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Boosting oxygen reduction activity and CO_(2) resistance on bismuth ferrite-based perovskite cathode for low-temperature solid oxide fuel cells below 600℃ 被引量:1
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作者 Juntao Gao Zhiyun Wei +5 位作者 Mengke Yuan Zhe Wang Zhe Lü Qiang Li Lingling Xu Bo Wei 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期600-609,I0013,共11页
Developing efficient and stable cathodes for low-temperature solid oxide fuel cells(LT-SOFCs) is of great importance for the practical commercialization.Herein,we propose a series of Sm-modified Bi_(0.7-x)Sm_xSr_(0.3)... Developing efficient and stable cathodes for low-temperature solid oxide fuel cells(LT-SOFCs) is of great importance for the practical commercialization.Herein,we propose a series of Sm-modified Bi_(0.7-x)Sm_xSr_(0.3)FeO_(3-δ) perovskites as highly-active catalysts for LT-SOFCs.Sm doping can significantly enhance the electrocata lytic activity and chemical stability of cathode.At 600℃,Bi_(0.675)Sm_(0.025)Sr_(0.3)FeO_(3-δ)(BSSF25) cathode has been found to be the optimum composition with a polarization resistance of 0.098 Ω cm^2,which is only around 22.8% of Bi_(0.7)Sr_(0.3)FeO_(3-δ)(BSF).A full cell utilizing BSSF25 displays an exceptional output density of 790 mW cm^(-2),which can operate continuously over100 h without obvious degradation.The remarkable electrochemical performance observed can be attributed to the improved O_(2) transport kinetics,superior surface oxygen adsorption capacity,as well as O_(2)p band centers in close proximity to the Fermi level.Moreover,larger average bonding energy(ABE) and the presence of highly acidic Bi,Sm,and Fe ions restrict the adsorption of CO_(2) on the cathode surface,resulting in excellent CO_(2) resistivity.This work provides valuable guidance for systematic design of efficient and durable catalysts for LT-SOFCs. 展开更多
关键词 Low-temperature solid oxide fuel cell Perovskite cathode DFT calculations CO_(2) tolerance
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Sandwich-type composited solid polymer electrolytes to strengthen the interfacial ionic transportation and bulk conductivity for all-solid-state lithium batteries from room temperature to 120℃
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作者 Jiewen Tan Zhen Wang +7 位作者 Jiawu Cui Zhanhui Jia Wensheng Tian Chao Wu Chengxin Peng Chengyong Shu Kang Yang Wei Tang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期288-295,I0007,共9页
The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the m... The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the melting point,dominantly limits their applications in solid-state batteries(SSBs).Although the inorganic filler such as CeO_(2)nanoparticle content of composite solid polymer electrolytes(CSPEs)can significantly reduce the enormous charge transfer impedance at the Li metal/SPEs interface,we found that the required content of CeO_(2)nanoparticles in SPEs varies for achieving a decent interfacial charge transfer impedance and the bulk ionic conductivity in CSPEs.In this regard,a sandwich-type composited solid polymer electrolyte with a 10%CeO_(2)CSPEs interlayer sandwiched between two 50%CeO_(2)CSPEs