知
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《计算机应用》 CSCD 北大核心 2024年第11期F0003-F0003,共1页
2024年11月29日—12月1日广东·广州中国计算机学会中国存储大会(CCF China Storage Conference,简称CCF ChinaStorage)是我国一年一度信息计算与存储领域学术界和产业界联合举办的大型年度盛会。本届会议将于2024年11月29日—12月... 2024年11月29日—12月1日广东·广州中国计算机学会中国存储大会(CCF China Storage Conference,简称CCF ChinaStorage)是我国一年一度信息计算与存储领域学术界和产业界联合举办的大型年度盛会。本届会议将于2024年11月29日—12月1日在广东省广州市长隆国际会展中心召开。 展开更多
关键词 中国计算机学会 存储领域 storage ccF 国际会展中心 信息计算
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The Joule–Thomson effect of (CO_(2)+H_(2)) binary system relevant to gas switching reforming with carbon capture and storage(CCS)
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作者 Zhongyao Zhang Ming Gao +4 位作者 Xiaopeng Chen Xiaojie Wei Jiezhen Liang Chenghong Wu Linlin Wang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第2期215-231,共17页
The Joule-Thomson effect is one of the important thermodynamic properties in the system relevant to gas switching reforming with carbon capture and storage(CCS). In this work, a set of apparatus was set up to determin... The Joule-Thomson effect is one of the important thermodynamic properties in the system relevant to gas switching reforming with carbon capture and storage(CCS). In this work, a set of apparatus was set up to determine the Joule-Thomson effect of binary mixtures(CO_(2)+ H_(2)). The accuracy of the apparatus was verified by comparing with the experimental data of carbon dioxide. The Joule-Thomson coefficients(μ_(JT)) for(CO_(2)+ H_(2)) binary mixtures with mole fractions of carbon dioxide(x_(CO_(2))= 0.1, 0.26, 0.5,0.86, 0.94) along six isotherms at various pressures were measured. Five equations of state EOSs(PR,SRK, PR, BWR and GERG-2008 equation) were used to calculate the μ_(JT)for both pure systems and binary systems, among which the GERG-2008 predicted best with a wide range of pressure and temperature.Moreover, the Joule-Thomson inversion curves(JTIC) were calculated with five equations of state. A comparison was made between experimental data and predicted data for the inversion curve of CO_(2). The investigated EOSs show a similar prediction of the low-temperature branch of the JTIC for both pure and binary systems, except for the BWRS equation of state. Among all the equations, SRK has the most similar result to GERG-2008 for predicting JTIC. 展开更多
关键词 Carbon dioxide Hydrogen Joule–Thomson coefficient Joule–Thomson inversion curve Gas switching reforming(GSR) Carbon capture and storage(ccs)
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海上CCS/CCUS作业模式探讨与分析
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作者 黄杰 张新平 +3 位作者 陈召 孙久强 贾振冲 华泽君 《石油科技论坛》 2024年第3期112-117,共6页
CO_(2)地质封存与利用是应对温室气体排放、实现碳达峰碳中和目标的关键技术。从CCS/CCUS作业类型、CO_(2)来源等角度对全球海上CCS/CCUS项目进行分析,总结形成4类海上CCS/CCUS作业模式。通过对CO_(2)相态变化、杂质含量等因素对CO_(2)... CO_(2)地质封存与利用是应对温室气体排放、实现碳达峰碳中和目标的关键技术。从CCS/CCUS作业类型、CO_(2)来源等角度对全球海上CCS/CCUS项目进行分析,总结形成4类海上CCS/CCUS作业模式。通过对CO_(2)相态变化、杂质含量等因素对CO_(2)性能的影响研究,分析了海上CO_(2)源汇匹配、运输、注入的难点。结合国内海上CCS/CCUS业务现状与发展需求,从海上CO_(2)集群枢纽式源汇匹配模式探索、注入模式优化及配套设备研发、流动保障技术能力建设3个方向明确今后海上CCS/CCUS作业技术发展方向。 展开更多
关键词 ccs/ccUS 集群枢纽式 源汇匹配模式 运输船 干冰 水合物
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西南油气田CCUS/CCS发展现状、优势与挑战
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作者 雍锐 《天然气工业》 EI CAS CSCD 北大核心 2024年第4期11-24,I0001,共15页
