共查询到18条相似文献,搜索用时 78 毫秒
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Ga-Nd合金对磁性材料及半导体材料的研制是非常有用的。本文详细地研究了采用低熔点的镓作为阴极,从KCl-NdCl_3熔盐中电解制备廉价Ga-Nd合金的工艺条件。 本研究采用KCl-NdCl_3熔盐体系进行电解。KCl为分析纯。NdCl_3由Nd_2O_3(>99.99%)加过量NH_4Cl混合后,在大瓷蒸发皿中于350℃进行搅拌反应,直至产物完全溶于水。用滴定法确定原料中NdCl_3的含量。以金属镓作阴极(纯度为99.99wt%),阴 相似文献
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在725℃温度下,对MgCl2-KCl-NaCl-CaCl2熔盐体系进行电解.研究结果表明,镁电解过程中阴极过电压ηc只有12~51 mV,电解过程的过电压主要是由阳极引起的;阴极还原过程的极限扩散电流密度id为1.56 A/cm2;镁离子阴极放电反应的电子转移数为1.98;2个电子转移步骤之前存在着前置转化步骤MgCl+ Mg2++C1-.应用循环伏安法对4种不同配比下的镁离子行为进行的研究结果表明,CaCl2质量分数从10%增加到40%,维持MgCl2质量分数为10%以及NaCl与KCl的质量比为6: 1不变,随着CaCl2质量分数的增加,镁离子结合成不易移动的络合阴离子,镁离子迁移的电流分数减小,镁离子的析出电位从-1.595 V逐渐负移至与钙、钠共同沉积,阴极峰值电流Ipc值逐渐增大,阳极峰值电位与阴极峰值电位之差的绝对值|φpa-φpc|逐渐增大,阴极放电反应的可逆性逐渐降低. 相似文献
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以LiCl、LiCl+SnCl2等为熔盐电解质,采用电解石墨的方法制备了纳米碳管和纳米线,并运用TEM、XRD、EDS等分析手段对产物的形貌和结构进行了表征.结果表明,熔盐成分对电解产物的形态和性质有显著影响.在LiCl熔盐中可得到直径为75~100nm的纳米碳管;在LiCl+1.0%SnCl2熔盐中可生成β-Sn填充的纳米碳管.XRD测试表明,电解制备的β-Sn纳米线经氧化处理后在碳管内可转变为SnO2,其晶体结构为四方晶系,直径为20~50 nm.电解过程中Li+在石墨阴极上反应生成的LiC6化合物对纳米碳结构的形成具有重要作用. 相似文献
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通过扫描电镜和电子探针分析钙熔盐电解中破损石墨阳极的结构和杂质,探索了其破损机理,认为主要是由于孔隙存在导致氧化和孔隙吸附电解质,电解质因水解、脱水等过程使其周围的石墨阳极颗粒受应力不平衡而发生破损.通过实验研制出适合于钙熔盐电解过程用的石墨阳极具有抗氧化性能的涂层,并对涂层进行了XRD,SEM分析和氧化失重实验.实验表明该涂层在680~750℃下成硼玻璃态,能渗透到石墨阳极孔隙中,涂层表面致密无裂纹且附着力强,因而具有较好的抗氧化能力.该涂层是一种适合钙熔盐电解的、性能优良的石墨阳极涂层. 相似文献
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用Ce作为模拟金属,开展了NaCl-KCl-CeCl3熔盐体系电解精炼提纯金属Ce的研究,为乏燃料干法后处理提纯U, Pu等金属提供了研究基础。研究了CeCl3浓度、电解温度和阴极电流密度对电解精炼Ce的收率和电流效率的影响,得到优化的工艺条件为:CeCl3浓度为20%~25%,电解精炼温度为900~950℃,阴极电流密度为0.35~0.45 A·cm^-2,得到了成型致密的金属铈锭,产品的收率大于70%。杂质元素Al, Fe, Cu, Cr,Mn的含量均有大幅度的下降,尤其是Fe的去除效果明显从1300×10^-6降低为200×10^-6。 相似文献
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A new technology for preparation of low cost Mg-Li alloys was studied. The alloys were prepared by electrolysis in molten LiCl-KCl (weight ratio is 1:1) electrolyte with Mg rod severing as the consumed cathode. Main factors that affect current efficiency were investigated, and optimal electrolysis parameters were obtained. Mg-Li alloys with low lithium content (about 25%) were prepared by the unique method of a higher post-thermal treatment temperature after electrolysis at low temperature. The results showed that the electrolysis can be carried out at low temperature, which resulted in reducing preparation cost due to energy saving.The new technology for the preparation of Mg-Li alloy by electrolysis in molten salt was proved to be feasible. 相似文献
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The electrochemical behaviour of lanthanum fluoride dissolved in molten lithium fluoride and in eutectic mixture LiF-CaF2 was investigated by cyclic voltammetry and laboratory electrolysis. The cyclic voltammetry experiments were carried out at
900°C and 800°C, respectively, in a graphite crucible (counter electrode). Several types of working electrodes (Mo, W, Ni
and Cu) were used. Ni/Ni(II) was used as a reference electrode. Laboratory electrolysis was carried out in the system LiF-CaF2-LaF3 at 800°C in galvanostatic (j
c = −0.21 A cm−2) and potentiostatic (E = 0.87 V) regimes. In both cases, nickel served as the cathode and graphite as the anode. It was found that no new separate