thin layers(sandwiched CSPEs)is constructed to simultaneously achieve low charge transfer impedance and superior ionic conductivity at 30℃.The sandwiched CSPEs allow for stable cycling of Li plating and stripping for 1000 h with 129 mV polarized voltage at 0.1 mA cm^(-2)and 30℃.In addition,the LiFePO_(4)/Sandwiched CSPEs/Li cell also exhibits exceptional cycle performance at 30℃and even elevated120℃without short circuits.Constructing multi-layered CSPEs with optimized contents of the inorganic fillers can be an efficient method for developing all solid-state PEO-based batteries with high performance at a wide range of temperatures. 展开更多
关键词 PEO-based solid electrolytes CeO_(2)nanoparticles Charge transfer impedance Sandwich-type composite electrolytes All-solid-state Li metal batteries
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Extending the solid solution range of sodium ferric pyrophosphate:Off‐stoichiometric Na_(3)Fe(2.5)(P_(2)O_(7))_(2)as a novel cathode for sodium‐ion batteries
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作者 Xiang jun Pu Kunran Yang +6 位作者 Zibing Pan Chunhua Song Yangyang Lai Renjie Li Zheng‐Long Xu Zhongxue Chen Yuliang Cao 《Carbon Energy》 SCIE EI CAS CSCD 2024年第4期128-139,共12页
Iron‐based pyrophosphates are attractive cathodes for sodium‐ion batteries due to their large framework,cost‐effectiveness,and high energy density.However,the understanding of the crystal structure is scarce and on... Iron‐based pyrophosphates are attractive cathodes for sodium‐ion batteries due to their large framework,cost‐effectiveness,and high energy density.However,the understanding of the crystal structure is scarce and only a limited candidates have been reported so far.In this work,we found for the first time that a continuous solid solution,Na_(4−α)Fe_(2+α)_(2)(P_(2)O_(7))_(2)(0≤α≤1,could be obtained by mutual substitution of cations at center‐symmetric Na3 and Na4 sites while keeping the crystal building blocks of anionic P_(2)O_(7) unchanged.In particular,a novel off‐stoichiometric Na_(3)Fe(2.5)(P_(2)O_(7))_(2)is thus proposed,and its structure,energy storage mechanism,and electrochemical performance are extensively investigated to unveil the structure–function relationship.The as‐prepared off‐stoichiometric electrode delivers appealing performance with a reversible discharge capacity of 83 mAh g^(−1),a working voltage of 2.9 V(vs.Na^(+)/Na),the retention of 89.2%of the initial capacity after 500 cycles,and enhanced rate capability of 51 mAh g^(−1)at a current density of 1600 mA g^(−1).This research shows that sodium ferric pyrophosphate could form extended solid solution composition and promising phase is concealed in the range of Na_(4−α)Fe_(2+α)_(2)(P_(2)O_(7))_(2),offering more chances for exploration of new cathode materials for the construction of high‐performance SIBs. 展开更多
关键词 extending solid‐solution range off‐stoichiometric Na_(3)Fe_(2.5)(P_(2)O_(7))_(2) sodium‐ion batteries structure-function relationship
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Fabrication of Gd_(2)O_(3)-doped CeO_(2)thin films through DC reactive sputtering and their application in solid oxide fuel cells 被引量:2
