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1.
采用单辊甩带快速凝固方法制备过化学计量比稀土贮氢合金La1-xCexNi4.17Mn0.93Al0.1Fe0.4(AB5.6型,x=0~0.5),研究Ce元素部分替代La后对合金微观结构、储氢及电化学性能的影响.XRD分析及储氢性能测试结果表明,快淬过化学计量比合金的相组织均为过饱和CaCu5型结构单相,合金晶胞体积与Ce质量分数基本呈线性关系,其中合金的储氢量随Ce质量分数的增加而减小,而吸放氢平台压力增高.电化学测试和分析结果表明,随Ce质量分数的增加,合金电极的活化性能和放电容量有所降低,但电极循环寿命得到明显提高.当x=0、0.5时,合金电极的最大放电容量为328.9、305.4 mAh/g;当x≥0.3时,经100次循环后,合金电极容量保持率S100由x=0时的80%提高至93%~96%;合金电极的高倍率放电性能(HRD)随Ce质量分数的增加呈先减小后增加的趋势.  相似文献   

2.
在氩气保护下,采用悬浮熔炼法制备La0.7Mg0.3Ni3.4(Al0.3Co0.7)x(x=0,0.2,0.4,0.6)储氢合金,用X射线衍射仪测试相组成,并用MDI Jade 5.0软件分析相组成和晶胞参数,用开口三电极法测试电极电化学性能。结果表明,合金相主要由LaNi5、LaMg2Ni9、La2Ni7和LaNi2.28相组成,随着合金中Al和Co含量的增加,合金放氢平台压下降,最大吸氢量为1.43%(x=0),合金电极最大放电容量Cmax为381mA.h.g-1(x=0),合金电极100个充放循环后的容量保持率S100从53.0%(x=0)增加到57.1%(x=0.3),循环稳定性增强。当x=0.1时,合金电极的电化学动力学性能较好。  相似文献   

3.
研究了x(Zr)及热处理工艺对LaNi(4.2+5x)Mn0.4Al0.4Zrx储氢合金微观组织与电化学性能的影响.结果表明:添加Zr元素后该储氢合金中均出现Zr(Ni,Al,Mn)5第二相,并且第二相的含量随x的增大而增多.当x=0.4时,经热处理后合金中的第二相沿主相晶界呈网状分布,而且其韧性很好.由于第二相对主相起到了防腐蚀保护作用,并降低了充放电过程中晶格畸变引起的合金粉化的速度,从而使循环稳定性显著提高,但由于第二相不是吸氢相,对电化学容量没有贡献,因此它的出现使合金的放电容量降低.  相似文献   

4.
采用高频感应熔炼制备La0.7Ca0.3Ni2.8-xMgx(x=0.1、0.2、0.3、0.4)合金,进行X射线衍射(XRD)实验,气相储氢性能测试和电化学性能测试,分析Mg部分替代Ni对合金的储氢和电化学性能的影响。分析结果表明,合金具有多相结构,当x=0.1、0.3时,合金的主相是CaCu5-型结构的LaNi5相,当x=0.2、0.4时,合金的主相是AB2-型Laves相LaNi2相。随x=0.1、0.2、0.3、0.4合金电极的放电容量(mAh/g)依次为244.7、140.8、257.6、164。当x=0.1时,在2MPa氢压、25℃时,合金La0.7Ca0.3Ni2.7Mg0.1的储氢量达到1.1wt%。  相似文献   

5.
在氩气保护下采用电磁感应熔炼制备La0.7Zr0.1Mg0.2Ni3.4-xCoxFe0.1(x=0.15,0.25,0.35,0.45)合金,研究合金的相结构,以及Co元素部分取代Ni元素对合金的气态储氢性能和电化学性能的影响。结果表明,合金主要由LaNi5、LaNi2以及La2MgNi9相组成。合金电极的最大放电容量分别为346.7mAh/g(x=0.15)、320.3mAh/g(x=0.25)、363.0mAh/g(x=0.35)和313.3mAh/g(x=0.45),经过65个充放电循环后,合金电极的容量保持率从63.0%(x=0.15)增加到80.2%(x=0.35),然后再下降到75.0%(x=0.45)。La0.7Zr0.1Mg0.2Ni3.15Co0.25Fe0.1合金具有较高的高倍率放电性能(HRD1200%=67.3)和较大的极限电流密度(IL=386.8 mA/g),显示出其良好的电化学动力学性能。  相似文献   

