Optimization of Technological Conditions in Reduction of Lithium by Ferro-silicon Alloy

  • 以硅铁为还原剂制取金属锂的工艺优化
  • 来源:互联网摘选更新时间:2026-07-13 06:30:40

  • 重点词汇
  • reductionn.减少;降低;折扣;还原;缩图;
  • lithiumn.<化>锂;
  • conditionsn.(居住、工作或做事情的)环境;(影响某事发生的)物质环境;<保险>承保险别;条件( condition的名词复数 );状况;健康状况;环境;
  • byprep. 在…旁边;表示方式;由于;经过;到…之前;
  • inprep. 在里面;在(某范围或空间内的)某一点;在(某物的形体或范围)中;在…内;在…中;进入
  • technologicaladj.技术上的;工艺(学)的;因技术革新而造成的;
  • alloyn.合金;(合金中的)劣等金属;搀杂品;成色;
  • optimizationn.最佳化,最优化;优选法;优化组合;
  • ofprep. 关于;属于…的;由…制成;
  • 相关例句
1、

The freedom lithium adsorbed by the lithium boron compound fibers can discharge completely, and the lithium constituted the lithium-boron compound fibers can discharge nearly more than 30%.

Li(B)合金中吸附的金属锂能够全部放电,而且组成Li-B化合物纤维基体的锂有超过30%的锂也可以放电。

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2、

Preparation of High-Purity Lithium from Primary Product of Li_2CO_3 in Qarhan Salt Lake

青海盐湖初级碳酸锂产品制备高纯金属锂研究

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3、

Screening and Characteristics of Microorganisms Enriching Lithium from Soil of Li-mining Area

富集金属锂微生物菌株的筛选及其富集特性的研究

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4、

The Reductive Reaction of Metallic Lithium Caused Aromatic Aldehyde Affected by Supersonic Wave

超声波作用下金属锂诱发的芳香醛的还原偶联反应

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5、

Elastic Properties of Hcp Lithium and Hydrogen Doped Lithium under Pressure

压力作用下六角密堆结构金属锂及掺氢体系的弹性性质

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6、

The metal lithium of 99% content was produced in this experiment carried on the conditions of temperature of 1273K and time of 60 minute.

实验在温度为1273K、时间为60分钟的条件下产出的金属锂的纯度为99%

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7、

During the three experiments separately performed, through nozzles SF6 gas was sprayed at a pressure difference of 0.06 MPa into an air-tight molten pool reactor of 430 ℃ initial temperature containing liquid-state metal lithium.

在分别进行的3个实验中,将压差为0.06MPa的六氟化硫气体经喷嘴喷入装有液态金属锂,初温为430℃的密闭熔池反应器内。

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8、

Influence of pressure and impurity hydrogen on the elastic property of metal lithium

压力及杂质氢对金属锂弹性特性的影响

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9、

When used in lithium second battery with lithium, the initial discharge capacity of poly ( 1 aminoanthraquinone) is 218.3 mAh · g-1, it can keep excellent cycle efficiency after 25 charge discharge cycles.

实验表明,与金属锂组成二次锂电池后,聚1-氨基蒽醌达到了218.3mAh·g-1的首次放电容量,经过25次循环后仍可保持较高的充放电效率。

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10、

Using X-ray absorption fine structure ( XAFS), the author analysed the valence and coordination number changes of Ni atoms in the process of lithium-ion inserting, inferring the possible process of lithium-ion reducing transition metal oxides.

采用X-射线吸收精细结构(XAFS)分析在锂离子嵌入过程中Ni原子的化合价和配位数的变化,推测金属锂还原过渡金属氧化物的过程。

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11、

Preparation of metal Li target used in fast neutron study

快中子金属锂靶的制备方法

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12、

The results show that initial discharge capacity is 400.02 mAh · g – 1 with metal Li as the counter electrode and the initial coulombic efficiency is 50%.

试验显示,材料改性后,当以金属锂为对电极时,首次放电容量达400.02mAh·g–1,首次库仑效率为50%;

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13、

Pressure Effects on the Band Structure of BCC Lithium with Substitutional Hydrogen Defect

压力下替位氢对金属锂能带结构的影响

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14、

Preparation of High Purity Lithium in Industry Scale by Vacuum Distillation

真空蒸馏法制取高纯金属锂工业试验

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15、

The results showed that metallic nickel particles in nano-size were acquired from deoxidizing the NiO electrode by metallic lithium, illuminating that the ECM way is feasible to synthesize the metallic nickel particles.

研究结果表明,商品NiO粉在锂电池中被金属锂还原的产物,得到了纳米尺度的金属Ni,说明这种电化学研磨合成具有磁性的金属Ni的纳米颗粒方法是可行的。

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16、

The cathode thin film of Ag 0.5V 2O 5 was fabricated using pulsed laser deposition ( PLD), and the metallic lithium anode thin film was prepared via vacuum thermal evaporation.

以脉冲激光沉积法(PLD)制备的非晶态Ag05V2O5薄膜为阴极,真空热蒸发法制备的金属锂为阳极,LiPON薄膜为电解质,成功地制备了一个新的Li/LiPON/Ag05V2O5全固态薄膜锂电池。

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17、

Ab initio Study of Adsorption and Surface Diffusion of a Hydrogen Atom Near the Step on a Stepped Lithium Surface

氢原子在金属锂表面台阶附近吸附和表面扩散行为的AB INITIO研究

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18、

Application: row material of lithium metal.

用途: 主要用于制取金属锂的原料.

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19、

Two kinds of modifiers ( BaO and SrO) were added into the cathode to improve the discharge performance.

并研究了SrO和BaO这两种添加剂对该种固态电池电化学性能的改进作用。

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20、

Aluminum is far cheaper than lithium, and solid-state batteries could be 'printed' like computer chips, a much more efficient process than the layering and rolling of metal and gel that produces lithium-ion batteries.

铝比锂便宜得多,固态电池则可以像计算机芯片一样压制出来,比起锂聚电池生产所需的金属分层和轧制工艺效率高多了。

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