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作者 Fuyuan Liang Jiaran Yang +1 位作者 Haiqing Wang Junwei Wu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第6期1190-1197,共8页
Physical vapor deposition(PVD)can be used to produce high-quality Gd_(2)O_(3)-doped CeO2(GDC)films.Among various PVD methods,reactive sputtering provides unique benefits,such as high deposition rates and easy upscalin... Physical vapor deposition(PVD)can be used to produce high-quality Gd_(2)O_(3)-doped CeO2(GDC)films.Among various PVD methods,reactive sputtering provides unique benefits,such as high deposition rates and easy upscaling for industrial applications.GDC thin films were successfully fabricated through reactive sputtering using a Gd_(0.2)Ce_(0.8)(at%)metallic target,and their application in solid oxide fuel cells,such as buffer layers between yttria-stabilized zirconia(YSZ)/La0.6Sr0.4Co0.2Fe0.8O_(3−δ)and as sublayers in the steel/coating system,was evaluated.First,the direct current(DC)reactive-sputtering behavior of the GdCe metallic target was determined.Then,the GDC films were deposited on NiO-YSZ/YSZ half-cells to investigate the influence of oxygen flow rate on the quality of annealed GDC films.The results demonstrated that reactive sputtering can be used to prepare thin and dense GDC buffer layers without high-temperature sintering.Furthermore,the cells with a sputtered GDC buffer layer showed better electrochemical performance than those with a screen-printed GDC buffer layer.In addition,the insertion of a GDC sublayer between the SUS441 interconnects and the Mn-Co spinel coatings contributed to the reduction of the oxidation rate for SUS441 at operating temperatures,according to the area-specific resistance tests. 展开更多
关键词 solid oxide fuel cell physical vapor deposition Gd2O3-doped CeO_(2) metallic interconnects electrical conductivity
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The effects of amino groups and open metal sites of MOFs on polymer-based electrolytes for all-solid-state lithium metal batteries 被引量:3
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作者 Jiahao Lu Zhimeng Wang +7 位作者 Qi Zhang Cheng Sun Yanyan Zhou Sijia Wang Xiangyun Qiu Shoudong Xu Rentian Chen Tao Wei 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第8期80-89,共10页
Metal-organic frameworks(MOFs) are becoming more and more popular as the fillers in polymer electrolytes in recent years. In this study, a series of MOFs(NH_(2)-MIL-101(Fe), MIL-101(Fe), activated NH_(2)-MIL-101(Fe) a... Metal-organic frameworks(MOFs) are becoming more and more popular as the fillers in polymer electrolytes in recent years. In this study, a series of MOFs(NH_(2)-MIL-101(Fe), MIL-101(Fe), activated NH_(2)-MIL-101(Fe) and activated MIL-101(Fe)) were synthesized and added to PEO-based solid composite electrolytes(SCEs). Furthermore, the role of the —NH_(2) groups and open metal sites(OMSs) were both examined. Different ratios of MOFs vs polymers were also studied by the electrochemical characterizations. At last, we successfully designed a novel solid composite electrolyte containing activated NH_(2)-MIL-101(Fe),PEO, Li TFSI and PVDF for the high-performance all-solid-state lithium-metal batteries. This work might provide new insight to understand the interactions between polymers and functional groups or OMSs of MOFs better. 展开更多
