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Split short Hopkinson pressure bar(SSHPB)for the dynamic compression of sandstone under different strain rates
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作者 Qihao Yang Lifeng Fan Xiuli Du 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第12期7665-7675,共11页
This paper proposed the split short Hopkinson pressure bar(SSHPB)with short incident and transmission bars to investigate the dynamic compression characteristics of sandstone under different strain rates.The SSHPB was... This paper proposed the split short Hopkinson pressure bar(SSHPB)with short incident and transmission bars to investigate the dynamic compression characteristics of sandstone under different strain rates.The SSHPB was constructed to carry out impact tests to obtain superimposed stress waves in short bars.The separated stress waves(incident,reflected and transmitted waves)were determined by the proposed wave separation method and further used to determine the stress-strain relationship of sandstone.The SSHPB was validated by comparing the dynamic properties of sandstone determined by the SSHPB with those determined by the traditional split Hopkinson pressure bar(SHPB).The effect of the strain rate on the accuracy of the SSHPB was discussed.The results show that the stress-strain relationship of sandstone determined by the SSHPB agrees well with that determined by the traditional SHPB.The variation in the dynamic properties of sandstone with strain rate determined by the SSHPB is similar to that determined by the traditional SHPB.Under different strain rates,the relative error between the dynamic properties of sandstone determined by the SSHPB and traditional SHPB is less than 5%.Compared with the traditional SHPB,the SSHPB can reduce the length of the incident and transmission bars by 50%,which is an alternative to the traditional SHPB. 展开更多
关键词 split Hopkinson pressure bar(shpb) Wave separation Dynamic properties Strain rate SANDSTONE
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Electrospun Nanofibrous Transition Metal-based Bifunctional Electrocatalysts Toward Overall Water Splitting
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作者 YIN Yongting LU Xiaofeng 《高等学校化学学报》 北大核心 2026年第1期87-107,共21页
Electrochemical water splitting represents a sustainable technology for hydrogen(H_(2))production.However,its large-scale implementation is hindered by the high overpotentials required for both the cathodic hydrogen e... Electrochemical water splitting represents a sustainable technology for hydrogen(H_(2))production.However,its large-scale implementation is hindered by the high overpotentials required for both the cathodic hydrogen evolution reaction(HER)and the anodic oxygen evolution reaction(OER).Transition metal-based catalysts have garnered significant research interest as promising alternatives to noble-metal catalysts,owing to their low cost,tunable composition,and noble-metal-like catalytic activity.Nevertheless,systematic reviews on their application as bifunctional catalysts for overall water splitting(OWS)are still limited.This review comprehensively outlines the principal categories of bifunctional transition metal electrocatalysts derived from electrospun nanofibers(NFs),including metals,oxides,phosphides,sulfides,and carbides.Key strategies for enhancing their catalytic performance are systematically summarized,such as heterointerface engineering,heteroatom doping,metal-nonmetal-metal bridging architectures,and single-atom site design.Finally,current challenges and future research directions are discussed,aiming to provide insightful perspectives for the rational design of high-performance electrocatalysts for OWS. 展开更多