中国石油西南油气田公司(以下简称西南油气田)是中国西南地区首个天然气年产量超400×10^(8) m^(3)的油气生产企业,其天然气新建产能、产量的增量分别占到全国增量的1/4和1/3,预计2030年天然气开发的碳排放量将突破500×10^(4) ... 中国石油西南油气田公司(以下简称西南油气田)是中国西南地区首个天然气年产量超400×10^(8) m^(3)的油气生产企业,其天然气新建产能、产量的增量分别占到全国增量的1/4和1/3,预计2030年天然气开发的碳排放量将突破500×10^(4) t。为解决天然气高质量上产过程中碳排放量刚性增长的问题,西南油气田主动围绕“天然气+CCUS”的战略规划,积极部署CCUS/CCS工作,以期打造“绿色能源西南模式”,助力实现“双碳”目标。为此,系统阐述了西南油气田在CCUS/CCS业务规划、标准体系、技术系列等方面的发展现状,梳理了其CCUS/CCS业务在资源、技术方面的优势,并分析了面临的技术成熟度不高、经济效益缺乏、社会接受度不高等挑战,最后作出了展望并有针对性地提出了下一步建议:①攻关形成具有气田特色的CCUS/CCS技术体系,打造气田CCUS/CCS原创技术策源地;②建立气田CCUS/CCS标准体系,推广应用气田CO_(2)驱气提高采收率(CCUS-EGR)和CO_(2)埋存技术;③依托西南油气田自有碳捕集、输送、驱气、封存等技术,进一步延伸拓展传统油气主营业务产业链,建立西南片区CCUS/CCS产业集群和碳库,助力中国石油成为CCUS/CCS产业链链长;④探索页岩气注CO_(2)及混合气体提高采收率技术,支撑在页岩气领域开辟新的CCUS方向。 展开更多
关键词 西南油气田 ccUS/ccs ccUS-EGR 封存技术 发展战略 天然气 “双碳”目标
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鄂尔多斯盆地CCS-EOR项目CO_(2)泄漏环境风险评估
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作者 薛璐 马俊杰 +2 位作者 王浩璠 李琳 马劲风 《环境监测管理与技术》 CSCD 北大核心 2024年第2期64-68,共5页
以鄂尔多斯盆地乔家洼CCS-EOR项目为例,通过工程活动指标分解及选项设计,形成涵盖油区特征、储盖层特征、工程设计、工程监管4大类20个指标的环境风险可能性判定指标体系,利用问卷调查和专家打分法,界定驱油工程环境风险可能性。结合国... 以鄂尔多斯盆地乔家洼CCS-EOR项目为例,通过工程活动指标分解及选项设计,形成涵盖油区特征、储盖层特征、工程设计、工程监管4大类20个指标的环境风险可能性判定指标体系,利用问卷调查和专家打分法,界定驱油工程环境风险可能性。结合国内外文献分析,开展项目对空气、土壤和微生物、作物、动物及人群等环境风险受体的影响程度界定,基于界定结果,按照风险评估矩阵,对该工程CO_(2)泄漏环境风险水平的评估结论为低风险,在后期运行过程中应强化风险防范与监测。 展开更多
关键词 CO_(2)泄漏 风险评估 环境影响 ccs-EOR项目 鄂尔多斯盆地
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储液式CCS耦合P2G的综合能源系统低碳经济调度 被引量:2
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作者 李欣 李涵文 +3 位作者 陈德秋 李新宇 鲁玲 郭攀锋 《电力系统及其自动化学报》 CSCD 北大核心 2024年第5期105-113,共9页
为应对电转气P2G(power-to-gas)和碳捕集系统CCS(carbon capture system)在可再生能源出力不足时耦合失效的问题,考虑对常规CCS引入CO_(2)储液罐以加强P2G和CCS的耦合。首先,构建储液式CCS和P2G的耦合模型,利用储液罐将CCS捕集的CO_(2)... 为应对电转气P2G(power-to-gas)和碳捕集系统CCS(carbon capture system)在可再生能源出力不足时耦合失效的问题,考虑对常规CCS引入CO_(2)储液罐以加强P2G和CCS的耦合。首先,构建储液式CCS和P2G的耦合模型,利用储液罐将CCS捕集的CO_(2)时移至可再生能源富足时段,供P2G再利用;其次,构建储液式CCS与P2G耦合的电热气综合能源系统日前优化调度模型;最后,以北方某工业园区为例进行仿真。结果证明所提模型可以充分利用CCS捕集的CO_(2),从而获得更好的经济和环境效益。 展开更多
关键词 电热气综合能源系统 储液式碳捕集系统 电转气 低碳经济调度
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海上CCS工程项目全流程技术进展与展望
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作者 胡鹏 高波 +3 位作者 许睿 王付立 张磊 胡松 《能源化工》 CAS 2024年第1期7-11,共5页
分析了海上典型场景CCS全流程的技术进展,提出面临的挑战和对未来发展趋势的展望。海上CCS项目主要有两个典型场景,包括海上平台CO_(2)捕集直接回注和陆地排放源CO_(2)捕集后运输到海上进行离岸封存。海上平台CO_(2)捕集工艺以膜分离为... 分析了海上典型场景CCS全流程的技术进展,提出面临的挑战和对未来发展趋势的展望。海上CCS项目主要有两个典型场景,包括海上平台CO_(2)捕集直接回注和陆地排放源CO_(2)捕集后运输到海上进行离岸封存。海上平台CO_(2)捕集工艺以膜分离为主,同时配合多种工艺组合;陆地排放源主要有天然气处理终端和炼化企业,根据气源浓度选择捕集工艺,以化学吸收法为主,重点研究低成本的工艺。海上CO_(2)运输主要有船舶运输和管道运输,目前管道运输处在中试阶段,大型CO_(2)运输船正在设计建造中。海上封存场地主要包括咸水层和枯竭油气藏,咸水层封存重点研究盖层封闭性、长期稳定性以及海上监测技术。综合考虑技术和成本因素,海上CCS项目未来向集群项目发展,联合排放企业和封存企业共同开展CO_(2)利用及封存,技术上需要重点攻关海上平台CO_(2)高效低成本捕集工艺、海上CO_(2)运输大型装备以及海上封存监测过程中的难题。 展开更多
关键词 海上ccs 全流程 离岸封存 低成本 安全性
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中国CCS/CCUS发展瓶颈与应对策略
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作者 刘贵洲 方瑞瑞 +2 位作者 窦立荣 甘先翔 冯连勇 《天然气与石油》 2024年第5期8-14,共7页
碳捕集与封存(Carbon Capture and Storage, CCS)或碳捕集、利用与封存(Carbon Capture, Utilization and Storage, CCUS)能够与传统能源耦合进行深度减碳,是碳中和重要的技术选择和推手。由于中国能源结构的煤基特点,发展CCS/ CCUS是... 碳捕集与封存(Carbon Capture and Storage, CCS)或碳捕集、利用与封存(Carbon Capture, Utilization and Storage, CCUS)能够与传统能源耦合进行深度减碳,是碳中和重要的技术选择和推手。由于中国能源结构的煤基特点,发展CCS/ CCUS是中国能源转型的必经路径。目前中国CCS/ CCUS发展处于起步阶段,存在诸多短板有待补齐:技术成熟度、集成度低,顶层设计缺失、宏观规划不足,市场机制、政策激励与基础设施等商业化基础薄弱,大型项目商业模式仍不明确,法律框架与标准化空白,这些因素共同制约着CCS/ CCUS的规模化发展。为此建议:国家层面上要把握能源转型的窗口期,做好政策规划与顶层设计,出台系统的政策体系激励产业发展,健全法律框架和技术标准,在管道布局上要未雨绸缪,技术创新要明确重点,丰富、完善碳交易市场与碳税机制,合力构筑有助于CCS/ CCUS快速发展的商业环境。 展开更多
关键词 ccs ccUS 商业化 应对策略
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滇水金凤耐铜相关基因CAX3和CCS的克隆及表达分析
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作者 谭弋 张晓丽 +5 位作者 赵潞秋 李凡 石万磊 梁光容 黄海泉 黄美娟 《山东农业科学》 北大核心 2024年第10期10-17,共8页
