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南京工业大学 国内
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研究单位
科研成果
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仲 兆祥
二级教授、博士生导师
化工学院
电子邮件
zhongzx
njtech.edu
cn
网站
https://hgy.njtech.edu.cn/info/1057/2800.htm
h-index
6043
引用
42
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2006
2025
每年的科研成果
综述
指纹
网络
科研成果
(247)
相似简介
(7)
指纹
深入其中 Zhaoxiang Zhong 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Material Science
Aluminum Oxide
12%
Block Copolymer
7%
Carbon Dioxide
10%
Carbon Fiber
7%
Carbon Nanotube
20%
Catalyst Activity
8%
Ceramic Membrane
100%
Cerium Oxide
8%
Cobalt(II,III) Oxide
14%
Composite Material
23%
Composite Membrane
25%
Contact Angle
11%
Fenton
14%
Flexural Strength
36%
Flue Gas
17%
Gas Permeability
13%
Graphitic Carbon Nitride
7%
Hydrogen Peroxide
8%
Hydrothermal Synthesis
14%
Manganese
9%
Metal Oxide
11%
Metal-Organic Framework
8%
Nanofiber
45%
Nanoparticle
26%
Nanorod
15%
Nanosheet
11%
Nanostructure
9%
Nanostructured Material
9%
Oxidation Reaction
18%
Oxide Compound
25%
Palladium
7%
Particulate Matter
36%
Polyphenylene
9%
Pore Size
50%
Pore Structure
19%
Porous Ceramics
29%
Porous Silicon
10%
Selective Catalytic Reduction
14%
Silicon Carbide
71%
Silicon Dioxide
10%
Sintering
77%
Sintering Temperature
30%
Sodium
14%
Strength of Materials
11%
Surface (Surface Science)
96%
Thermal Shock Resistance
12%
Titanium Dioxide
41%
Wettability
30%
Zeolite
14%
ZnO
41%
Chemical Engineering
Aerosol Filtration
10%
Ammonia-Selective Catalytic Reduction
21%
Aromatic Compound
11%
Atmospheric Aerosol
50%
Atomic Layer Deposition
22%
Calcination
9%
Carbon Nanotube
18%
Carbon Nitride
11%
Catalytic Membrane
63%
Chemical Oxygen Demand
11%
Desulfurization
9%
Distillation
17%
Emulsification
16%
Fenton
17%
Flux Decline
10%
Fouling
58%
Free Energy
10%
Gas Fuel Purification
12%
Hierarchical Porous
11%
High Removal Efficiency
8%
Hydrogen Peroxide
23%
Hydrogenation
11%
Manganese Oxide
9%
Membrane Filter
28%
Membrane Fouling
24%
Membrane Pore Size
14%
Membrane Reactor
34%
Membrane Technology
16%
Membranes Separation
13%
Methanol
10%
Microfiltration
26%
Nanofiber Membrane
52%
Nanofibrous Membrane
25%
Nanoparticle
45%
Nanorod
20%
Nanosheet
12%
Nanostructure
14%
Oil-Water Emulsion
26%
Particular Matter 2.5
27%
Polydimethylsiloxane
11%
Polypropylene
11%
Polytetrafluoroethylene
67%
Porcellanite
14%
Pure Water Flux
10%
Silicon Carbide
61%
Simultaneous Removal
9%
Titanium Dioxide
53%
Ultrafiltration
34%
Wastewater Treatment
18%
Zeolitic Imidazolate Framework
29%
Engineering
Air Purification
10%
Atmospheric Aerosol
13%
Atomic Layer Deposition
12%
Average Pore Size
8%
Bending Strength
8%
Carbon Nanotube
14%
Catalyst Layer
5%
Desulphurisation
7%
Droplet Size
5%
Engineering
7%
Expanded Polytetrafluoroethylene
7%
Experimental Result
11%
Filtration Efficiency
11%
Filtration Process
7%
Flue Gas
8%
Fouling
6%
Fouling Mechanism
6%
Gas Fuel Purification
11%
Intermediate Layer
6%
Layer Separation
8%
Low-Temperature
7%
Melting Point
7%
Membrane Distillation
9%
Membrane Fouling
7%
Membrane Surface
20%
Microfiltration
10%
Nanofiber
5%
Nanofiltration Membrane
8%
Nanomaterial
6%
Nanoparticle
11%
Oil-Water Emulsion
9%
One Step
7%
Particular Matter 2.5
11%
Phase Composition
6%
Phase-Inversion
7%
Poly-Phenylene Sulphide
7%
Polydimethylsiloxane
8%
Porosity
26%
Pressure Drop
16%
Pt Nanoparticles
7%
Pure Water
11%
Removal Efficiency
6%
Silicon Dioxide
11%
Sintering
30%
Sintering Aid
6%
Sintering Temperature
9%
Support Layer
7%
Temperature Range
5%
Ultrafiltration
11%
Wastewater Treatment
7%