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成果统计

合作作者[TOP 5]

访问统计


  总访问量
 1202

  访问来源
    内部: 2
    外部: 1200
    国内: 991
    国外: 211

  年访问量
 249

  访问来源
    内部: 0
    外部: 249
    国内: 220
    国外: 29

  月访问量
 99

  访问来源
    内部: 0
    外部: 99
    国内: 98
    国外: 1

访问量

访问量

1. 氯氧镁水泥混凝土路面力学性能研究 [342]
2. 氯氧镁水泥的水化历程及动力学机理研究 [333]
3. Core-shell structured alpha-Fe2O3@CeO2 heterojunction for the enha.. [221]
4. 硫、氯氧镁混合胶凝体系凝结硬化性能及微观结构 [204]
5. Synthesis of X-architecture CeO2 for the photodegradation of methy.. [195]
6. 原料配比对氯氧镁水泥稳定砾石土强度的影响研究 [193]
7. 外加剂对氯氧镁水泥水化历程的影响Ⅰ:矿物掺合料 [191]
8. Effect of morphology on adsorption kinetics of magnesium oxide for.. [190]
9. 氯化钾对硫氧镁水泥性能的影响 [187]
10. 硼酸对硫氧镁水泥力学性能的影响 [176]
11. Effects of Calcination Temperature of Boron-Containing Magnesium O.. [175]
12. 氯氧镁水泥在特定水环境中的强度变化规律试验研究 [171]
13. Effects of H3PO4 and Ca(H2PO4)(2) on mechanical properties and wat.. [170]
14. 抗腐性氯氧镁水泥混凝土在高寒、高盐渍地区的研究及应用 [165]
15. 发泡剂对氯氧镁水泥材料的适宜性研究 [163]
16. Synthesis of different structured FePO4 for the enhanced conversio.. [162]
17. 碳化对加填料氯氧镁胶凝材料力学性能的影响 [160]
18. 用快速砂浆棒法评价Li_2CO_3与硝酸盐对ASR的长龄期抑制效果 [152]
19. One-pot synthesis of sandwich-like MgO@Carbon with enhanced sorpti.. [151]
20. Effects of citric acid on hydration process and mechanical propert.. [150]
21. Synthesis of X-architecture CeO2 for the photodegradation of methy.. [150]
22. Compressive strength of fly ash magnesium oxychloride cement conta.. [141]
23. KH550硅烷偶联剂的水解工艺研究 [139]
24. 原料配比对氯氧镁水泥固化砾石土干密度的影响 [135]
25. 快速砂浆棒法检测矿物掺合料与Li_2CO_3对ASR抑制作用的适用性评价 [134]
26. Research and Engineering Application of Salt Erosion Resistance of.. [134]
27. 氢氧化镁煅烧工艺和原料配比对氯氧镁水泥抗压强度的影响 [125]
28. 基于正交试验和响应面法优化煅烧法提锂副产物制备氯氧镁水泥材料的工艺.. [124]
29. 利用盐湖常见元素的助烧结作用绿色制备氧化镁及磷酸镁水泥 [123]
30. 原料质量配比对盐湖磷酸钾镁水泥性能和微观结构的影响 [117]
31. The effect of nano-silica on the properties of magnesium oxychlori.. [116]
32. Water-to-Cement Ratio of Magnesium Oxychloride Cement Foam Concret.. [114]
33. 粉煤灰掺量对氯氧镁水泥混凝土物理力学性能的影响 [114]
34. Promoting effect and mechanism of several inorganic salts on hydra.. [113]
35. A study on the salt attack performance of magnesium oxychloride ce.. [109]
36. Effects of fly ash, phosphoric acid, and nano-silica on the proper.. [108]
37. 外掺Cl对磷酸镁水泥离子溶出和孔结构的影响 [108]
38. Characterizing properties of magnesium oxychloride cement concrete.. [106]
39. 引气剂对延缓高海拔强碱环境下碱-硅酸反应的影响 [104]
40. Preparation of Low-Cost Magnesium Oxychloride Cement Using Magnesi.. [104]
41. Research on the properties of magnesium oxychloride cement prepare.. [101]
42. Effects of Water-to-Cement Ratios on the Properties of Magnesium P.. [97]
43. EFFECT OF ETHYL SILICATE ON THE WATER RESISTANCE OF MAGNESIUM OXYC.. [96]