植物CAX(Ca2+/H+反向转运蛋白)和CCS(铜锌超氧化物歧化酶铜伴侣蛋白)分别是重要的液泡膜转运蛋白和铜伴侣蛋白,通过不同机制在缓解重金属胁迫中发挥着重要作用。本课题组前期研究发现滇水金凤(Impatiens uliginosa)对铜胁迫具有很好的... 植物CAX(Ca2+/H+反向转运蛋白)和CCS(铜锌超氧化物歧化酶铜伴侣蛋白)分别是重要的液泡膜转运蛋白和铜伴侣蛋白,通过不同机制在缓解重金属胁迫中发挥着重要作用。本课题组前期研究发现滇水金凤(Impatiens uliginosa)对铜胁迫具有很好的耐受性,并通过转录组测序筛选出耐铜相关基因。在此基础上,本研究以野生滇水金凤为材料,通过RT-PCR技术克隆获得耐铜相关基因CAX3和CCS,分别命名为IuCAX3和IuCCS,其cDNA序列长度分别为1320 bp和975 bp,分别编码439个和324个氨基酸。生物信息学分析结果表明,IuCAX3为不稳定蛋白,具有caca2超家族的保守结构域,定位在质膜、液泡上;IuCCS为稳定蛋白,具有PLN02957超家族的保守结构域,定位在叶绿体上。系统进化分析结果显示,IuCAX3和IuCCS均与喜马拉雅凤仙花的相应基因聚为一支,相似性分别为98.18%和89.81%。通过设置不同的铜处理浓度(0、5、10、15、20、25 mg·L^(-1))研究了IuCAX3和IuCCS基因在滇水金凤叶片中的表达情况,qRT-PCR分析结果表明,铜处理能诱导两个基因大幅上调表达,且铜浓度为15 mg·L^(-1)时的上调幅度最大,并均在处理12 d达到最高水平;随处理时间延长,IuCAX3的表达量先升高后降低,IuCCS的表达量在铜浓度不高于15 mg·L^(-1)时呈先升后降再升的趋势,但当铜浓度高于15 mg·L^(-1)后则呈先升后降的趋势,而且铜处理下IuCCS的表达水平明显高于IuCAX3,因此推测IuCAX3基因主要在铜胁迫前期起作用,而IuCCS基因在铜胁迫后期仍发挥重要作用。本研究结果可为深入研究滇水金凤耐铜分子机制提供一定的参考依据。 展开更多
关键词 滇水金凤 CAX3基因 ccs基因 铜胁迫 基因克隆 生物信息学分析 表达分析
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ESM Cloud Toolkit: A Copilot for Energy Storage Material Research 被引量:2
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作者 许晶 肖睿娟 李泓 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第5期40-46,共7页
Searching and designing new materials play crucial roles in the development of energy storage devices. In today's world where machine learning technology has shown strong predictive ability for various tasks, the ... Searching and designing new materials play crucial roles in the development of energy storage devices. In today's world where machine learning technology has shown strong predictive ability for various tasks, the combination with machine learning technology will accelerate the process of material development. Herein, we develop ESM Cloud Toolkit for energy storage materials based on Mat Elab platform, which is designed as a convenient and accurate way to automatically record and save the raw data of scientific research. The ESM Cloud Toolkit includes multiple features such as automatic archiving of computational simulation data, post-processing of experimental data, and machine learning applications. It makes the entire research workflow more automated and reduces the entry barrier for the application of machine learning technology in the domain of energy storage materials. It integrates data archive, traceability, processing, and reutilization, and allows individual research data to play a greater role in the era of AI. 展开更多
关键词 TOOLKIT storage ESM
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Data Secure Storage Mechanism for IIoT Based on Blockchain 被引量:2
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作者 Jin Wang Guoshu Huang +2 位作者 R.Simon Sherratt Ding Huang Jia Ni 《Computers, Materials & Continua》 SCIE EI 2024年第3期4029-4048,共20页
With the development of Industry 4.0 and big data technology,the Industrial Internet of Things(IIoT)is hampered by inherent issues such as privacy,security,and fault tolerance,which pose certain challenges to the rapi... With the development of Industry 4.0 and big data technology,the Industrial Internet of Things(IIoT)is hampered by inherent issues such as privacy,security,and fault tolerance,which pose certain challenges to the rapid development of IIoT.Blockchain technology has immutability,decentralization,and autonomy,which can greatly improve the inherent defects of the IIoT.In the traditional blockchain,data is stored in a Merkle tree.As data continues to grow,the scale of proofs used to validate it grows,threatening the efficiency,security,and reliability of blockchain-based IIoT.Accordingly,this paper first analyzes the inefficiency of the traditional