关键词 Electrospinning Nanofibers Transition metal-based catalyst Overall water splitting Performance optimization
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Insight into CoPi-mediated heterointerfaces for highly efficient photoelectrochemical water splitting
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作者 Saqib Mujtaba Chenglong Li +6 位作者 Jingjing Quan Asma Yasmin Li Xu Xingming Ning Pei Chen Zhongwei An Xinbing Chen 《Nano Research》 2026年第1期194-205,共12页
The coupling of photoanode(Pho)and oxygen evolution catalyst(OEC)is an ideal approach to enhance the photoelectrochemical(PEC)activity.Nevertheless,the anticipated photocurrent density has not been reached due to slow... The coupling of photoanode(Pho)and oxygen evolution catalyst(OEC)is an ideal approach to enhance the photoelectrochemical(PEC)activity.Nevertheless,the anticipated photocurrent density has not been reached due to slow charge transfer dynamics and severe charge recombination at the interface.Herein,a novel“killing two birds with one stone”approach was discovered by employing CoPi as an interface mediator,which shifts its charge transfer behavior from conventional hole storage or passivation to hole transporter.The optimized BiVO_(4)/CoPi/FeOOH photoanode achieves a noteworthy photocurrent density of 5.4 mA/cm^(2) and exhibits long term stability(13 h).The dynamic analysis and electrochemical characterization reveal that CoPi can rapidly and directly transfer more photogenerated holes to the surface of OEC in comparison to traditional slow holes transfer behavior,resulting in highly efficient interface charge separation.Interestingly,the strong interfacial interactions can also be extended to OEC/electrolyte interface,specifically by promoting the surface reaction dynamics.Moreover,this innovative approach of altering behavior of CoPi can also be utilized to design other photoanodes,like BiVO_(4)/CoPi/NiOOH,aimed at efficient PEC water splitting.This finding affords a smart strategy to develop highly efficient and stable photoelectrodes for water splitting. 展开更多
关键词 heterointerfaces hole transporter charge separation charge transfer kinetics water splitting
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基于分类估计的异质数据融合M_(split)模型 被引量:1
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作者 陶叶青 束明聪 陈浩 《淮阴师范学院学报(自然科学版)》 2025年第1期45-51,共7页
从分类估计的角度研究异质数据融合理论,建立一种不依赖于随机模型的融合方法.该理论首先基于M_(split)估计对观测数据进行分类估计,然后根据分类估计结果,应用中位函数计算不同参数估值的中误差,最后通过定义尺度因子与相对权比函数构... 从分类估计的角度研究异质数据融合理论,建立一种不依赖于随机模型的融合方法.该理论首先基于M_(split)估计对观测数据进行分类估计,然后根据分类估计结果,应用中位函数计算不同参数估值的中误差,最后通过定义尺度因子与相对权比函数构建融合模型,实现异质数据的有效融合.通过两类不同精度量级的观测数据组成的控制测量实例对该方法进行验证,结果表明,该方法易于实现,得到的参数估值稳定. 展开更多
关键词 异质数据融合 分类估计 M_(split)估计 尺度因子 融合模型
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复合镍铁渣粉水泥土SHPB试验研究
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作者 李致远 周敏 +3 位作者 陈峰 郑铖杰 刘隆兴 池商林 《福建建设科技》 2025年第4期55-57,共3页
本文将镍铁渣粉和矿粉复合成矿物掺合料加入水泥土中,考察水泥土在动态环境下的力学性能,通过对镍铁渣粉水泥土进行SHPB试验,得出镍铁渣粉水泥土受到冲击压缩后的动力学特性。研究结果表明,适量的镍铁渣粉掺入水泥土后,能够增加水泥土... 本文将镍铁渣粉和矿粉复合成矿物掺合料加入水泥土中,考察水泥土在动态环境下的力学性能,通过对镍铁渣粉水泥土进行SHPB试验,得出镍铁渣粉水泥土受到冲击压缩后的动力学特性。研究结果表明,适量的镍铁渣粉掺入水泥土后,能够增加水泥土的动态强度,随着养护时间的增长镍铁渣粉发挥的增强效果愈发显著;经过对比得出能够使镍铁渣粉发挥最佳效果的掺入值为40%。 展开更多