6.
用高频感应熔炼方法制备了La0.7Mg0.3-xTixNi2.8Co0.3(x=0.03,0.06,0.09,0.12)系列合金,并对其储氢和电化学性能进行测试.结果表明x=0.06时,合金储氢性能最好,气态储氢容量达1.2wt%,放电容量和比容量分别为336 mA.h.g-1,70.0%.  相似文献   

7.
研究了两种不同配比La-Ni-Al的储氢合金电极的电化学性能。测试结果表明,LaNi4.061Al0.222储氢合金的最大放电容量为292mAh·g1(303 K),且具有较好的倍率性能。同时研究了Zr的添加对LaNi4.061Al0.222Zr(=0-0.2)储氢合金电极电化学性能的影响。结果表明,=0.2时,储氢合金电极具有最大的放电容量309.9mAH·g-1和高倍率放电性能。  相似文献   

8.
利用高频感应熔炉制备摩尔比率为75%La(Ni0.85Co0.15)5-x(Mn0.4Al0.3)x+12.5%Mg2Ni(x=0,0.3,0.6)合金,测试合金的储氢性能,分析Mn、Al元素组合对合金储氢性能的影响。结果发现,合金均由多相组成,其中主相分别是CaCu5型的LaNi5相和PuNi3型的(La,Mg)Ni3相。随着元素(Mn,Al)含量增大,合金电极的循环稳定性有一定的改善,80次循环放电容量保持率从x=0时的59.1%提高到x=0.6时的74.5%。  相似文献   

9.
TiO2-ZnO光催化剂对AB5型储氢合金电化学性能的影响   总被引:1,自引:0,他引:1  
采用溶胶凝胶自燃烧法合成TiO2-ZnO光催化剂,采用XRD和SEM对其形貌结构进行表征,并将其修饰于AB5型储氢合金,制备成催化剂含量(质量分数)为10%和20%的2种光催化储氢合金电极(TZMH电极)。通过恒电流充放电、交流阻抗及阶跃电位测试研究TiO2-ZnO对AB5型储氢合金电极电化学性能的影响。研究结果表明:TiO2-ZnO催化剂成分为ZnO及ZnTiO3,平均粒径约20 nm;相对于AB5合金电极,TZMH电极活化性能和电化学容量略有下降,AB5合金电极初始活化容量为321 mA.h.g-1,10%TZMH电极和20%TZMH电极分别降至300.8 mA.h.g-1和292.9 mA.h.g-1;循环性能得到提高,AB5合金电极、10%TZMH电极和20%TZMH电极以1 C倍率循环100次的容量保持率分别为66.2%,80.0%和83.9%;10%TZMH电极紫外光照射时电荷转移电阻明显小于未受光照时的电阻,阶跃电位测试的响应电流大于未受光照时的响应电流。  相似文献   

10.
采用放电等离子烧结(SPS)工艺制备了Mg2-xNdxNi(x=0,0.1,0.2,0.3)储氢合金.通过X射线衍射(XRD)和扫描电镜(SEM)研究了合金的相结构和表面形貌,利用等容压差法分析测试了合金的压力--组成--温度(PCT)曲线和吸放氢动力学性能,研究了烧结温度、稀土元素Nd对储氢合金微观组织结构和储氢性能的影响,比较了SPS技术与真空感应熔炼法制备的Mg基合金组织结构和储氢性能的异同.结果表明:SPS制备的Mg2-xNdxNi(x=0~0.3)系列储氢合金具有多相结构,储氢合金的吸放氢动力学性能良好;Nd元素有利于Mg合金化,不利于储氢量;烧结温度对储氢量、PCT曲线平台性能有明显影响;当Mg2-xNdxNi系合金中含有Mg和NdMg12相,PCT曲线出现双平台现象;与铸态合金相比,SPS制备的Mg1.7Nd0.3Ni储氢合金的吸放氢动力学性能较好,但储氢容量、放氢率和PCT曲线平台性能更差.  相似文献   