reduction peak occurred on the molybdenum or tungsten electrodes in the investigated systems. When copper or nickel electrodes
were used, new peaks corresponding to the reduction of lanthanum(III) to lanthanum metal appeared. This can be explained by
the formation of alloys or intermetallic compounds of lanthanum with copper or nickel. X-ray microanalysis showed that lanthanum
was electrodeposited together with calcium under formation of intermetallic compounds with the electrode materials in the
galvanostatic regime. In the potentiostatic regime, mainly lanthanum was deposited, which enabled its separation. 相似文献
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A. V. Barabanova P. V. Afanas'ev B. G. Kostyuk V. V. Lunin 《Russian Chemical Bulletin》1996,45(12):2698-2702
Phosphates of K and Zr of a layered, microporous structure have been obtained by the molten salt method in a potassium nitrate medium in the temperatures range 573–823 K. Dependences of the product composition on the P/Zr atomic ratio and the temperature of synthesis were studied. The substances obtained have been characterized by XRD,1H and31P NMR, and IR spectroscopy, and scanning electron microscopy.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 12, pp. 2847–2851, December, 1996. 相似文献
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《Journal of Energy Chemistry》2020,(1)
Silicon nanowires of high purity and regular morphology are of prime importance to ensure high specific capacities of lithium-ion batteries and reproducible electrode assembly process. Using nickel formate as a metal catalyst precursor, straight silicon nanowires(65–150 nm in diameter) were directly prepared by electrolysis from the Ni/SiO_2 porous pellets with 0.8 wt% nickel content in molten CaCl_2 at900 °C. Benefiting from their straight appearance and high purity, the silicon nanowires therefore offered an initial coulombic efficiency of 90.53% and specific capacity of 3377 m Ah/g. In addition, the silicon nanowire/carbon composite exhibited excellent cycle performance, retaining 90.38% of the initial capacity after 100 cycles. Whilst further study on the charge storage performance is still ongoing, these preliminary results demonstrate that nickel formate is an efficient and effective metal catalyst precursor for catalytic preparation of high purity straight silicon nanowires via the molten salt electrolysis, which is suitable for large-scale production. 相似文献
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采用固相法合成了纯的LiFePO4, 并通过两种不同的方法合成了不同CaB6含量的复合物LiFePO4/CaB6. 对这些产物进行了粒度、形貌、电导率、振实密度、X射线衍射和充放电性能的研究. 实验结果表明, CaB6的掺入虽然没有明显地提高产物的比容量, 但却显著地增加了产物的振实密度和电导率. 第二种方法合成的产物性能更好, 其电导率提高了5个数量级, 振实密度提高了65%. 相似文献
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利用硝酸根-硝酸钾(摩尔比0.62:0.38)的熔盐体系作反应介质,以CeO~2,Ce(SO~4)~2,Cu(CF~3CO~2)~2,Co(CF~3CO~2)等为催化剂,在160℃和6.0MPa条件下甲烷被氧化成丙酮和/或三氟醋酸甲酯。甲烷的氯化则可在含氯化铜的氯化铝-氯化钠(摩尔比1:1)的熔盐介质中进行,硫酸银的引入可提高甲烷转化率和一氯甲烷的选择性。 相似文献
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熔盐热裂解大豆油的特性研究 《燃料化学学报》2013,41(11):1316-1321
以大豆油为原料,在ZnCl2-KCl熔融盐体系中考察了进料速量、载气流量、反应温度及进料量对其热裂解的影响。采用气相色谱-质谱联用仪(GC-MS)表征生物油组成。结果表明,进料速量和载气流量主要通过改变大豆油的反应停留时间影响裂解效果。当进料速率为1.2 g/min及不通载气时,大豆油停留时间较长,裂解较充分;随着温度升高,生物油得率增大,含氧化合物含量及酸值上升;随着进料量增大,生物油得率稳定在70%左右,但脱羧效果有所下降。经过催化加氢,生物油性质得到了明显的改善,组分分布与0#柴油分布大体相似。 相似文献