关键词 水泥土 镍铁渣粉 shpb试验 动态应力
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裂隙砂岩动静组合SHPB力学性能试验研究
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作者 平琦 徐一杰 +2 位作者 李向阳 吴世伟 胡静 《地下空间与工程学报》 北大核心 2025年第4期1194-1201,共8页
为研究动静组合加载条件下裂隙倾角对砂岩动态力学特性的影响规律,利用动静组合SHPB试验装置对倾角为0°、15°、30°、45°、60°、75°、90°的预制裂隙砂岩试件进行冲击压缩试验。结果表明:动静组合加... 为研究动静组合加载条件下裂隙倾角对砂岩动态力学特性的影响规律,利用动静组合SHPB试验装置对倾角为0°、15°、30°、45°、60°、75°、90°的预制裂隙砂岩试件进行冲击压缩试验。结果表明:动静组合加载条件下不同倾角预制裂隙砂岩试件动应力应变曲线簇均位于完整砂岩试件曲线下方;随裂隙倾角增大,试件动抗压强度、动应变、动弹性模量和试件破碎平均粒径均呈先减小后增大,裂隙倾角45°时为拐点;裂隙倾角0°时,试件沿加载方向呈张拉破坏,15°~60°时为张拉剪切复合破坏,75°~90°时为剪切破坏,45°时试件破碎程度最大,0°时试件破碎程度最小。 展开更多
关键词 岩石动力学 预制裂隙 动静组合加载 破坏模式 shpb试验装置
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低温煤SHPB动力学性能及破碎能耗特征
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作者 解北京 刘天乐 +1 位作者 栾铮 陈铭进 《煤矿安全》 北大核心 2025年第9期154-165,共12页
寒区预留煤柱受低温及采动影响易发生失稳破坏。为探究冲击速度及长径比对低温煤动态力学特性影响,基于分离式霍普金森压杆(SHPB)冲击压缩试验,研究其动力学参数及破碎耗能特征。研究表明:动态应力−应变曲线可分为微裂隙闭合、微裂隙稳... 寒区预留煤柱受低温及采动影响易发生失稳破坏。为探究冲击速度及长径比对低温煤动态力学特性影响,基于分离式霍普金森压杆(SHPB)冲击压缩试验,研究其动力学参数及破碎耗能特征。研究表明:动态应力−应变曲线可分为微裂隙闭合、微裂隙稳定发展、微裂隙非稳定发展、快速卸荷阶段;动态抗压强度、弹性模量、破坏应变、峰值应变具有应变率强化效应和尺寸弱化效应,温度效应并不明显;耗散能密度随应变率增大线性增加,随长径比增大线性减少;破碎信息熵可定量表述煤样破碎程度,其随温度降低(−40~0℃)整体上呈增加−降低−增加的趋势,拐点为−10℃和−30℃,且分别与应变率、长径比、耗散能密度呈线性正相关、幂函数负相关、指数函数正相关关系。 展开更多
关键词 煤岩动力学 shpb试验 低温煤动态力学性能 煤能量耗散特征 煤冲击破碎分形特征
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基于纳米混杂合成纤维混凝土SHPB试验的RHT数值模型参数研究 被引量:2
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作者 李长辉 王慧颖 +2 位作者 杨放 谢承彦 崔健 《振动与冲击》 北大核心 2025年第7期181-193,224,共14页
研究RHT(riedel-hiermaier-thoma)模型参数对混凝土动态力学响应的影响规律。基于纳米混杂合成聚丙烯纤维混凝土(nano cellulose synthetic polypropylene fiber reinforced concrete,NCSPFRC)的分离式霍普金森压杆(split Hopkinson pre... 研究RHT(riedel-hiermaier-thoma)模型参数对混凝土动态力学响应的影响规律。基于纳米混杂合成聚丙烯纤维混凝土(nano cellulose synthetic polypropylene fiber reinforced concrete,NCSPFRC)的分离式霍普金森压杆(split Hopkinson pressure bars,SHPB)冲击试验结果和RHT模型原始文献参数,采用Hyper-Mesh和LS-DYNA有限元软件进行数值模拟。研究结果表明:数值模拟结果与试验结果吻合度较低,峰值应力和峰值应变的模拟值相对试验值误差均超过35%,直接使用RHT模型原始文献参数无法准确描述不同强度等级、类型混凝土的动态力学响应。在此基础上,对RHT模型参数的敏感性进行了分析,并根据分析结果对模型参数进行修正,修正后的RHT模型参数所得模拟结果与试验结果具有良好的一致性,相较试验值其模拟峰值应力和峰值应变的误差值大多低于7%,在允许误差范围内。这表明修正后的RHT模型能够较准确地描述NCSPFRC的动态力学性能,同时也验证了该研究采用的参数调整方法的正确性和可行性。 展开更多
关键词 (RHT)模型 纳米混杂合成纤维混凝土(NCSPFRC) 分离式霍普金森压杆(shpb) 数值模拟 参数敏感性分析
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内含肽介导的Split-Cre系统的构建 被引量:1
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作者 敖艺菲 张琪 +2 位作者 陈昱僖 黄军就 文锦坤 《生物工程学报》 北大核心 2025年第4期1490-1499,共10页
Split-Cre系统是指被拆分为无活性的N端和C端这2个片段的Cre酶在一定条件下重组为有酶活性的全长Cre的基因工程工具。该系统常结合LoxP元件使用,近年来在多基因操纵、多基因活性标记以及神经环路示踪等方面有着重要的应用。为了开发更... Split-Cre系统是指被拆分为无活性的N端和C端这2个片段的Cre酶在一定条件下重组为有酶活性的全长Cre的基因工程工具。该系统常结合LoxP元件使用,近年来在多基因操纵、多基因活性标记以及神经环路示踪等方面有着重要的应用。为了开发更高效的Split-Cre系统,本研究利用海洋红嗜热盐菌(Rhodothermus marinus,Rma)内含肽对Cre进行拆分,在“红绿灯”报告细胞系中筛选出了能够高效介导Cre酶重组的S102拆分位点,并且通过双腺相关病毒(adeno-associatedvirus,AAV)将S102 Split-Cre系统递送至小鼠体内,证明了Rma内含肽介导的S102 Split-Cre系统在小鼠体内同样具有高效的活性。本研究为Split-Cre的基础和应用研究提供了可靠的参考。 展开更多
关键词 Cre酶 split-Cre系统 海洋红嗜热盐菌内含肽 断裂内含肽
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基于SHPB试验的高应变率下单晶硅动态力学特性研究
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作者 薛伟 田中旺 +3 位作者 王晓霞 刘敏 李世腾 郭晋 《兵器装备工程学报》 北大核心 2025年第12期118-123,共6页
为了研究高应变率下单晶硅动态力学特性,采用分离式霍普金森杆(SHPB)对单晶硅试件开展冲击试验,观测其强度、弹性模量在不同高应变率下作用规律以及对应的破坏状态,分析高动态下单晶硅真实应力-应变关系。结果表明:当应变率为3200 s^(-1... 为了研究高应变率下单晶硅动态力学特性,采用分离式霍普金森杆(SHPB)对单晶硅试件开展冲击试验,观测其强度、弹性模量在不同高应变率下作用规律以及对应的破坏状态,分析高动态下单晶硅真实应力-应变关系。结果表明:当应变率为3200 s^(-1)时,峰值应力比应变率为2100 s^(-1)增加了32.7%,比准静态下加载的静态强度增加了45.2%,说明试件即将达到弹性极限之时,试件内部在承受的临界应力与其表面应变表现出明显的应变率效应,直至试件完全破坏;在单晶硅试件达到临界强度之际,其动弹性模量也在迅速下降,动弹性模量随应变率的增大而减小,说明在试件完全破坏时材料内部力学性能遭到了较大的削弱,验证了试验的准确性和可靠性。 展开更多