blockchain structure in verifying the integrity and correctness of data.To solve this problem,a new Vector Commitment(VC)structure,Partition Vector Commitment(PVC),is proposed by improving the traditional VC structure.Secondly,this paper uses PVC instead of the Merkle tree to store big data generated by IIoT.PVC can improve the efficiency of traditional VC in the process of commitment and opening.Finally,this paper uses PVC to build a blockchain-based IIoT data security storage mechanism and carries out a comparative analysis of experiments.This mechanism can greatly reduce communication loss and maximize the rational use of storage space,which is of great significance for maintaining the security and stability of blockchain-based IIoT. 展开更多
关键词 Blockchain IIoT data storage cryptographic commitment
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Significantly Improved High-Temperature Energy Storage Performance of BOPP Films by Coating Nanoscale Inorganic Layer 被引量:2
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作者 Tiandong Zhang Hainan Yu +5 位作者 Young Hoon Jung Changhai Zhang Yu Feng Qingguo Chen Keon Jae Lee Qingguo Chi 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期30-38,共9页
Biaxially oriented polypropylene(BOPP)is one of the most commonly used commercial capacitor films,but its upper operating temperature is below 105℃due to the sharply increased electrical conduction loss at high tempe... Biaxially oriented polypropylene(BOPP)is one of the most commonly used commercial capacitor films,but its upper operating temperature is below 105℃due to the sharply increased electrical conduction loss at high temperature.In this study,growing an inorganic nanoscale coating layer onto the BOPP film's surface is proposed to suppress electrical conduction loss at high temperature,as well as increase its upper operating temperature.Four kinds of inorganic coating layers that have different energy band structure and dielectric property are grown onto the both surface of BOPP films,respectively.The effect of inorganic coating layer on the high-temperature energy storage performance has been systematically investigated.The favorable coating layer materials and appropriate thickness enable the BOPP films to have a significant improvement in high-temperature energy storage performance.Specifically,when the aluminum nitride(AIN)acts as a coating layer,the AIN-BOPP-AIN sandwich-structured films possess a discharged energy density of 1.5 J cm^(-3)with an efficiency of 90%at 125℃,accompanying an outstandingly cyclic property.Both the discharged energy density and operation temperature are significantly enhanced,indicating that this efficient and facile method provides an important reference to improve the high-temperature energy storage performance of polymer-based dielectric films. 展开更多
关键词 coating layer energy storage interfacial barrier polymer films
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All‑Covalent Organic Framework Nanofilms Assembled Lithium‑Ion Capacitor to Solve the Imbalanced Charge Storage Kinetics 被引量:2
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作者 Xiaoyang Xu Jia Zhang +6 位作者 Zihao Zhang Guandan Lu Wei Cao Ning Wang Yunmeng Xia Qingliang Feng Shanlin Qiao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第6期246-260,共15页