关键词 solid composite electrolytes NH_(2)-MIL-101(Fe) All solid-state lithium metal batteries Metal-organic frameworks(MOFs) Open metal sites(OMSs)
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Superior resistance to alkali metal potassium of vanadium-based NH_(3)-SCR catalyst promoted by the solid superacid SO_(4)^(2-)-TiO_(2) 被引量:1
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作者 Yaoyao Peng Lei Song +6 位作者 Siru Lu Ziyu Su Kui Ma Siyang Tang Shan Zhong Hairong Yue Bin Liang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第3期246-256,共11页
The significant decrease of acid sites caused by alkali metal poisoning is the major factor in the deactivation of commercial V_(2)O_(5)-WO_(3)/TiO_(2)NH_(3)-SCR catalysts.In this work,the solid superacid SO_(4)^(2-)-... The significant decrease of acid sites caused by alkali metal poisoning is the major factor in the deactivation of commercial V_(2)O_(5)-WO_(3)/TiO_(2)NH_(3)-SCR catalysts.In this work,the solid superacid SO_(4)^(2-)-TiO_(2) modified by sulfate radicals,was selected as the catalyst support,which showed superior potassium resistance.The physicochemical properties and K-poisoning resistance of the V_(2)O_(5)-WO_(3)/SO_(4)^(2-)-TiO_(2)(VWSTi) catalyst were carried out by XRD,BET,H2-TPR,NH3-TPD,XPS,in situ DRIFTS and TG.The results pointed out that the introduction of SO_(4)^(2-)significantly increased the NH3-SCR catalytic activity at high temperatures,with an exceptionally high NO_(x) conversion over 90% between 275℃ and 500℃.When 0.5%(mass) K_(2)O was doped on the catalysts,the catalytic performance of the traditional V_(2)O_(5)-WO_(3)/TiO_(2)(VWTi) catalyst decreased significantly,while the VWSTi catalyst could still maintain a NOxconversion over 90%in the range of 300–500℃.The characterizations suggested that the support of SO_(4)^(2-)-TiO_(2) greatly increased the number of acidic sites,thereby enhancing the adsorption capacity of the reactant NH_(3).The results above demonstrated a potential approach to achieve superior potassium resistance for NH3-SCR catalysts using solid superacid. 展开更多
关键词 Selective catalytic reduction(NH_(3)-SCR) V_(2)O_(5)-WO_(3)/TiO_(2) solid superacid Anti-poisoning ACIDITY
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A robust fluorine-containing ceramic cathode for direct CO_(2) electrolysis in solid oxide electrolysis cells
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作者 Shaowei Zhang Chengyue Yang +2 位作者 Yunan Jiang Ping Li Changrong Xia 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期300-309,I0008,共11页
Stro ntium-doped lanthanum ferrite(LSF)is a potential ceramic cathode for direct CO_(2) electrolysis in solid oxide electrolysis cells(SOECs),but its application is limited by insufficient catalytic activity and stabi... Stro ntium-doped lanthanum ferrite(LSF)is a potential ceramic cathode for direct CO_(2) electrolysis in solid oxide electrolysis cells(SOECs),but its application is limited by insufficient catalytic activity and stability in CO_(2)-containing atmospheres.Herein,a novel strategy is proposed to enhance the electrolytic performance as well as chemical stability,achieved by doping F into the O-site of