关键词 shpb 单晶硅 应力-应变 弹性模量 力学性能
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Bimetallic Single‑Atom Catalysts for Water Splitting 被引量:1
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作者 Megha A.Deshmukh Aristides Bakandritsos Radek Zbořil 《Nano-Micro Letters》 SCIE EI CAS 2025年第1期1-45,共45页
Green hydrogen from water splitting has emerged as a critical energy vector with the potential to spearhead the global transition to a fossil fuel-independent society.The field of catalysis has been revolutionized by ... Green hydrogen from water splitting has emerged as a critical energy vector with the potential to spearhead the global transition to a fossil fuel-independent society.The field of catalysis has been revolutionized by single-atom catalysts(SACs),which exhibit unique and intricate interactions between atomically dispersed metal atoms and their supports.Recently,bimetallic SACs(bimSACs)have garnered significant attention for leveraging the synergistic functions of two metal ions coordinated on appropriately designed supports.BimSACs offer an avenue for rich metal–metal and metal–support cooperativity,potentially addressing current limitations of SACs in effectively furnishing transformations which involve synchronous proton–electron exchanges,substrate activation with reversible redox cycles,simultaneous multi-electron transfer,regulation of spin states,tuning of electronic properties,and cyclic transition states with low activation energies.This review aims to encapsulate the growing advancements in bimSACs,with an emphasis on their pivotal role in hydrogen generation via water splitting.We subsequently delve into advanced experimental methodologies for the elaborate characterization of SACs,elucidate their electronic properties,and discuss their local coordination environment.Overall,we present comprehensive discussion on the deployment of bimSACs in both hydrogen evolution reaction and oxygen evolution reaction,the two half-reactions of the water electrolysis process. 展开更多
关键词 Single-atom catalysts Single-atom dimers Hydrogen evolution Oxygen evolution Water splitting
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DIC技术在SHPB试验中的应用现状与优化
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作者 甘会莲 许万敏 +2 位作者 乔永昕 万再春 王建国 《黄金科学技术》 北大核心 2025年第2期315-327,共13页
DIC(Digital Image Correlation)技术通过追踪试样表面的散斑图像,实现了对材料动态力学行为的非接触式实时监测与分析。然而,在分离式霍普金森压杆(SHPB)试验中,由于高应变率和复杂加载环境的影响,DIC技术仍面临测量精度受限和环境适... DIC(Digital Image Correlation)技术通过追踪试样表面的散斑图像,实现了对材料动态力学行为的非接触式实时监测与分析。然而,在分离式霍普金森压杆(SHPB)试验中,由于高应变率和复杂加载环境的影响,DIC技术仍面临测量精度受限和环境适应性不足等挑战。为全面掌握DIC技术在SHPB试验中的应用现状及优化方法,在阐述SHPB试验和DIC技术原理的基础上,从增量相关、形函数、初值估计和深度学习算法等多个维度,系统总结了提升大变形测量精度的相关研究成果。同时,结合SHPB试验的具体需求,从散斑制作技术和材料力学特性反馈等方面,提出了切实可行的DIC技术优化措施,包括:采用高速相机和优化图像处理算法以提升图像采集与处理系统的性能;增强DIC技术在高温、高压等复杂环境下的适应性;结合其他测试技术,实现多参数测量与综合分析,从而更全面地揭示材料的动态力学行为。DIC技术在SHPB试验中的优化趋势旨在提升测量性能、拓展应用范围,并推动测试系统的智能化发展。这将为材料动态力学性能的精确评估提供有力支持,进一步促进材料科学及相关工程领域的技术进步。 展开更多
关键词 分离式霍普金森压杆 数字图像相关方法 散斑图像 测试技术 材料力学行为
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Metal nanoparticles decorated CoFe-(oxy)hydroxysulfides nanosheets fabricated by a general strategy for electrocatalytic water splitting 被引量:1
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作者 Xiaodong Yang Haochen Shen +7 位作者 Xiaoming Xiao Zhichao Li Qi Zhou Wei Yang Bin Jiang Yongli Sun Luhong Zhang Zhenhua Yan 《Journal of Energy Chemistry》 2025年第1期26-38,共13页