Free-standing covalent organic framework(COFs)nanofilms exhibit a remarkable ability to rapidly intercalate/de-intercalate Li^(+) in lithium-ion batteries,while simultaneously exposing affluent active sites in superca... Free-standing covalent organic framework(COFs)nanofilms exhibit a remarkable ability to rapidly intercalate/de-intercalate Li^(+) in lithium-ion batteries,while simultaneously exposing affluent active sites in supercapacitors.The development of these nanofilms offers a promising solution to address the persistent challenge of imbalanced charge storage kinetics between battery-type anode and capacitor-type cathode in lithium-ion capacitors(LICs).Herein,for the first time,custom-made COFBTMB-TP and COFTAPB-BPY nanofilms are synthesized as the anode and cathode,respectively,for an all-COF nanofilm-structured LIC.The COFBTMB-TP nanofilm with strong electronegative–CF3 groups enables tuning the partial electron cloud density for Li^(+) migration to ensure the rapid anode kinetic process.The thickness-regulated cathodic COFTAPB-BPY nanofilm can fit the anodic COF nanofilm in the capacity.Due to the aligned 1D channel,2D aromatic skeleton and accessible active sites of COF nanofilms,the whole COFTAPB-BPY//COFBTMB-TP LIC demonstrates a high energy density of 318 mWh cm^(−3) at a high-power density of 6 W cm^(−3),excellent rate capability,good cycle stability with the capacity retention rate of 77%after 5000-cycle.The COFTAPB-BPY//COFBTMB-TP LIC represents a new benchmark for currently reported film-type LICs and even film-type supercapacitors.After being comprehensively explored via ex situ XPS,7Li solid-state NMR analyses,and DFT calculation,it is found that the COFBTMB-TP nanofilm facilitates the reversible conversion of semi-ionic to ionic C–F bonds during lithium storage.COFBTMB-TP exhibits a strong interaction with Li^(+) due to the C–F,C=O,and C–N bonds,facilitating Li^(+) desolation and absorption from the electrolyte.This work addresses the challenge of imbalanced charge storage kinetics and capacity between the anode and cathode and also pave the way for future miniaturized and wearable LIC devices. 展开更多
关键词 Covalent organic frameworks Lithium-ion capacitor Charge storage kinetic
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Moderate Fields, Maximum Potential: Achieving High Records with Temperature‑Stable Energy Storage in Lead‑Free BNT‑Based Ceramics 被引量:1
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作者 Wenjing Shi Leiyang Zhang +7 位作者 Ruiyi Jing Yunyao Huang Fukang Chen Vladimir Shur Xiaoyong Wei Gang Liu Hongliang Du Li Jin 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第5期184-200,共17页
The increasing awareness of environmental concerns has prompted a surge in the exploration of leadfree,high-power ceramic capacitors.Ongoing efforts to develop leadfree dielectric ceramics with exceptional energystora... The increasing awareness of environmental concerns has prompted a surge in the exploration of leadfree,high-power ceramic capacitors.Ongoing efforts to develop leadfree dielectric ceramics with exceptional energystorage performance(ESP)have predominantly relied on multicomponent composite strategies,often accomplished under ultrahigh electric fields.However,this approach poses challenges in insulation and system downsizing due to the necessary working voltage under such conditions.Despite extensive study,bulk ceramics of(Bi_(0.5)Na_(0.5))TiO_(3)(BNT),a prominent lead-free dielectric ceramic family,have seldom achieved a recoverable energy-storage(ES)density(Wrec)exceeding 7 J cm^(−3).This study introduces a novel approach to attain ceramic capacitors with high ESP under moderate electric fields by regulating permittivity based on a linear dielectric model,enhancing insulation quality,and engineering domain structures through chemical