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Visits

1. Electrochemical oxidation of volatile organic compounds in all-sol.. [153]
2. Chemical Characteristics and Potential Sources of PM2.5 in Shahe C.. [113]
3. 室内生物气溶胶消杀措施及启示 [102]
4. Importance of controllable Al sites in CHA framework by crystalliz.. [99]
5. Understanding the knowledge gaps between air pollution controls an.. [98]
6. Promoting Effect of Mn on In Situ Synthesized Cu-SSZ-13 for NH3-SC.. [93]
7. A comparative study of the activity and hydrothermal stability of .. [92]
8. Contrasting trends of PM2.5 and surface-ozone concentrations in Ch.. [88]
9. Distinct NO2 Effects on Cu-SSZ-13 and Cu-SSZ-39 in the Selective C.. [86]
10. Silver incorporated into cryptomelane-type Manganese oxide boosts .. [85]
11. Improving the catalytic performance of ozone decomposition over Pd.. [82]
12. Size-segregated particle number and mass concentrations from diffe.. [81]
13. Role of NH3 in the Heterogeneous Formation of Secondary Inorganic .. [79]
14. Mechanism of the H-2 Effect on NH3-Selective Catalytic Reduction o.. [78]
15. Theory and practice of metal oxide catalyst design for the selecti.. [78]
16. 北京市二次有机气溶胶生成潜势的日变化规律 [77]
17. High-performance of Cu-TiO2 for photocatalytic oxidation of formal.. [76]
18. 左旋葡聚糖与OH自由基的反应动力学研究 [75]
19. 大气“霾化学”:概念提出和研究展望 [75]
20. Passive NO Adsorption on Hydrothermally Aged Pd-Based Small-Pore Z.. [74]
21. 混合气溶胶吸湿性研究 [73]
22. Hydrothermal aging alleviates the inhibition effects of NO2 on Cu-.. [73]
23. Recent advances in catalytic decomposition of ozone [73]
24. V_2O_5/CeTiO_x催化剂用于低温NH_3选择性催化还原NO_x [72]
25. Effects of alkali and alkaline earth metals on Cu-SSZ-39 catalyst .. [72]
26. Resolving the puzzle of single-atom silver dispersion on nanosized.. [72]
27. Nanodispersed Mn3O4/gamma-Al2O3 for NO2 Elimination at Room Temper.. [71]
28. Investigation of Water and Sulfur Tolerance of Precipitable Silver.. [71]
29. Precise control of post-treatment significantly increases hydrothe.. [71]
30. The way to enhance the thermal stability of V2O5-based catalysts f.. [71]
31. Tuning the Chemical State of Silver on Ag-Mn Catalysts to Enhance .. [71]
32. Tuning the fill percentage in the hydrothermal synthesis process t.. [71]
33. Improving the representation of HONO chemistry in CMAQ and examini.. [71]
34. 一种晶面暴露的二氧化钛及其制备方法和用途 [70]
35. Insights into Designing Photocatalysts for Gaseous Ammonia Oxidati.. [70]
36. 可见光光催化净化大气低浓度NOx [69]
37. Interfacial structure-governed SO2 resistance of Cu/TiO2 catalysts.. [69]
38. Efficient Conversion of NO to NO2 on SO2-Aged MgO under Atmospheri.. [68]
39. Facile homogeneous precipitation method to prepare MnO2 with high .. [68]
40. 有机胺在高岭土上的摄取动力学 [67]
41. Nanosize Effect of Al2O3 in Ag/Al2O3 Catalyst for the Selective Ca.. [67]
42. Detrimental role of residual surface acid ions on ozone decomposit.. [66]
43. Impacts of Mixed Gaseous and Particulate Pollutants on Secondary P.. [66]
44. Recent Progress on Improving Low-Temperature Activity of Vanadia-B.. [66]
45. Enhancing Oxygen Vacancies of Ce-OMS-2 via Optimized Hydrothermal .. [65]
46. Inhibitory role of excessive NH3 in NH3-SCR on CeWOx at low temper.. [65]