44. Long-term mechanical properties and micro mechanism of magnesium o.. [96]
45. CuInS2 Mg(OH)(2) Nanosheets for the Enhanced Visible-Light Photoca.. [95]
46. Review of reactive magnesia-based cementitious materials Current d.. [95]
47. APPLICATION OF A NEW COMPUTATIONAL METHOD TO CALCULATE THE MIXTURE.. [94]
48. Sm2O3 nanoparticles coated with N-doped carbon for enhanced visibl.. [94]
49. Enhanced Visible-Light Photocatalytic Activity of Ag QDs Anchored .. [90]
50. THE COMPRESSIVE STRENGTH DEVELOPMENT OF MAGNESIUM OXYCHLORIDE CEME.. [89]
51. Enhanced photo-Fenton activity of Sm2O3-NiO heterojunction under v.. [89]
52. Enhancing the photocatalytic activity of Cu0.25Zn0.75S nanodisks b.. [88]
53. The Salt Attack Performance of Magnesium Oxychloride Cement Exposu.. [86]
54. MgO nanosheets with N-doped carbon coating for the efficient visib.. [76]
55. Investigation on the properties of magnesium oxychloride cement pr.. [74]
56. One-pot sulfurized synthesis of ZnIn2S4_S,N-codoped carbon composi.. [70]
57. Enhanced photo-Fenton degradation of tetracycline using TiO2-coate.. [69]
58. Solar-light induced photoreduction of CO2 using nonthermal plasma .. [64]
59. Flower-like Bi2S3-In2S3 heterojunction for efficient solar light i.. [62]
60. In-situ sulfurized In2S3_MoO3@MoS2 heterojunction for visible ligh.. [62]
61. THE EFFECT OF SILICA FUME ON THE DURABILITY OF MAGNESIUM OXYCHLORI.. [61]
62. Rare-earth oxides modified Mg-Al layered double oxides for the enh.. [60]
63. S-defected In2S3_ZnS nanospheres for enhancing solar-light photoca.. [60]
64. High-temperature sulfurized synthesis of MnxCd1-xS_S-kaolin compos.. [60]
65. Efficient solar-light induced photocatalytic capacity of Mg-Al LDO.. [59]
66. Efficient solar-light photocatalytic activity of FeS_S-doped MgO c.. [57]
67. Visible light-induced photo-Fenton dehydration of fructose into 5-.. [56]
68. Nonthermal plasma sulfurized CuInS2_S-doped MgO nanosheets for eff.. [56]
69. Efficient adsorption of ciprofloxacin using Ga2S3_S-modified bioch.. [55]
70. Synthesis of ZnFe2O4_B,N-codoped biochar via microwave-assisted py.. [53]
71. Nonthermal plasma-vulcanized flower-like ZnS_Zn-Al composites from.. [53]
72. Efficient solar-light photodegradation of tetracycline hydrochlori.. [49]
73. NiFe2O4 g-C3N4 heterojunction composite with enhanced visible-ligh.. [48]
74. Synthesis of X-architecture CeO2 for the photodegradation of methy.. [47]
75. Ag-decorated core-shell Sm2O3@TiO2 nanocomposites with enhanced vi.. [45]
76. Preparation and characterization of CuxZn1-xS nanodisks for the ef.. [44]
77. Magnesium Oxychloride Cement Prepared by the Byproduct of Li2CO3 f.. [38]
78. In2S3-NiS co-decorated MoO3@MoS2 composites for enhancing the sola.. [33]