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  总访问量
 575

  访问来源
    内部: 10
    外部: 565
    国内: 398
    国外: 177

  年访问量
 13

  访问来源
    内部: 0
    外部: 13
    国内: 11
    国外: 2

  月访问量
 11

  访问来源
    内部: 0
    外部: 11
    国内: 10
    国外: 1

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1. Adsorption of iodide ions on a calcium alginate-silver chloridecom.. [610]
2. Strontium and calcium ion adsorption by molecularly imprinted hybr.. [573]
3. The Exploitation and Utilization of Magnesium Resources in Salt La.. [549]
4. Magnesium carbonate precipitation under the influence of polyacryl.. [522]
5. Boron adsorption using a new boron-selective hybrid gel and thecom.. [499]
6. Boron adsorption mechanism of a hybrid gel derived fromtetraethoxy.. [474]
7. Rubidium and cesium ion adsorption by an ammoniummolybdophosphate-.. [458]
8. Effect of Octadecyl Amine (ODA) on the Complex Titration of Magnes.. [404]
9. 表面活性物质对镁盐结晶行为的影响及表面修饰 [256]
10. 吸附法从盐湖卤水中提锂的研究进展 [248]
11. A novel method for removal of boron from aqueous solution using so.. [223]
12. Preparation of Fe3O4-octadecyltrichlorosilane for Removal of Methy.. [215]
13. 离子筛型锂吸附剂吸附法从盐湖卤水/海水中提锂的研究进展 [202]
14. Boron adsorption using a new boron-selective hybrid gel and the co.. [192]
15. Rubidium and cesium ion adsorption by an ammonium molybdophosphate.. [184]
16. Competitive adsorption of methyl orange and ethyl orange by AB-8 r.. [170]
17. Competitive adsorption of Li, K, Rb, and Cs ions onto three ion-ex.. [168]
18. Facile Synthesis of Fe3O4-N-[(3-Trimethoxysilyl)propyl]ethylenedia.. [168]
19. Adsorption of iodide ions on a calcium alginate-silver chloride co.. [165]
20. Effect of Octadecyl Amine (ODA) on the Complex Titration of Magnes.. [163]
21. Iodide adsorption from aqueous solutions by bis(trimethoxysilylpro.. [162]
22. 食品级氯化钾制备工艺和杂质检测方法的研究进展 [157]
23. Comparative Study of the Competitive Adsorption of Mg, Ca and Sr I.. [152]
24. 混合醇萃取剂从浓缩盐湖卤水中萃取提硼的实验研究 [149]
25. 吸附法去除电解用氯化钠中微量碘离子 [143]
26. 氢氧化铝基锂吸附剂从卤水中吸附锂的机理 [137]
27. Boron adsorption mechanism of a hybrid gel derived from tetraethox.. [134]
28. 树枝状纤维形纳米球催化剂的研究进展 [122]
29. 铝基锂吸附剂从卤水中吸附提锂的研究及进展 [116]
30. 微波技术在吸附分离中的应用研究进展 [99]
31. 全球锂资源综合评述 [98]
32. The performance and mechanism of recovering lithium on H4Ti5O12 ad.. [73]
33. Enhancing the Li+ adsorption and anti-dissolution properties of Li.. [71]
34. Trace doping by fluoride and sulfur to enhance adsorption capacity.. [70]
35. Mg~(2+)掺杂对H_(1.6)Mn_(1.6)O_4锂离子筛吸附性能的影响 [68]
36. Interactions between adsorbents and adsorbates in aqueous solution.. [68]
37. K-gradient doping to stabilize the spinel structure of Li(1.6)Mn(1.. [67]
38. Experimental and theoretical investigations of Cs+ adsorption on c.. [60]
39. Hydrothermal synthesis and adsorption behavior of H4Ti5O12 nanorod.. [58]
40. The adsorption behavior of lithium on spinel titanium oxide nanosh.. [57]
41. Dyes Adsorption onto Fe3O4-Bis(trimethoxysilylpropyl)amine Composi.. [57]
42. Enabling highly structure stability and adsorption performances of.. [56]
43. Highly Lithium Adsorption Capacities of H1.6Mn1.6O4 Ion-Sieve by O.. [55]
44. 磺酸基树脂对铜、铅、镉离子的吸附行为 [53]
45. Preparation of Fe3O4-octadecyltrichlorosilane for Removal of Methy.. [47]
46. Synthesis of H4Mn5O12 Nanotubes Lithium Ion Sieve and Its Adsorpti.. [38]
47. (001) plan manipulation of alpha-Fe2O3 nanostructures for enhanced.. [34]
48. Surface trace doping of Na enhancing structure stability and adsor.. [26]