关键词云

成果统计

合作作者[TOP 5]

访问统计


  总访问量
 1487

  访问来源
    内部: 9
    外部: 1478
    国内: 1199
    国外: 288

  年访问量
 40

  访问来源
    内部: 0
    外部: 40
    国内: 35
    国外: 5

  月访问量
 27

  访问来源
    内部: 0
    外部: 27
    国内: 24
    国外: 3

访问量

访问量

1. 纳米微粒制备技术 [786]
2. 卤水提锂的萃取体系概述 [713]
3. 硼酸盐晶须在复合材料中的应用 [519]
4. 硼酸盐晶须改性环氧树脂性能研究 [488]
5. 水处理中膜分离技术的应用 [438]
6. 盐湖卤水提硼方法的研究概述 [411]
7. 纳滤法用于盐湖卤水镁锂分离的初步实验 [391]
8. 相变温度可调的无机混盐体系相变储能材料 [386]
9. 盐湖卤水协同萃取提锂及基础热力学性质 [364]
10. 一里坪盐湖综合开发利用项目有序进行 [292]
11. 察尔汗盐湖铁路以东固体钾矿的溶采试验 [235]
12. SCD-120阳离子交换树脂对镁离子的吸附及基础热力学性质 [228]
13. 硝酸熔盐储热材料在太阳能利用中的研究进展 [222]
14. Effects of pH and salinity on the separation of magnesium and lith.. [193]
15. 纳滤技术在盐湖卤水镁锂分离领域的研究进展 [181]
16. Solar salt doped by MWCNTs as a promising high thermal conductivit.. [181]
17. Recovery of both magnesium and lithium from high Mg/Li ratio brine.. [179]
18. 面向太阳能光热发电的NaNO_3-KNO_3-Mg(NO_3)_2三元硝酸熔盐 [169]
19. Study on Phase Transition Process of NaCl-H2O and NaCl-KCl-H2O at .. [166]
20. 石灰法制备氢氧化镁工艺研究 [163]
21. Solid-Liquid Phase Equilibrium in the Ternary System MgSO4 + MgCl2.. [159]
22. Study of the Solubility, Supersolubility and Metastable Zone Width.. [159]
23. 一里坪硫酸镁亚型盐湖钾镁混盐转化-浮选中物相行为 [152]
24. 氯离子对Solar Salt熔盐热物性的影响及结构分析 [147]
25. Na_2S_2O_3·5H_2O-CH_3COONa·3H_2O相变储能材料的性能及改性 [147]
26. 硼镁肥料及其国家标准编制进展 [145]
27. 基于盐湖资源的硝酸熔盐储能材料性能研究 [142]
28. 基于智能气象观测技术的卤水蒸发速率研究进展 [141]
29. 氯离子对Solar Salt熔盐热物性及腐蚀性的影响 [137]
30. 水溶性富勒烯对U(Ⅵ)在氧化多壁碳纳米管上吸附的影响 [130]
31. 高纯硝酸熔盐的制备及热物性能研究 [128]
32. NaCl-H_2O和NaCl-KCl-H_2O溶液低温相变过程的原位XRD研究 [127]
33. 杂质SO_4~(2-)对Solar Salt熔盐热物性的影响及分析 [125]
34. 煤化工高浓盐水资源化利用新工艺研究 [120]
35. “盐湖化学”专刊编后语 [118]
36. 碳酸锂在碳酸钠溶液中的溶解度与热力学 [118]
37. 旋流—浮选耦合生产氯化钾 [111]
38. 热分析法研究六水硝酸镁的脱水过程与机理 [97]
39. 偏硼酸锂、五硼酸锂溶液体积性质及离子作用模型 [96]
40. Saline lakes on the Qinghai-Tibet Plateau harbor unique viral asse.. [95]
41. 纳滤法用于铝锂分离的初步研究(英文) [93]
42. 基于电渗析法的盐湖卤水中锂富集影响因素研究 [91]
43. 纯度对NaNO_3-KNO_3-Mg(NO_3)_2三元熔盐储能材料热物性及腐蚀性能的影.. [89]
44. Recovery of Lithium from Lepidolite by Sulfuric Acid and Separatio.. [89]
45. Core-Shell Structure and X-Doped (X = Li, Zr) Comodified O3-NaNi0... [88]
46. Thermodynamic Properties for Aqueous MgB4O7 Solution at 298.15 K [87]
47. LiTFSI_(0.6)-LiODFB_(0.4)+LiPF_6电解液在锂金属电池中的应用 [86]
48. Phase Diagrams of Binary Systems Mg(NO3)(2)-KNO3, Mg(NO3)(2)-LiNO3.. [85]
49. Recovery of Lithium from Lepidolite by Sulfuric Acid and Separatio.. [82]
50. Revealing the Multiple Influences of Zr Substitution on the Struct.. [82]
51. Thermodynamic evaluation and optimization of LiNO3-KNO3-NaNO3 tern.. [81]