the perovskite LSF.Doping F does not change the phase structure but reduces the cell volume and improves the chemical stability in a CO_(2)-rich atmosphere.Importantly,F doping favors oxygen vacancy formation,increases oxygen vacancy concentration,and enhances the CO_(2) adsorption capability.Meanwhile,doping with F greatly improves the kinetics of the CO_(2) reduction reaction.For example,kchem increases by 78%from3.49×10^(-4) cm s^(-1) to 6.24×10^(-4) cm s^(-1),and Dchem doubles from 4.68×10^(-5) cm^(2) s^(-1) to 9.45×10^(-5)cm^(2) s^(-1).Consequently,doping F significantly increases the electrochemical performance,such as reducing R_(p) by 52.2%from 0.226Ωcm^(2) to 0.108Ωcm^(2) at 800℃.As a result,the single cell with the Fcontaining cathode exhibits an extremely high current density of 2.58 A cm^(-2) at 800℃and 1.5 V,as well as excellent durability over 200 h for direct CO_(2) electrolysis in SOECs. 展开更多
关键词 solid oxide electrolysis cell CO_(2)electrolysis Ceramic cathode F doping Strontium-doped lanthanum ferrite
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Seamless Stitching of Redox Windows to Enable High-Voltage Resilient Solid Sodium Ion Batteries
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作者 Xiangdan Zhang Yuanyuan Huang +8 位作者 Xiaoyi Hu Ruxin Guo Yongshang Zhang Zhiheng Wu Guoqin Cao Yuran Yu Zhuo Wang Yonglong Shen Guosheng Shao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第6期445-454,共10页
While sulfide solid electrolytes such as Na_(11)Sn_(2)PS_(12)can allow fast transport of Na+ions,their utilization in solid sodium ion batteries is rather unsuccessful since they are not electrochemically compatible t... While sulfide solid electrolytes such as Na_(11)Sn_(2)PS_(12)can allow fast transport of Na+ions,their utilization in solid sodium ion batteries is rather unsuccessful since they are not electrochemically compatible to both high-voltage cathodes and sodium metal anode.In this work,we devise an effective approach toward realizing solid sodium ion batteries,using the Na_(11)Sn_(2)PS_(12)electrolyte and slurry-coated NASICON-type Na_(3)MnTi(PO_(4))_(3)@C as high-voltage cathode,highly beneficial for low processing cost and high content/loading of active cathode matter.We report that through significantly improved integrity of electrolyte-cathode interface,such solid sodium ion batteries can deliver outstanding cycling and rate performance,with a charge voltage resilience up to 4.1 V,a high cathode discharge capacity of 128.7 mAh g^(-1)against the Na_(3)MnTi(PO_(4))_(3)@C in cathode is achieved at 0.05 C,and capacity retention ratio of 82%with a rate of 0.1 C is realized after prolonged cycling at room temperature.Besides,we demonstrate that such a solid sodium ion battery can even perform at a sub-zero Celsius temperature of-10℃,when the conventional control cell using liquid electrolyte completely fail to function.This work is to offer a dependable avenue in engineering next generation of safe solid ion batteries based on highly sustainable and much cheaper material resources. 展开更多
关键词 C-coated NASICON nanocrystals electrolyte-electrode interface full-cathode capacity Na_(11)Sn_(2)PS_(12) solid sodium-ion battery