This study presents a novel method to fabricate metal-decorated,sulfur-doped layered double hydroxides(M/SLDH)through spontaneous redox and sulfurization processes.The developed Ag/SLDH and Pt/SLDH catalysts with abun... This study presents a novel method to fabricate metal-decorated,sulfur-doped layered double hydroxides(M/SLDH)through spontaneous redox and sulfurization processes.The developed Ag/SLDH and Pt/SLDH catalysts with abundant heterogeneous interfaces and hierarchical nanostructures demonstrated outstanding oxygen evolution reaction(OER)and hydrogen evolution reaction(HER)performance,achieving low overpotentials of 212 and 35 mV at 10 mA cm^(-2)in 1 M KOH,respectively.As both anode and cathode in water splitting,they required only 1.47 V to reach 10 mA cm^(-2)and exhibited high structural robustness,maintaining stability at 1000 mA cm^(-2)for 300 h.In-situ Raman analysis revealed that the synergistic effects of metal nanoparticles and S doping significantly promote the transformation into the S-Co1-xFexOOH layer,which serves as the active phase for water oxidation.Additionally,ultraviolet photoelectron spectroscopy(UPS)and density functional theory(DFT)analyses indicated that incorporating metal nanoparticles and S doping increase electron density near the Fermi level and reduce reaction energy barriers,thus enhancing intrinsic OER and HER activities.This study provides a scalable strategy for synthesizing high-performance electrocatalysts for water splitting,with promising potential for broader applications. 展开更多
关键词 LDH Spontaneous reaction Metal nanoparticles Water splitting
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One-dimensional wave theory analysis of factors and characteristics influencing errors in two-wave method data processing in SHPB 被引量:1
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作者 Minghui Ma Guangfa Gao 《Acta Mechanica Sinica》 2025年第1期128-140,共13页
A simplified calculation of the specimen’s stress-strain curve is generally conducted using the two-wave method by the split Hopkinson pressure bar(SHPB),which aligns the onset of the transmitted and reflected waves.... A simplified calculation of the specimen’s stress-strain curve is generally conducted using the two-wave method by the split Hopkinson pressure bar(SHPB),which aligns the onset of the transmitted and reflected waves.However,this approach neglects the travel time of elastic waves within the specimen.Considering the travel time of elastic waves,this study quantitatively investigates the error characteristics and patterns of stress,strain,and strain rate in the specimen under different conditions using the theoretical two-wave method,and compares the results with those obtained using the onset-aligned twowave method.The study reveals that the stress-time curves derived from the theoretical two-wave method are lower than the actual stress curves,whereas those obtained from the onset-aligned two-wave method are consistently higher than the actual stress curves,with the stress deviation approximating a constant value when the dimensionless time exceeds 2.0.The starting point of the stress-strain curves obtained by the theoretical two-wave method is not zero but a point on the strain axis,whereas the onset-aligned two-wave method always starts at zero.However,the slopes of the stress-strain curves obtained by both methods differ from the actual Young’s modulus of the material,and functional relationships between the slopes and the actual Young’s modulus are provided.This research offers theoretical guidance for the refined design of SHPB experiments and the accurate processing of data. 展开更多