52. Phase Equilibrium in Aqueous Systems Containing Magnesium Borate [81]
53. The application of nanofiltration membrane for recovering lithium .. [81]
54. Design and synthesis of a solvent-dependent fluorescent probe for .. [81]
55. Solid-Liquid Phase Equilibria of the Aqueous Ternary System (Li2CO.. [80]
56. Preparation of LiOH through BMED process from lithium-containing s.. [80]
57. 碳酸锂在氯化钠溶液中溶解度的测定 [79]
58. Thermodynamic description of the quaternary Mg (NO3)(2)-KNO3-NaNO3.. [79]
59. Volumetric properties for the ternary system (CaCl2-SrCl2-H2O) and.. [79]
60. 无水硝酸镁制备过程中的水解特性 [78]
61. An integrated membrane process for preparation of lithium hydroxid.. [78]
62. Preparation and Thermophysical Properties of High Thermal Conducti.. [78]
63. 一种8-羟基喹啉衍生物的制备及其对Mg2+的检测 [78]
64. 高镁锂比盐湖镁锂分离与锂提取技术研究进展 [78]
65. Raman spectroscopy study for the systems (LiCl-H2O and LiCl-MgCl2-.. [78]
66. Synthesis, Crystal Structure, and Thermal Property of a Potassium-.. [77]
67. 一里坪盐湖夏季卤水25℃等温蒸发 [76]
68. Nitrate based nanocomposite thermal storage materials: Understandi.. [75]
69. Highly selective fluorescence probe with peptide backbone for imag.. [75]
70. Improving thermal energy storage and transfer performance in solar.. [75]
71. The Application of Nanofiltration for Separating Aluminium and Lit.. [74]
72. Nanofiltration Membrane Characterization and Application: Extracti.. [74]
73. Improved High Rate Performance and Cycle Performance of Al-Doped O.. [74]
74. An integrated membrane process for preparation of lithium hydroxid.. [74]
75. Nitrate based nanocomposite thermal storage materials Understandin.. [72]
76. A new acetal as a fluorescent probe for highly selective detection.. [72]
77. Phase equilibria in the ternary systems (MgSO4+MgB4O7+H2O) and (Mg.. [72]
78. Borate Species, Volumetric and Transport Properties of Aqueous Lit.. [71]
79. A nanofiltration membrane fabricated on a surfactant activated sub.. [71]
80. 纳滤膜对高镁锂比盐湖卤水镁锂分离性能研究 [71]
81. Recovery of both magnesium and lithium from high Mg Li ratio brine.. [71]
82. Enrichment of lithium from salt lake brine by forward osmosis [71]
83. Novel high specific heat capacity ternary nitrate_nitrite eutectic.. [69]
84. 膜特征对锂资源提取过程的影响 [69]
85. Multiple Influences of Nickel Concentration Gradient Structure and.. [67]
86. Nanofiltration Membrane Characterization and Application Extracti.. [66]
87. 氧化石墨烯改性聚酰胺膜研究进展 [59]
88. Fabrication of a novel composite nanofiltration membrane with exce.. [56]
89. Core-Shell Structure and X-Doped (X = Li, Zr) Comodified O3-NaNi0... [54]
90. 纳米粒子掺杂太阳盐复合材料热物性研究 [50]