47. Investigation of the common intermediates over Fe-ZSM-5 in NH3-SCR.. [65]
48. Ozone and SOA formation potential based on photochemical loss of V.. [65]
49. Alkali resistance promotion of Ce-doped vanadium-titanic-based NH3.. [63]
50. Silver Valence State Determines the Water Tolerance of Ag/Al2O3 fo.. [63]
51. Synergistic Effect of TiO2-SiO2 in Ag/Si-Ti Catalyst for the Selec.. [63]
52. The smart surface modification of Fe2O3 by WOx for significantly p.. [63]
53. Investigation of Suitable Templates for One-Pot-Synthesized Cu-SAP.. [63]
54. 立足科研项目管理 提升科学传播质量 [62]
55. A superior Fe-V-Ti catalyst with high activity and SO2 resistance .. [62]
56. Hydrothermal Stability Enhancement of Al-Rich Cu-SSZ-13 for NH3 Se.. [62]
57. 一种钒钛氧化物催化剂及其制备方法和用途 [61]
58. US-China Collaboration is Vital to Global Plans for a Healthy Envi.. [61]
59. 一种钒修饰的铁基活性炭催化剂、制备方法及其用途 [60]
60. 一种制氢催化剂 [60]
61. The effect of crystallite size on low-temperature hydrothermal sta.. [60]
62. 一种Cu#SSZ#13催化剂的制备方法及其用途 [59]
63. 我国机动车排放VOCs及其大气环境影响 [59]
64. Palladium supported on low-surface-area fiber-based materials for .. [59]
65. Insight into the origin of sulfur tolerance of Ag/Al2O3 in the H-2.. [59]
66. Promotion effect of cerium doping on iron-titanium composite oxide.. [59]
67. Drivers of improved PM2.5 air quality in China from 2013 to 2017 [58]
68. Novel CeMnaOx catalyst for highly efficient catalytic decompositio.. [58]
69. Role of dimethyl ether in incipient soot formation in premixed eth.. [58]
70. 锰前驱体对OMS-2催化剂的结构和催化分解臭氧活性影响 [57]
71. Oxygen Vacancies Induced by Transition Metal Doping in gamma-MnO2 .. [57]
72. Role of Carbonaceous Aerosols in Catalyzing Sulfate Formation [57]
73. 中国重型柴油车后处理技术研究进展 [57]
74. Selective catalytic reduction of NOx with NH3: opportunities and c.. [57]
75. Morphology-Dependent Catalytic Performance of NbOx/CeO2 Catalysts .. [56]
76. Identification of a Facile Pathway for Dioxymethylene Conversion t.. [56]
77. 二氧化钛光催化净化氨气的研究 [55]
78. Pd/γ-Al_2O_3催化剂催化氧化邻-二甲苯 [55]
79. 气溶胶相氧化过程对α-蒎烯光氧化和臭氧氧化SOA生成的影响 [55]
80. Effects of ultrasonic treatment on dithiothreitol (DTT) assay meas.. [55]
81. 一种贵金属负载型ZSM#5分子筛及其制备方法和应用 [54]
82. A Low-Temperature Route Triggered by Water Vapor during the Ethano.. [54]
83. Effects of NO2 Addition on the NH3-SCR over Small-Pore Cu-SSZ-13 Z.. [54]
84. Sodium Enhances Ir/TiO2 Activity for Catalytic Oxidation of Formal.. [54]
85. Effect of treatment atmosphere on the vanadium species of V/TiO2 c.. [54]
86. Effects of SO2 on Cu-SSZ-39 catalyst for the selective catalytic r.. [54]
87. Photochemical Aging of Atmospheric Fine Particles as a Potential S.. [54]
88. 一种表面硫酸化的氧化铁催化剂、制备方法及其用途 [53]
89. 一种钒铈氧化物催化剂、制备方法及其用途 [53]
90. 光照对SO_2在矿质氧化物表面非均相反应的影响 [53]
91. Hydrothermal Stability of CeO2-WO3-ZrO2 Mixed Oxides for Selective.. [53]
92. Specific Role of Potassium in Promoting Ag/Al2O3 for Catalytic Oxi.. [53]
93. Deactivation of Cu-SSZ-13 in the presence of SO2 during hydrotherm.. [53]
94. Secondary organic aerosol formation from the OH-initiated oxidatio.. [53]
95. Effect of support preparation with different concentration precipi.. [53]
96. Formaldehyde Oxidation on Pd/TiO(2)Catalysts at Room Temperature: .. [53]