关键词 shpb Stress wave effect Assumption of stress uniformity Dynamic stress-strain curve
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Split nitrogen application increases maize root growth,yield,and nitrogen use efficiency under soil warming conditions 被引量:2
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作者 Zhenqing Xia Yuxiang Gong +3 位作者 Xiangyue Lyu Junchen Lin Yi Yang Haidong Lu 《The Crop Journal》 2025年第2期565-575,共11页
The increase in soil temperature associated with climate change has introduced considerable challenges to crop production.Split nitrogen application(SN)represents a potential strategy for improving crop nitrogen use e... The increase in soil temperature associated with climate change has introduced considerable challenges to crop production.Split nitrogen application(SN)represents a potential strategy for improving crop nitrogen use efficiency and enhancing crop stress resistance.Nevertheless,the precise interaction between soil warming(SW)and SN remains unclear.In order to ascertain the impact of SW on maize growth and whether SN can improve the tolerance of maize to SW,a two-year field experiment was conducted(2022-2023).The aim was to examine the influence of two SW ranges(MT,warming 1.40℃;HT,warming 2.75℃)and two nitrogen application methods(N1,one-time basal application of nitrogen fertilizer;N2,one third of base nitrogen fertilizer+two thirds of jointing stage supplemental nitrogen fertilizer)on maize root growth,photosynthetic characteristics,nitrogen use efficiency,and yield.The results demonstrated that SW impeded root growth and precipitated the premature aging of maize leaves following anthesis,particularly in the HT,which led to a notable reduction in maize yield.In comparison to N1,SN has been shown to increase root length density by 8.54%,root bleeding rate by 8.57%,and enhance root distribution ratio in the middle soil layers(20-60 cm).The interaction between SW and SN had a notable impact on maize growth and yield.The SN improved the absorption and utilization efficiency of nitrogen by promoting root development and downward canopy growth,thus improving the tolerance of maize to SW at the later stage of growth.In particular,the N2HT resulted in a 14.51%increase in the photosynthetic rate,a 18.58%increase in nitrogen absorption efficiency,and a 18.32%increase in maize yield compared with N1HT.It can be posited that the SN represents a viable nitrogen management measure with the potential to enhance maize tolerance to soil high-temperature stress. 展开更多
关键词 Maize(Zea mays L.) Soil warming split nitrogen application Root growth Nitrogen use efficiency Grain yield
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FDM-DEM耦合方法模拟月壤水冰模拟物的SHPB冲击试验
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作者 李云丽 杨振睿 吴文平 《计算力学学报》 北大核心 2025年第1期19-25,共7页
全球对月球的探索在近几年再次掀起一阵热潮,下一阶段的探月任务主要集中于对月球极地的取样与资源勘探,涉及月球极地水冰模拟物大量动力学问题的研究。本文采用有限差分法(FDM)与离散元法(DEM)的耦合方法,开展了月壤水冰模拟物的分离... 全球对月球的探索在近几年再次掀起一阵热潮,下一阶段的探月任务主要集中于对月球极地的取样与资源勘探,涉及月球极地水冰模拟物大量动力学问题的研究。本文采用有限差分法(FDM)与离散元法(DEM)的耦合方法,开展了月壤水冰模拟物的分离式霍普金森压杆(SHPB)试验模拟,研究了月壤水冰模拟物在冲击载荷下的动力学性能及损伤特性。通过与试验结果对比,发现本文提出的FDM-DEM模型能够很好模拟月壤水冰模拟物的SHPB冲击测试。获得了月壤水冰模拟物峰值强度与应变率的关系,发现月壤水冰模拟物表现出应变率增强效应,即应变率越高,峰值应力越大,这与砂土的应变率不敏感性存在明显差异。冲击过程中,试样的损伤随着冲击速度的增加而增大,但损伤持续时间变短。损伤裂纹首先出现在试样与压杆的交界处,随着试样的压实,试样内部产生裂纹,最终内外部裂纹相互扩展交汇,直至破坏。研究结果为深入理解月球极地月壤水冰模拟物的动力学性能和失效行为提供了重要的参考。 展开更多