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二硒化钴电催化剂的制备及氧还原性能测试 被引量:1
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作者 杨晓玲 孙怡然 +3 位作者 晁佳钰 支东彦 陈健壮 沈建华 《化学试剂》 CAS 2024年第1期53-58,共6页
具有高附加值的绿色环保型氧化剂——过氧化氢(H_(2)O_(2))的需求日益增加,急需发展绿色且安全的H_(2)O_(2)合成新方法。两电子氧还原反应(2e-ORR)是一种制备H_(2)O_(2)的高效方法,其中催化剂的高效率和高选择性是2e-ORR的关键。对二硒... 具有高附加值的绿色环保型氧化剂——过氧化氢(H_(2)O_(2))的需求日益增加,急需发展绿色且安全的H_(2)O_(2)合成新方法。两电子氧还原反应(2e-ORR)是一种制备H_(2)O_(2)的高效方法,其中催化剂的高效率和高选择性是2e-ORR的关键。对二硒化钴(CoSe_(2))电催化剂的制备和性能测试实验进行了探索。首先,通过联氨还原法制备钴纳米粒子;然后,通过简单的固相反应并在不同温度下退火制备CoSe_(2)电催化剂;最后,通过一系列的表征方法对CoSe_(2)电催化剂的表面形貌、晶型、电化学及其稳定性等进行了研究。为2e^(-)ORR电催化剂CoSe_(2)的进一步研究和应用开发提供借鉴。 展开更多
关键词 氧还原反应 过氧化氢 固相反应 CoSe_(2) 电催化剂
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Ca_(2)Fe_(2)O_(5)催化剂对半焦基DC-SOFC性能的影响
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作者 刘国阳 周安宁 +1 位作者 刘倩 王俊哲 《煤炭学报》 EI CAS CSCD 北大核心 2024年第3期1647-1656,共10页
半焦与CO_(2)的气化反应速率是影响半焦燃料基DC-SOFC电池性能的关键。为提高半焦的CO_(2)气化反应性,采用柠檬酸溶胶-凝胶法制备了具有钙钛矿结构的Ca_(2)Fe_(2)O_(5)催化剂,用SEM、XRD、XPS、低温氮气吸脱附等分析手段研究了Ca_(2)Fe_... 半焦与CO_(2)的气化反应速率是影响半焦燃料基DC-SOFC电池性能的关键。为提高半焦的CO_(2)气化反应性,采用柠檬酸溶胶-凝胶法制备了具有钙钛矿结构的Ca_(2)Fe_(2)O_(5)催化剂,用SEM、XRD、XPS、低温氮气吸脱附等分析手段研究了Ca_(2)Fe_(2)O_(5)催化剂的形貌和结构,采用热重分析实验研究Ca_(2)Fe_(2)O_(5)催化剂对半焦燃料的CO_(2)气化反应催化活性;在Ag-GDC|YSZ|GDC-Ag电解质支撑电池系统上,研究了添加Ca_(2)Fe_(2)O_(5)催化剂对半焦燃料基DC-SOFC输出性能的影响。结果表明,随着催化剂焙烧温度的提高,Ca_(2)Fe_(2)O_(5)催化剂晶粒尺寸逐渐增大、比表面积降低,750℃焙烧的催化剂具有良好的分散性、颗粒尺寸约为0.1μm,在半焦的CO_(2)气化反应中催化作用最好;相较于CaO和Fe2O3,Ca_(2)Fe_(2)O_(5)催化剂结构中吸附氧浓度更高,在半焦的CO_(2)气化反应中表现出更为优异的催化活性;Ca_(2)Fe_(2)O_(5)催化剂的循环稳定性取决于催化剂结构的热稳定性,其循环使用时活性降低主要归因于半焦燃料中无机灰分的包裹。催化剂对DC-SOFC输出性能影响表明,当半焦中添加10%的Ca_(2)Fe_(2)O_(5)催化剂时,电池的峰值功率密度从15.3 mW/cm^(2)增大到23.7 mW/cm^(2);EIS分析表明阳极传质阻力是影响DC-SOFC输出性能和燃料利用率的主要因素,降低灰分、催化剂累积带来的传质阻力可有效提高电池寿命和燃料利用率。 展开更多
关键词 直接碳固体氧化物燃料电池 钙钛矿 催化剂 C-CO_(2)气化反应
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不同萃取方法下绿萼梅花蕾挥发性成分的差异研究
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作者 王衍彬 陈雅丹 +6 位作者 秦玉川 吴晓红 黄旭波 程俊文 王丽玲 方茹 贺亮 《浙江林业科技》 2024年第1期33-41,共9页
2023年3月13日,从浙江省长兴县东方梅园有限公司梅花基地采集绿萼梅花蕾,采用顶空-固相微萃取、水蒸气蒸馏、超临界二氧化碳3种萃取方法,结合气相色谱-质谱联用仪(GC-MS)分析绿萼梅Prunus mume f.viridicalyx花蕾中的挥发性成分,以明确... 2023年3月13日,从浙江省长兴县东方梅园有限公司梅花基地采集绿萼梅花蕾,采用顶空-固相微萃取、水蒸气蒸馏、超临界二氧化碳3种萃取方法,结合气相色谱-质谱联用仪(GC-MS)分析绿萼梅Prunus mume f.viridicalyx花蕾中的挥发性成分,以明确其花蕾中挥发性成分组成、含量及不同萃取方式对挥发性成分萃取效果的影响。结果表明,三种萃取方法获得的绿萼梅花提取物中共鉴定出醛、醇、酮、烯等9类57种化合物,主要挥发性成分是苯甲醛、壬醛、金合欢醇、苯甲酸、α-香树脂醇、D-柠檬烯,其中苯甲醛含量最高。绿萼梅花顶空-固相微萃取物中共鉴定出21种化合物,以醛、醇和酯类化合物为主;水蒸气蒸馏物中共鉴定出30种化合物,以酯、烯、酮等水难溶化合物为主;而超临界二氧化碳提取物中共鉴定出30种化合物,以长链烷、酯类化合物为主。三种提取方法中超临界二氧化碳萃取物中蜡质含量较高,顶空-固相微萃取和水蒸气蒸馏法结合更适合作为植物芳香类挥发物的检测手段。 展开更多
关键词 绿萼梅 挥发性成分 水蒸气蒸馏 顶空-固相微萃取 超临界CO_(2)萃取
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工业固废CO_(2)矿化协同减污降碳关键技术进展
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作者 李磊 潘鑫 刘鲁豫 《洁净煤技术》 CAS CSCD 北大核心 2024年第7期1-12,共12页
针对工业过程CO_(2)和固废排放的问题,减污降碳刻不容缓。CO_(2)矿化技术在封存CO_(2)的同时固废得到资源化利用,受到广泛关注。论述了不同工业固废作为CO_(2)矿化原料的利用情况,对比分析了不同矿化工艺优缺点及CO_(2)矿化机理,总结了... 针对工业过程CO_(2)和固废排放的问题,减污降碳刻不容缓。CO_(2)矿化技术在封存CO_(2)的同时固废得到资源化利用,受到广泛关注。论述了不同工业固废作为CO_(2)矿化原料的利用情况,对比分析了不同矿化工艺优缺点及CO_(2)矿化机理,总结了不同CO_(2)矿化工艺研究现状和工业化应用情况。研究发现,目前针对固废CO_(2)矿化缺乏机制性解释,无法有效控制金属离子的浸取过程和矿化过程中气液固传质的效率,同时矿化形成的碳酸盐产品存在粒径大、易团聚、功能单一等问题。未来需进一步研究浸渍过程中表面溶剂扩散等控制浸取速率和程度的机制;深入研究碳酸盐成核结晶动力学机制及碳酸盐晶体形貌、粒度调控方法;构建煤基固废浸取、矿化溶质气-液-固传输模型,进行工艺参数优化和过程强化并确定放大规律;进一步加强CO_(2)矿化利用技术全生命周期和经济评价;最后,需加大CO_(2)矿化利用技术的中试、示范技术集成和成套工艺建设,为规模化减污降碳技术的工业化发展奠定技术支撑。 展开更多