11.
The hydrogen storage of(TiZr_(0.1))_xCr_(1.7-y)Fe_yMn_(0.3)(1.05x1.2,0.2y0.6)alloys,prepared by Ar plasma arc melting,were investigated by X-ray diffraction,pressure-composition-temperature(PCT).The results indicated that all(TiZr_(0.1))_xCr_(1.7-y)Fe_yMn_(0.3)(1.05≤x≤1.2,0.2≤y≤0.6)alloys were determined as C14-type Laves phase,the cell parameters a,c and unit cell volume of(TiZr_(0.1))xCr_(1.1)Fe_(0.6)Mn_(0.3)(1.05≤x≤1.2)alloys increased with increasing the(TiZr)super-stoichiometry from 1.05 to 1.2,and the value of a/c almost unchanged.The hydrogen absorption and desorption plateau pressure decreased from 5.6,4.4–2.6,2.2 MPa with the increase of(TiZr)super-stoichiometry from 1.05 to1.2 at 274 K respectively,and the hydrogen desorption plateau pressure decline was not obvious when the(TiZr)super-stoichiometry exceeded 1.15.The(TiZr_(0.1))_(1.1)Cr_(1.1)Fe_(0.6)Mn_(0.3)alloy had the best comprehensive properties about the maximum and reversible hydrogen storage capacity was 1.79 and 1.45 wt%respectively.The cell parameters a,c and unit cell volume of(TiZr_(0.1))_(1.1)Cr_(1.7-y)Fe_yMn_(0.3)(0.2≤y≤0.6)alloys increased as the ratio of Fe/Cr content decreased.The hydrogenation and dehydrogenation plateau pressure decreased from 4.5,3.4–1.0,0.9 MPa respectively and the maximum hydrogen storage capacity increased from 1.79 to 2.0 wt%as the Fe content reduced from 0.6 to 0.2 at274 K.The maximum and the reversible hydrogen storage capacity were about 2.0 and 1.65 wt%as the ratio of Fe/Cr was 0.13(ie,(TiZr_(0.1))_(1.1)Cr_(1.5)Fe_(0.2)Mn_(0.3)alloy),its relative molar enthalpy of dissociation hydrogen was24.30 kJ/mol H_2.  相似文献   

12.
xLi2MnO3·(1-x)LiNi0.4Co0.2Mn0.4O2(x=0.5) powders were synthesized from co-precipitated spherical metal carbonate,Ni0.2Co0.1Mn0.533(CO3)x.It has been found that the preparation of metal carbonate was si...  相似文献   

13.
【目的】通过固相反应法制备La_(0.7)Ce_xBa_(0.3-x)MnO_3(x=0,0.05,0.10,0.15,0.20)的钙钛矿锰氧化物,研究Ce元素的不同掺杂量对原体系磁热性能的影响。通过Ce元素的掺杂,来调节原体系过高的居里温度以及改善体系的磁热性能。【方法】通过X射线粉末衍射的方式确定其单相结构,并使用振动样品磁强计对钙钛矿样品进行磁性能的测试。【结果】La0.7CexBa0.3-xMnO3(x=0,0.05,0.10,0.15,0.20)的居里温度分别为342.1K,319.8K,270.0K,244.3K和199.7K。在0~2T的外磁场下,该体系的最大磁熵变分别为2.54J/(kg·K),2.32J/(kg·K),2.51J/(kg·K),2.03J/(kg·K)和1.87J/(kg·K),且最大磁熵变都在居里温度附近。【结论】随着Ce元素掺杂量的增加,化合物居里温度逐渐降低;而最大磁熵变则呈先减小后增大又减小的趋势。同时由Arrott曲线判断这5个样品的相变都是二级相变。当Ce元素的掺杂量为0.05~0.10时,该体系的居里温度在室温附近,且最大磁熵变仍保持较大的值。  相似文献   

14.
The influence of heat exchanger structure on hydrogen absorption-desorption performance of hydrogen storage vessel was studied, in which the AB5 (La0.25Ce0.75Ni4.4Al0.1Mn0.1Co0.4) hydrogen storage alloy was used as a typical representative. In order to obtain the data on reaction enthalpy, the PCT curve of the alloy was measured with three different temperatures, and the linear fitting was carried out according to the Van't Hoff relation curve. The SMCR (Spiral-mini-channel Reactor) reactor structure was adopted. The heat transfer method and its simplified model were studied by finite element method to explore the effect of size of heat transfer structure, particularly for heat pipe diameter, on the hydrogen absorption-desorption performance of hydrogen storage alloy in the vessel.  相似文献   