关键词 月壤水冰模拟物 分离式霍普金森压杆(shpb)试验 FDM-DEM耦合 动态冲击特性 破坏形态
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Direct seawater splitting for hydrogen production:Recent advances in materials synthesis and technological innovation
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作者 Yilin Zhao Zhipeng Yu +4 位作者 Aimin Ge Lujia Liu Joaquim Luis Faria Guiyin Xu Meifang Zhu 《Green Energy & Environment》 SCIE EI CAS 2025年第1期11-33,共23页
Direct seawater splitting has emerged as a popular and promising research direction for synthesising clean,green,non-polluting,and sustainable hydrogen energy without depending on high-purity water in the face of the ... Direct seawater splitting has emerged as a popular and promising research direction for synthesising clean,green,non-polluting,and sustainable hydrogen energy without depending on high-purity water in the face of the world’s shortage of fossil energy.However,efficient seawater splitting is hindered by slow kinetics caused by the ultra-low conductivity and the presence of bacteria,microorganisms,and stray ions in seawater.Additionally,producing hydrogen on an industrial scale is challenging due to the high production cost.The present review addresses these challenges from the catalyst point of view,namely,that designing catalysts with high catalytic activity and stability can directly affect the rate and effect of seawater splitting.From the ion transfer perspective,designing membranes can block harmful ions,improving the stability of seawater splitting.From the energy point of view,mixed seawater systems and self-powered systems also provide new and low-energy research systems for seawater splitting.Finally,ideas and directions for further research on direct seawater splitting in the future are pointed out,with the aim of achieving low-cost and high-efficiency hydrogen production. 展开更多
关键词 Seawater splitting CATALYST Membranes Mixed seawater systems Self-powered systems
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In situ constructing lamella-heterostructured nanoporous CoFe/CoFe_(2)O_(4) and CeO_(2−x) as bifunctional electrocatalyst for high-current-density water splitting 被引量:1
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作者 Yue Deng Jin Wang +6 位作者 Shao-Fei Zhang Zhi-Jia Zhang Jin-Feng Sun Tian-Tian Li Jian-Li Kang Hao Liu Shi Bai 《Rare Metals》 2025年第2期1053-1066,共14页
The stability and electrocatalytic efficiency of transition metal oxides for water splitting is determined by geometric and electronic structure,especially under high current densities.Herein,a newly designed lamella-... The stability and electrocatalytic efficiency of transition metal oxides for water splitting is determined by geometric and electronic structure,especially under high current densities.Herein,a newly designed lamella-heterostructured nanoporous CoFe/CoFe_(2)O_(4) and CeO_(2−x),in situ grown on nickel foam(NF),holds great promise as a high-efficient bifunctional electrocatalyst(named R-CoFe/Ce/NF)for water splitting.Experimental characterization verifies surface reconstruction from CoFe alloy/oxide to highly active CoFeOOH during in situ electrochemical polarization.By virtues of three-dimensional nanoporous architecture and abundant electroactive