关键词 CO_(2)捕集 工业固废 CO_(2)矿化 吸收-矿化一体化 减污降碳
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粉煤灰矿化电厂烟气CO_(2)技术及关键科学问题
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作者 秦波涛 冯乐乐 邵旭 《煤炭学报》 EI CAS CSCD 北大核心 2024年第2期1161-1173,共13页
燃煤发电是我国能源安全的重要保障,但烟气中会排放大量CO_(2),同时,也会产生大量粉煤灰。利用粉煤灰矿化封存电厂烟气CO_(2),并将矿化产物进行综合利用,可达到大宗固废处置与CO_(2)长效封存的双重目的。目前,粉煤灰矿化电厂烟气CO_(2)... 燃煤发电是我国能源安全的重要保障,但烟气中会排放大量CO_(2),同时,也会产生大量粉煤灰。利用粉煤灰矿化封存电厂烟气CO_(2),并将矿化产物进行综合利用,可达到大宗固废处置与CO_(2)长效封存的双重目的。目前,粉煤灰矿化电厂烟气CO_(2)技术仍存在矿化效率低、反应时间长、CO_(2)处理量小等不足,其对应的关键科学问题和技术瓶颈亟待解决。简要介绍了粉煤灰矿化烟气CO_(2)的基本原理,分析了不同反应条件对粉煤灰碱土金属离子浸出和CO_(2)矿化反应效率的影响机制,对比了CO_(2)直接矿化反应工艺、碱土金属预浸出工艺、CO_(2)预吸收工艺等3种流程的优缺点,提出了包含粉煤灰碱土金属离子高效浸出、CO_(2)矿化反应过程强化、粉煤灰矿化CO_(2)智能装备、矿化效果综合评价等方面的粉煤灰高效矿化烟气CO_(2)技术体系,总结了粉煤灰矿化CO_(2)产物的物理化学性质,提出了粉煤灰矿化CO_(2)产物高值化综合利用的构想。最后,凝练出了粉煤灰碱土金属离子快速浸出与CO_(2)高效矿化特性、粉煤灰矿化CO_(2)大型反应器中多相混合与反应规律、粉煤灰浆液矿化CO_(2)产物性质的调控机制等3个关键科学问题,指明了基础研究-关键技术与装备研发-工程应用全链条的攻关方向,为粉煤灰高效矿化烟气CO_(2)及产物综合利用提供了参考,对于双碳目标实现和固废综合利用具有重要意义。 展开更多
关键词 电厂烟气 粉煤灰 二氧化碳 矿化 固废利用
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纳米MoS_(2)固体薄膜制备及在钢领上的应用研究
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作者 张一鸣 张天羿 +2 位作者 何瑶 陈志军 曹根阳 《纺织器材》 2024年第3期1-6,共6页
为了减小纺织机械及器材专件的摩擦磨损,对比分析普通MoS_(2)油和脂与纳米MoS_(2)固体薄膜的润滑机理和特性,提出一种在钢领上采用真空化学气相沉积法合成纳米MoS_(2)固体薄膜的制备工艺;通过X射线衍射谱图和原子力显微镜,分析纳米MoS_... 为了减小纺织机械及器材专件的摩擦磨损,对比分析普通MoS_(2)油和脂与纳米MoS_(2)固体薄膜的润滑机理和特性,提出一种在钢领上采用真空化学气相沉积法合成纳米MoS_(2)固体薄膜的制备工艺;通过X射线衍射谱图和原子力显微镜,分析纳米MoS_(2)固体薄膜的组织结构及表面形貌,并对纳米MoS_(2)钢领进行镀铬镀氟渗杂复合膜处理。通过对比纳米MoS_(2)固体薄膜钢领与普通钢领纺纱质量,指出:纳米MoS_(2)固体薄膜具有优异的润滑性能,可以代替普通润滑油,达到纺织设备及器材专件少用油、不用油及无油自润滑的目的;纳米MoS_(2)的制备方法是制约其应用和发展的瓶颈;镀铬镀氟渗杂复合膜纳米MoS_(2)钢领在潮湿环境中不易生锈,较普通钢领的成纱质量好,值车工劳动强度小,钢领使用寿命延长。 展开更多
关键词 化学气相沉积法 纳米MoS_(2) 固体薄膜 流体润滑 钢领 摩擦 磨损 渗杂
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新型MgH_(2)固态储氢装置放氢性能影响研究
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作者 王为术 王苗佳 +3 位作者 陈贤志 王钦宝 李龙 高燕尚 《中原工学院学报》 CAS 2024年第3期49-56,共8页
为探究新型MgH_(2)固态储氢装置放氢性能的影响因素,设计构建了一种新型MgH_(2)固态储氢装置,数值研究了压力、换热流体入口温度、换热流体流速以及有无外环形换热流体层对放氢反应速率的影响。研究结果表明,当压力从0.4 MPa增加至0.6 M... 为探究新型MgH_(2)固态储氢装置放氢性能的影响因素,设计构建了一种新型MgH_(2)固态储氢装置,数值研究了压力、换热流体入口温度、换热流体流速以及有无外环形换热流体层对放氢反应速率的影响。研究结果表明,当压力从0.4 MPa增加至0.6 MPa,放氢反应速率随之降低,但放氢反应完成时间几近一致;当换热流体入口温度从550 K提升至650 K,放氢反应速率迅速上升。与换热流体入口温度600 K相比,换热流体入口温度650 K下的放氢反应完成时间缩短50%;当换热流体流速从1 m/s增加至2 m/s时,放氢反应速率随之增大;增加外环形换热流体层可以大大缩短放氢反应所需时间。与未添加外环形流体层的换热装置的放氢反应时间相比,添加外环形流体层的装置的放氢反应时间可缩短31.25%。 展开更多
关键词 MgH_(2)固态储氢装置 影响因素 反应速率 数值研究
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气调袋包装结合ClO_(2)对鲜切西兰花冷藏保鲜效果影响
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作者 刘校杨 王玉曼 +4 位作者 吴迪 李江阔 程顺昌 武姝彤 魏宝东 《包装工程》 CAS 北大核心 2024年第13期166-174,共9页
目的研究气调袋包装结合ClO_(2)来延缓冷藏条件下鲜切西兰花的黄化和腐烂,以期维持鲜切西兰花营养品质的影响。方法以鲜切西兰花为实验材料,设CK、气调袋包装、0.5g-ClO_(2)和气调袋包装+0.5g-ClO_(2)4个处理。结果在4℃贮藏下,根据品... 目的研究气调袋包装结合ClO_(2)来延缓冷藏条件下鲜切西兰花的黄化和腐烂,以期维持鲜切西兰花营养品质的影响。方法以鲜切西兰花为实验材料,设CK、气调袋包装、0.5g-ClO_(2)和气调袋包装+0.5g-ClO_(2)4个处理。结果在4℃贮藏下,根据品质指标、抗氧化指标及微生物指标可知,相较于单独使用气调袋包装和0.5g-ClO_(2)处理,二者结合处理能更明显地降低鲜切西兰花的质量损失率、腐烂率、相对电导率、丙二醛、O_(2)^(-)·、H^(2)O_(2)含量及菌落总数,维持更高水平的可溶性固形物、叶绿素含量及抗氧化酶活性,具有维持细胞膜完整性,延缓失绿黄化现象及提高抗氧化能力的作用,能最有效地维持鲜切西兰花贮藏品质。结论在4℃下,利用气调袋包装+0.5g-ClO_(2)处理能显著地抑制鲜切西兰花营养成分的损失,提高其抗氧化性,延长贮藏保鲜期,可将保鲜期延长至20d,维持较好的应用价值,且具有较好的经济性与可行性。 展开更多
关键词 鲜切西兰花 气调袋包装 ClO_(2) 低温贮藏