15.
Quaternary alloys Mg2Sn0.4Si0.6−xGex (x=0, 0.02, 0.05, 0.08 0.1, and 0.2) were prepared using induction melting followed by hot-pressing. Relative densities of the sintered samples were over 97% of the theoretical values. Multiple phases were detected in the samples. It was found that the Seebeck coefficient was sensitive to the content of Mg2Ge and a maximum value of about 350 μ V.K−1 was obtained. The introduction of Ge increases the electrical conductivity and the thermal conductivity simultaneously. The mechanism of this phenomenon was discussed. A maximum dimensionless figure of merit, ZT, of about 0.28 was obtained for Mg2Sn0.4Si0.55Ge0.05 at 550 K.  相似文献   

16.
The effect of B sites on the catalytic activities of oxygen evolution reaction(OER)for perovskite oxides La_(0.6)Sr_(0.4)Co_xFe_(1-x)O_(3-δ)(x=0,0.2,0.4,0.6,0.8,1,denoted as LSF,LSCF-28,LSCF-46,LSCF-64,LSCF-82 and LSC,respectively)prepared by a convenient and simple method of electrospinning technique is reported.The prepared La_(0.6)Sr_(0.4)Co_xFe_(1-x)O_(3-δ)catalysts possess almost same crystal structures,similar morphologies(except for the LSC catalyst)and slightly different BET surface areas.Upon the optimization of the Co/Fe atomic ratio,the optimal LSCF-82 catalyst exhibits the OER performance with a low onset potential of 1.541 V,a small Tafel slope of 80.56 mV dec~(-1),a high charge-transfer rate and a large electrochemical surface area in 0.1 M KOH solution.LSCF-82 catalyst exhibits the long-term stability under the catalytic operation condition for 12 h.Such catalytic activity may mainly cause by the synergy of higher catalytic activity Co and lower catalytic activity Fe.Thus,the reasonable optimization of the transition metal composition in B sites for the perovskite oxides is in favor of the improvement of OER performance.  相似文献   

17.
Rare-earth AB5-type La–Ni–Al hydrogen storage alloys are widely studied due to their extensive application potentials in hydrogen isotope storage, hydrogen isotope isolation and hydrogen compressors, etc. Good hydriding/dehydriding kinetics, easily activation, high reversibility are important factors for their practical application. However, their overall hydrogen storage performance, especially plateau pressure and hydrogen absorption/desorption durability need to be further optimized. In this study, the microstructures and the hydrogen storage properties of as-cast, annealed, and melt-spun LaNi3.95Al0.75Co0.3 alloys were investigated. The experimental results of XRD and SEM showed that all alloys contained a pure CaCu5 type hexagonal structure LaNi4Al phase. The cell volume increased in an order of annealed ?> ?melt-spun ?> ?as-cast, resulting in a lower hydrogen absorption/desorption plateau pressure and a more stable hydride phase. The hydrogen storage capacity of three alloys was almost the same. The slope factor of the annealed and melt-spun alloys is smaller than the as-cast alloy, indicating that heat-treatment process can make the alloys more uniform. For the cycle stability of the alloys, the hydrogen absorption rate of the annealed alloy and melt-spun alloy was much faster than that of the as-cast alloy after 500 cycles. The melt-spun alloy showed high pulverization resistance during hydrogen absorption/desorption, and exhibited an excellent cycling retention of 99% after 500 cycles, suggesting that melt-spinning process can enhance the cycle stability and improve the cycle life of the alloy.  相似文献   

18.
Magnetic Co1-xNixFe2O4 nanoparticles (NPs) were successfully synthesized via a solvothermal method using ethylene glycol as solvent.The samples were characterized by X-ray diffraction (XRD),field emiss...  相似文献   

19.
The volatile organic compounds (VOCs) emitted from the sources of industries are a kind of main pol-lutants to the atmosphere. The Environmental Protec-tion Agency (EPA) of the United States lists more than 300 VOC pollutants. 70% of the toxic compounds t…  相似文献   

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