formula optimization.The incorporation of SrTiO_(3)(ST)into the BNT matrix is revealed to reduce the dielectric constant,while the addition of Bi(Mg_(2/3)Nb_(1/3))O_(3)(BMN)aids in maintaining polarization.Additionally,the study elucidates the methodology to achieve high ESP at moderate electric fields ranging from 300 to 500 kV cm^(−1).In our optimized composition,0.5(Bi_(0.5)Na_(0.4)K_(0.1))TiO_(3)–0.5(2/3ST-1/3BMN)(B-0.5SB)ceramics,we achieved a Wrec of 7.19 J cm^(−3) with an efficiency of 93.8%at 460 kV cm^(−1).Impressively,the B-0.5SB ceramics exhibit remarkable thermal stability between 30 and 140℃ under 365 kV cm^(−1),maintaining a Wrec exceeding 5 J cm^(−3).This study not only establishes the B-0.5SB ceramics as promising candidates for ES materials but also demonstrates the feasibility of optimizing ESP by modifying the dielectric constant under specific electric field conditions.Simultaneously,it provides valuable insights for the future design of ceramic capacitors with high ESP under constraints of limited electric field. 展开更多
关键词 BNT Energy storage LEAD-FREE Relaxor ferroelectrics Capacitors
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Development status and prospect of underground thermal energy storage technology 被引量:1
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作者 Ying-nan Zhang Yan-guang Liu +3 位作者 Kai Bian Guo-qiang Zhou Xin Wang Mei-hua Wei 《Journal of Groundwater Science and Engineering》 2024年第1期92-108,共17页
Underground Thermal Energy Storage(UTES)store unstable and non-continuous energy underground,releasing stable heat energy on demand.This effectively improve energy utilization and optimize energy allocation.As UTES te... Underground Thermal Energy Storage(UTES)store unstable and non-continuous energy underground,releasing stable heat energy on demand.This effectively improve energy utilization and optimize energy allocation.As UTES technology advances,accommodating greater depth,higher temperature and multi-energy complementarity,new research challenges emerge.This paper comprehensively provides a systematic summary of the current research status of UTES.It categorized different types of UTES systems,analyzes the applicability of key technologies of UTES,and evaluate their economic and environmental benefits.Moreover,this paper identifies existing issues with UTES,such as injection blockage,wellbore scaling and corrosion,seepage and heat transfer in cracks,etc.It suggests deepening the research on blockage formation mechanism and plugging prevention technology,improving the study of anticorrosive materials and water treatment technology,and enhancing the investigation of reservoir fracture network characterization technology and seepage heat transfer.These recommendations serve as valuable references for promoting the high-quality development of UTES. 展开更多
关键词 Aquifer thermal energy storage Borehole thermal energy storage Cavern thermal energy storage Thermal energy storage technology Benefit evaluation
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Hyphae-mediated bioassembly of carbon fibers derivatives for advanced battery energy storage 被引量:1
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作者 Lei Huang Zhong Qiu +10 位作者 Ping Liu Xinhui Xia Feng Cao Xinping He Chen Wang Wangjun Wan Yongqi Zhang Yang Xia Wenkui Zhang Minghua Chen Jiancang Zhou 《Carbon Energy》 SCIE EI CAS CSCD 2024年第6期140-150,共11页