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气体ClO_2对葡萄致腐菌的杀菌及保鲜效果研究 被引量:5
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作者 顾宁 胡双启 +3 位作者 池致超 程仕勇 王春慧 王晋强 《食品研究与开发》 CAS 北大核心 2011年第10期148-151,共4页
以巨峰葡萄为试材,研究气体ClO2浓度和作用时间对接种于葡萄表面的灰葡萄霉菌、青霉和交链孢霉的杀菌效果的影响。结果表明,气体ClO2对接种于葡萄表面的3种霉菌具有良好的杀菌效果,杀菌率随气体ClO2浓度增加和处理时间的延长而提高。在... 以巨峰葡萄为试材,研究气体ClO2浓度和作用时间对接种于葡萄表面的灰葡萄霉菌、青霉和交链孢霉的杀菌效果的影响。结果表明,气体ClO2对接种于葡萄表面的3种霉菌具有良好的杀菌效果,杀菌率随气体ClO2浓度增加和处理时间的延长而提高。在气体ClO2浓度为10 mg/m3,杀菌时间为40 min条件下,灰葡萄霉菌、青霉及交链孢霉均减少了3.23 log.cfu/g以上。同时研究经气体ClO2处理后的葡萄,并将葡萄贮藏在温度为(2±0.5)℃,湿度为(95±1)%的恒温恒湿箱内,在贮藏期内,定期检测葡萄腐烂率、丙二醛的含量及主要营养成分。结果表明:此实验条件下可有效降低果实的腐烂率、减少VC、还原糖和可滴定酸的消耗,使果实保持较好的外观和风味,起到较好的保鲜效果。 展开更多
关键词 ClO_2 葡萄 霉菌 丙二醛
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小剂量重组人白细胞介素-2维持治疗对肿瘤患儿免疫细胞亚群的影响
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作者 雷嘉颖 黎阳 +6 位作者 李春谋 熊稀霖 冯楚础 翁文骏 彭晓敏 周敦华 黄科 《中国实验血液学杂志》 CAS CSCD 北大核心 2024年第2期445-449,共5页
目的:探讨小剂量重组人白介素-2(r IL-2)维持治疗对恶性实体肿瘤患儿免疫细胞亚群的影响及相关副反应。方法:选取2012年12月-2017年11月在本科治疗的22例肿瘤患儿,男女各11例,开始IL-2治疗的中位年龄9(3-16)岁,给予小剂量r IL-2免疫治... 目的:探讨小剂量重组人白介素-2(r IL-2)维持治疗对恶性实体肿瘤患儿免疫细胞亚群的影响及相关副反应。方法:选取2012年12月-2017年11月在本科治疗的22例肿瘤患儿,男女各11例,开始IL-2治疗的中位年龄9(3-16)岁,给予小剂量r IL-2免疫治疗前均完成全部手术及放化疗,其中完全缓解17例,部分缓解5例。化疗结束1个月后开始使用rIL-2小剂量维持治疗:4×10^(5)IU/(m^(2)·d),隔日皮下注射,每周3次,共1年。每3个月行免疫细胞亚群检测至治疗终止,同时随访患儿病情转归及治疗相关副反应。结果:22例患儿经r IL-2治疗后外周血T淋巴细胞(CD3^(+))、自然杀伤细胞(CD3-CD56^(+))、辅助性T细胞(CD3^(+)CD4^(+))、杀伤性T细胞(CD3^(+)CD8^(+))的绝对值及辅助T细胞/抑制T细胞比例均显著升高(均P<0.05),而调节性T细胞(CD4^(+)CD25^(+)CD127^(-))治疗前后的绝对值及比例无显著性差异(P>0.05)。在治疗前获得完全缓解的17例患儿中,14例在治疗后继续保持完全缓解,3例复发,其中2例放弃治疗后死亡;治疗前获得部分缓解的5例患儿经治疗后行PET/CT扫描后评估为完全缓解。在小剂量r IL-2免疫治疗初期,出现注射部位皮疹1例,注射后低至中度一过性发热2例,均给予对症处理后消失,未见治疗相关器官功能损害。结论:小剂量r IL-2维持治疗耐受性良好,可显著改善肿瘤患儿外周血部分抗肿瘤免疫细胞亚群的分布,且不会导致调节性T细胞绝对值及比例的升高。 展开更多
关键词 重组人白介素2 儿童 实体瘤 免疫细胞 调节性T细胞
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甲醇对于PEI-SBA固态胺制备及其性能的影响 被引量:1
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作者 胡海涛 郑岳青 林贻超 《化学试剂》 CAS 2024年第3期33-38,共6页
固态胺材料具有优异的二氧化碳(CO_(2))选择吸附性能,是一类潜在的CO_(2)捕集材料。作为一种重要的固态胺材料,SBA-15负载聚乙烯亚胺(PEI-SBA-15)由于原材料较为廉价且性能优异受到了大量的关注。PEI-SBA-15的制备过程需要采用甲醇溶剂... 固态胺材料具有优异的二氧化碳(CO_(2))选择吸附性能,是一类潜在的CO_(2)捕集材料。作为一种重要的固态胺材料,SBA-15负载聚乙烯亚胺(PEI-SBA-15)由于原材料较为廉价且性能优异受到了大量的关注。PEI-SBA-15的制备过程需要采用甲醇溶剂,而溶剂使用量对于其CO_(2)吸附性能的影响尚无系统研究。系统研究了溶剂使用量对SBA-15负载聚乙烯亚胺的CO_(2)吸附性能的影响。研究结果表明,可以同时实现提升CO_(2)吸附性能和CO_(2)/N_(2)选择性和大幅降低甲醇的使用量。对于降低PEI-SBA-15的制备成本以及提升制备过程环保性具有重要意义。 展开更多
关键词 SBA-15分子筛 CO_(2)吸附 固态胺 聚乙烯亚胺 溶剂作用 碳中和
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氨基功能化气相二氧化硅材料的制备及其吸附二氧化碳性能研究
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作者 李阳 娄飞健 +3 位作者 隋鑫 李克艳 刘飞 郭新闻 《无机盐工业》 CAS CSCD 北大核心 2024年第2期38-43,共6页
采用等体积浸渍法制备了一系列不同聚乙烯亚胺(PEI)负载量的气相SiO_(2)作为CO_(2)吸附剂。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、热重分析仪(TGA)、红外光谱仪(FT-IR)和氮气物理吸附仪对吸附剂的组成结构、PEI实际负载量及热稳... 采用等体积浸渍法制备了一系列不同聚乙烯亚胺(PEI)负载量的气相SiO_(2)作为CO_(2)吸附剂。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、热重分析仪(TGA)、红外光谱仪(FT-IR)和氮气物理吸附仪对吸附剂的组成结构、PEI实际负载量及热稳定性进行了表征。研究了PEI相对分子质量及负载量、环境温度对吸附剂吸附CO_(2)性能的影响,发现当PEI的相对分子质量为600、负载量为50%(质量分数)、温度为100℃时,50%-PEI(600)-SiO_(2)吸附剂对CO_(2)的吸附性能最优,吸附量可以达到130.6mg/g,且在5次循环后性能损失仅为4.8%,表现出了优异的循环性能。同时,该吸附剂成本低廉,在锂电池热失控烟气中CO_(2)吸附方面具有较好的应用前景。 展开更多
关键词 氨基功能化材料 二氧化硅材料 固体吸附剂 二氧化碳吸附
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