1)lithium ion-sieve锂离子筛
1.Synthesis and properties characterization of spinel-type lithium ion-sieve precursor;尖晶石型锂离子筛前驱体的制备和性能表征
2.The exchange performance of the lithium ion-sieve is studied,which was synthesized with LiOH and reduction-ammoniacal leaching residue of polymetallic nodules.针对以LiOH和多金属结核还原氨浸渣为原料合成的正尖晶石结构的锂离子筛的吸附性能展开研究。
英文短句/例句
1.Synthesis of spinel lithium manganate as lithium ion sieve尖晶石型锰酸锂锂离子筛的合成研究
2.Preparation and Lithium Uptake Properties of Lithium Ion Sieves Derived from Spinel-type Manganese Oxide尖晶石型锰氧化物锂离子筛制备及提锂性能
3.Research progress on preparation methods for precursors of lithium ion-sieve锂离子筛前驱体制备方法的研究进展
4.Study on Separation Properties of Lithium Ion-Sieve Material and Its Mechanism;锂离子筛分材料的筛分性能及其机理探讨
5.Influencing Factor of Lithium Extraction in Lithium Ion Sieve Precursor from Ocean Polymetallic Noddle大洋多金属结核制备锂离子筛前驱体中锂脱出的影响因素
6.Lithium Ion Sieve Precursor--Lithium/Manganese Oxide Preparation from Ocean Manganese Nodule利用深海锰结核制备锂离子筛前驱体—锂锰氧化物
7.Study on Synthesis of Lithium Ion-Sieve Material by Sol-Gel;溶胶—凝胶法合成锂离子筛分材料的研究
8.Preparation of Three Dimensional Ordered Macroporous Titanium Oxide "Lithium Sieve" and Characterization of Adsorptive Properties三维有序大孔钛氧“锂离子筛”制备与吸附性能表征
9.Synthesis of Spinal Ni-doped Manganese Oxide Lithium Ion-sieve by Sol-gel Method溶胶-凝胶法制备尖晶石结构镍锰氧化物型锂离子筛
10.Preparation and lithium adsorption of titania ion-sievesTiO_2离子筛的合成及锂吸附性能研究
11.Study of Modified Mesopore Molecular Sieves Doped and PVDF-Based Electrolyte Membrane for Lithium-Ion Batteries改性介孔分子筛填充PVDF基锂离子电池膜的研究
12.Study on the Granulation of Ion-Sieve Type Lithium Adsorbent and Its Capability;离子筛型锂吸附剂的成型及其性能研究
13.Research Progress on Structure and Doping of Lithium Manganese Oxide Ion-sieve锂锰氧化物离子筛结构和掺杂研究进展
14.Studies on Ion-Exchange Properties of Low Silica X Zeolite (LSX);低硅铝X型沸石分子筛(LSX)的锂离子交换性能研究
15.Study on Lithium Vanadium Phosphate and Lithium Iron Phosphate Cathode Materials for Lithium Ion Batteries;磷酸钒锂和磷酸铁锂锂离子电池正极材料研究
16.Study on LiFePO_4 as Cathode Materials for Li-ion Batteries;锂离子电池正极材料磷酸铁锂的研究
17.Determination of high content Li in cathode materials of Li-ion battery by FAAS原子吸收法测定锂离子电池材料中高含量锂
18.Development of alkali ion source for Li~+ ion-attachment mass spectrometry离子吸附质谱中锂离子源的研制(英文)
相关短句/例句
lithium ion sieve锂离子筛
1.6O4 of lithium ion sieve was prepared with a selective starting reagents MnCl2·4H2O and LiOH·H2O by soft chemistry route such as sol-gel, hydrothermal and heat treatment.以MnCl2·4H2O,LiOH·H2O等试剂为初始原料,采用溶胶-凝胶、水热处理、固化等软化学合成步骤制备了锂离子筛前驱体Li1。
3)Spinel lithium ion-sieve尖晶石锂离子筛
4)titanium oxides"lithium sieve"钛氧"锂离子筛"
5)lithiated molecular sieve锂化分子筛
1.The experiment results show that the lithiated molecular sieve can replace the 4A molecular sieve as dehydrant, with far less introduction of foreign ions.为能够有效、经济且工艺简单地去除锂离子电池非水电解液中的微量水 ,根据离子交换原理对普通 4A分子筛进行锂化处理制备锂化分子筛。
6)lithium ion锂离子
1.Preparation and property of gel membranes containing porous PVDF-HFP and crosslinked PEG for lithium ion conduction;含PVDF-HFP多孔骨架和交联PEG的锂离子凝胶膜制备与性能
2.SnO_2/laolin composite as negative electrode material for lithium ion batteries;SnO_2/高岭土复合材料作为锂离子负极材料的研究
3.The crystal structure and lithium ion adsorption capacity were characterized by X-ray diffraction(XRD) and adsorption kinetics measurement,respectively.采用商品二氧化钛(P25)经过改性、浸渍、焙烧、酸洗和干燥过程制备离子筛,并通过X-射线衍射对样品晶相结构进行了表征,进一步对锂离子的吸附性能进行了研究。
延伸阅读
锂离子电池分子式:CAS号:性质:以碳作负极材料,以含锂过渡金属氧化物作正极材料,以有机电解液为电解质的蓄电池体系。该电池是在充分研究了锂离子在碳材中嵌入与脱嵌机理的基础上获得发展的,由于以碳代锂一定程度上改善了锂蓄电池的安全性。该电池所用的碳材料有石油焦炭、石墨、碳纤维和碳微珠等。正极材料有LiCoO2、LiNiO2和LiMn2O4等,充电时锂离子由正极迁移到负极,放电时再由负极迁移到正极,故也称摇椅式蓄电池。锂离子电池除了比能量高、安全性较好外,其充放电寿命也较长。1992年日本首先推出商品电池用作移动电话、8mm摄像机的电源。