CoFeOOH/CeO_(2−x) heterostructure interfaces,the R-CoFe/Ce/NF electrode achieves low overpotentials for oxygen evolution(η_(10)=227 mV;η_(500)=450 mV)and hydrogen evolution(η_(10)=35 mV;η_(408)=560 mV)reactions with high normalized electrochemical active surface areas,respectively.Additionally,the alkaline full water splitting electrolyzer of R-CoFe/Ce/NF||R-CoFe/Ce/NF achieves a current density of 50 mA·cm^(−2) only at 1.75 V;the decline of activity is satisfactory after 100-h durability test at 300 mA·cm^(−2).Density functional theory also demonstrates that the electron can transfer from CeO_(2−x) by virtue of O atom to CoFeOOH at CoFeOOH/CeO_(2−x) heterointerfaces and enhancing the adsorption of reactant,thus optimizing electronic structure and Gibbs free energies for the improvement of the activity for water splitting. 展开更多
关键词 Lamellar nanoporous structure Electronic structure regulation High current density Theoretical calculation Overall water splitting
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Mott-Schottky electrocatalysts for water splitting
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作者 PAN Jing FU Danfei +2 位作者 YANG Hao LUO Bifu YANG Zhongjie 《燃料化学学报(中英文)》 北大核心 2025年第9期1300-1319,共20页
The electron configuration of the active sites can be effectively modulated by regulating the inherent nanostructure of the electrocatalysts,thereby enhancing their electrocatalytic performance.To tackle the unexplore... The electron configuration of the active sites can be effectively modulated by regulating the inherent nanostructure of the electrocatalysts,thereby enhancing their electrocatalytic performance.To tackle the unexplored challenge of substantial electrochemical overpotential,surface reconstruction has emerged as a necessary strategy.Focusing on key aspects such as Janus structures,overflow effects,the d-band center displacement hypothesis,and interface coupling related to electrochemical reactions is essential for water electrolysis.Emerging as frontrunners among next-generation electrocatalysts,Mott-Schottky(M-S)catalysts feature a heterojunction formed between a metal and a semiconductor,offering customizable and predictable interfacial synergy.This review offers an in-depth examination of the processes driving the hydrogen and oxygen evolution reactions(HER and OER),highlighting the benefits of employing nanoscale transition metal nitrides,carbides,oxides,and phosphides in M-S heterointerface catalysts.Furthermore,the challenges,limitations,and future prospects of employing M-S heterostructured catalysts for water splitting are thoroughly discussed. 展开更多
关键词 Mott-Schottky electrocatalysts water splitting HETEROJUNCTIONS SEMICONDUCTORS
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煤试样SHPB动态力学特性实验及其长径比效应
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作者 张卫东 周杰 《中国矿山工程》 2025年第4期16-22,共7页
本研究旨在探究长径比对煤样动态力学性能的影响,采用矩形子弹以3.107~7.108 ms-1范围内不同冲击速度,对四种长径比(0.5、1、1.5、2)的圆柱体原煤试件进行加载破坏试验,研究了煤试件的长度对其动态力学性能的实验测试的影响。研究结果表... 本研究旨在探究长径比对煤样动态力学性能的影响,采用矩形子弹以3.107~7.108 ms-1范围内不同冲击速度,对四种长径比(0.5、1、1.5、2)的圆柱体原煤试件进行加载破坏试验,研究了煤试件的长度对其动态力学性能的实验测试的影响。研究结果表明:(1)由于煤试样自身所含层理分布不均和应变率效应共同作用,较高冲击速度条件下的应变率时程曲线均表现出两种典型形态:一种是恒应变率平台整体变化平缓,另一种是恒应变率平台后部分出现明显波动;(2)不同长径比试样均表现出明显的应变率效应,长径比从0.5到2,获得的应力应变曲线形态由“尖峰”型、多形态、“山丘”型到多形态之间变化,表现出弹性、塑性变形的不同作用过程;(3)考虑煤的层理结构和SHPB测试原理,过长和过短的试样都不适合用来研究煤冲击动态应力破坏特征,四种试样中L=50 mm最佳,其次是L=75 mm。 展开更多
关键词 动力学特性 shpb技术 尺寸效应 煤冲击破坏
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