97. The role of H2O in the removal of methane mercaptan (CH3SH) on Cu/.. [53]
98. 一种锰基材料及其制备方法和用途 [52]
99. Insight into the Role of Pd State on Pd-Based Catalysts in o-Xylen.. [52]
100. Air Pollutant Correlations in China: Secondary Air Pollutant Respo.. [52]

Downloads

1. Distinct NO2 Effects on Cu-SSZ-13 and Cu-SSZ-39 in the Selective C.. [42]
2. 一种晶面暴露的二氧化钛及其制备方法和用途 [40]
3. 室内生物气溶胶消杀措施及启示 [38]
4. 中国重型柴油车后处理技术研究进展 [35]
5. Promoting Effect of Mn on In Situ Synthesized Cu-SSZ-13 for NH3-SC.. [35]
6. 北京市二次有机气溶胶生成潜势的日变化规律 [32]
7. Role of NH3 in the Heterogeneous Formation of Secondary Inorganic .. [32]
8. A comparative study of the activity and hydrothermal stability of .. [32]
9. Recent advances in catalytic decomposition of ozone [32]
10. Electrochemical oxidation of volatile organic compounds in all-sol.. [31]
11. 一种用于NH3-SCR反应的复合催化剂及其制备方法和用途 [31]
12. Tuning the fill percentage in the hydrothermal synthesis process t.. [31]
13. V_2O_5/CeTiO_x催化剂用于低温NH_3选择性催化还原NO_x [30]
14. 混合气溶胶吸湿性研究 [30]
15. 一种制氢催化剂 [30]
16. Importance of controllable Al sites in CHA framework by crystalliz.. [30]
17. 有机胺在高岭土上的摄取动力学 [29]
18. 气溶胶相氧化过程对α-蒎烯光氧化和臭氧氧化SOA生成的影响 [29]
19. Silver Valence State Determines the Water Tolerance of Ag/Al2O3 fo.. [29]
20. Improving the catalytic performance of ozone decomposition over Pd.. [29]
21. Facile homogeneous precipitation method to prepare MnO2 with high .. [29]
22. Theory and practice of metal oxide catalyst design for the selecti.. [29]
23. 左旋葡聚糖与OH自由基的反应动力学研究 [28]
24. Hydrothermal Stability of CeO2-WO3-ZrO2 Mixed Oxides for Selective.. [28]
25. High-performance of Cu-TiO2 for photocatalytic oxidation of formal.. [28]
26. Inhibitory role of excessive NH3 in NH3-SCR on CeWOx at low temper.. [28]
27. Passive NO Adsorption on Hydrothermally Aged Pd-Based Small-Pore Z.. [28]
28. The way to enhance the thermal stability of V2O5-based catalysts f.. [28]
29. 一种钒铈氧化物催化剂、制备方法及其用途 [27]
30. Silver incorporated into cryptomelane-type Manganese oxide boosts .. [27]
31. A mini-review on the role of quasi-compounds in catalysis The ammo.. [27]
32. Parameterization of heterogeneous reaction of SO2 to sulfate on du.. [27]
33. Precise control of post-treatment significantly increases hydrothe.. [27]
34. 二氧化钛光催化净化氨气的研究 [26]
35. 一种钒修饰的铁基活性炭催化剂、制备方法及其用途 [26]
36. 一种Cu#SSZ#13催化剂的制备方法及其用途 [26]
37. 锰前驱体对OMS-2催化剂的结构和催化分解臭氧活性影响 [26]
38. 光照对SO_2在矿质氧化物表面非均相反应的影响 [26]
39. Specific Role of Potassium in Promoting Ag/Al2O3 for Catalytic Oxi.. [26]
40. 铁铈钛复合氧化物催化剂用于NH_3-SCR净化NO_x性能研究 [26]
41. Hydrothermal Stability Enhancement of Al-Rich Cu-SSZ-13 for NH3 Se.. [26]
42. Identification of a Facile Pathway for Dioxymethylene Conversion t.. [26]
43. Impacts of Mixed Gaseous and Particulate Pollutants on Secondary P.. [26]
44. Insights into Designing Photocatalysts for Gaseous Ammonia Oxidati.. [26]
45. Novel CeMnaOx catalyst for highly efficient catalytic decompositio.. [26]
46. 可见光光催化净化大气低浓度NOx [25]
47. 用于氨选择性催化还原氮氧化物的过渡金属掺杂的铈钛复合氧化物催化剂 [25]
48. 一种锰基材料及其制备方法和用途 [25]
49. A laboratory study on the hygroscopic behavior of H2C2O4-containin.. [25]
50. Detrimental role of residual surface acid ions on ozone decomposit.. [25]
51. Interfacial structure-governed SO2 resistance of Cu/TiO2 catalysts.. [25]