Ingenious design and fabrication of advanced carbon-based sulfur cathodes are extremely important to the development of high-energy lithium-sulfur batteries,which hold promise as the next-generation power source.Herei... Ingenious design and fabrication of advanced carbon-based sulfur cathodes are extremely important to the development of high-energy lithium-sulfur batteries,which hold promise as the next-generation power source.Herein,for the first time,we report a novel versatile hyphae-mediated biological assembly technology to achieve scale production of hyphae carbon fibers(HCFs)derivatives,in which different components including carbon,metal compounds,and semiconductors can be homogeneously assembled with HCFs to form composite networks.The mechanism of biological adsorption assembly is also proposed.As a representative,reduced graphene oxides(rGOs)decorated with hollow carbon spheres(HCSs)successfully co-assemble with HCFs to form HCSs@rGOs/HCFs hosts for sulfur cathodes.In this unique architecture,not only large accommodation space for sulfur but also restrained volume expansion and fast charge transport paths are realized.Meanwhile,multiscale physical barriers plus chemisorption sites are simultaneously established to anchor soluble lithium polysulfides.Accordingly,the designed HCSs@rGOs/HCFs-S cathodes deliver a high capacity(1189 mA h g^(-1)at 0.1 C)and good high-rate capability(686 mA h g^(-1)at 5 C).Our work provides a new approach for the preparation of high-performance carbon-based electrodes for energy storage devices. 展开更多
关键词 bioassembly carbon fibers energy storage graphene lithium-sulfur batteries
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Lignin-derived hard carbon anode with a robust solid electrolyte interphase for boosted sodium storage performance 被引量:1
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作者 Jingqiang Zheng Yulun Wu +6 位作者 Chaohong Guan Danjun Wang Yanqing Lai Jie Li Fuhua Yang Simin Li Zhian Zhang 《Carbon Energy》 SCIE EI CAS CSCD 2024年第9期235-244,共10页
Hard carbon is regarded as a promising anode candidate for sodium-ion batteries due to its low cost,relatively low working voltage,and satisfactory specific capacity.However,it still remains a challenge to obtain a hi... Hard carbon is regarded as a promising anode candidate for sodium-ion batteries due to its low cost,relatively low working voltage,and satisfactory specific capacity.However,it still remains a challenge to obtain a high-performance hard carbon anode from cost-effective carbon sources.In addition,the solid electrolyte interphase(SEI)is subjected to continuous rupture during battery cycling,leading to fast capacity decay.Herein,a lignin-based hard carbon with robust SEI is developed to address these issues,effectively killing two birds with one stone.An innovative gas-phase removal-assisted aqueous washing strategy is developed to remove excessive sodium in the precursor to upcycle industrial lignin into high-value hard carbon,which demonstrated an ultrahigh sodium storage capacity of 359 mAh g^(-1).It is found that the residual sodium components from lignin on hard carbon act as active sites that controllably regulate the composition and morphology of SEI and guide homogeneous SEI growth by a near-shore aggregation mechanism to form thin,dense,and organic-rich SEI.Benefiting from these merits,the as-developed SEI shows fast Na+transfer at the interphases and enhanced structural stability,thus preventing SEI rupture and reformation,and ultimately leading to a comprehensive improvement in sodium storage performance. 展开更多
关键词 hard carbon LIGNIN SODIUM components sodium-ion storage SOLID ELECTROLYTE INTERPHASE
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