52. Investigation of Suitable Templates for One-Pot-Synthesized Cu-SAP.. [25]
53. Resolving the puzzle of single-atom silver dispersion on nanosized.. [25]
54. 一种Cu-SAPO-34分子筛催化剂、制备方法及其用途 [24]
55. 一种铈钼锆复合氧化物催化剂、其制备方法及用途 [24]
56. 一种钒钛氧化物催化剂及其制备方法和用途 [24]
57. 用于气#固相电催化反应的反应器及其消除VOCs的方法 [24]
58. A Low-Temperature Route Triggered by Water Vapor during the Ethano.. [24]
59. Alkali resistance promotion of Ce-doped vanadium-titanic-based NH3.. [24]
60. 一种光催化氧化氨气的方法 [24]
61. The effect of crystallite size on low-temperature hydrothermal sta.. [24]
62. Effects of alkali and alkaline earth metals on Cu-SSZ-39 catalyst .. [24]
63. Pd/γ-Al_2O_3催化剂催化氧化邻-二甲苯 [23]
64. 一种贵金属负载型ZSM#5分子筛及其制备方法和应用 [23]
65. 我国机动车排放VOCs及其大气环境影响 [23]
66. Deactivation of Cu-SSZ-13 in the presence of SO2 during hydrotherm.. [23]
67. Experimental and DFT study of the adsorption of N2O on transition .. [23]
68. Influence of functional groups on toxicity of carbon nanomaterials [23]
69. Chemical Characteristics and Potential Sources of PM2.5 in Shahe C.. [23]
70. Enhancing Oxygen Vacancies of Ce-OMS-2 via Optimized Hydrothermal .. [23]
71. Hydrothermal aging alleviates the inhibition effects of NO2 on Cu-.. [23]
72. Quantitative determination of the Cu species, acid sites and NH3-S.. [23]
73. Size-segregated particle number and mass concentrations from diffe.. [23]
74. 一种铈钛负载钒催化剂、制备方法及其用途 [22]
75. Nanosize Effect of Al2O3 in Ag/Al2O3 Catalyst for the Selective Ca.. [22]
76. 过渡金属掺杂的γ-MnO_2分解臭氧的性能研究 [22]
77. Nanodispersed Mn3O4/gamma-Al2O3 for NO2 Elimination at Room Temper.. [22]
78. Recent advances in three-way catalysts of natural gas vehicles [22]
79. Photochemical Aging of Atmospheric Fine Particles as a Potential S.. [22]
80. 一种表面硫酸化的氧化铁催化剂、制备方法及其用途 [21]
81. Synergistic Effect of TiO2-SiO2 in Ag/Si-Ti Catalyst for the Selec.. [21]
82. 一种钒钛氧化物催化剂及其制备方法和应用 [21]
83. Improvement of low-temperature catalytic activity over hierarchica.. [21]
84. Secondary organic aerosol formation from the OH-initiated oxidatio.. [21]
85. Contrasting trends of PM2.5 and surface-ozone concentrations in Ch.. [21]
86. Effects of SO2 on Cu-SSZ-39 catalyst for the selective catalytic r.. [21]
87. Influence of atmospheric conditions on sulfuric acid-dimethylamine.. [21]
88. Role of dimethyl ether in incipient soot formation in premixed eth.. [21]
89. Tuning the Chemical State of Silver on Ag-Mn Catalysts to Enhance .. [21]
90. Effects of NO2 Addition on the NH3-SCR over Small-Pore Cu-SSZ-13 Z.. [20]
91. Facet-dependent performance of anatase TiO2 for photocatalytic oxi.. [20]
92. Role of Carbonaceous Aerosols in Catalyzing Sulfate Formation [20]
93. The smart surface modification of Fe2O3 by WOx for significantly p.. [20]
94. 氮氧化物选择性催化还原研究新进展 [20]
95. 一种贵金属负载型催化剂及其制备方法和用途 [20]
96. Drivers of improved PM2.5 air quality in China from 2013 to 2017 [20]
97. Effects of ultrasonic treatment on dithiothreitol (DTT) assay meas.. [20]
98. Differences of the oxidation process and secondary organic aerosol.. [20]
99. Enhancement of secondary organic aerosol formation and its oxidati.. [20]
100. Facile synthesis of Ag-modified manganese oxide for effective cata.. [20]