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南京工业大学 国内
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周 俊
教授、博士生导师
生物与制药工程学院
电子邮件
zhoujun
njtech.edu
cn
网站
https://sgxy.njtech.edu.cn/info/1057/4666.htm
h-index
4178
引用
39
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
(170)
相似简介
(6)
指纹
深入其中 Jun Zhou 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
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Chemical Engineering
Adsorption Characteristics
11%
Anaerobic Biochemical Reactor
8%
Anaerobic Digestion
91%
Bioanodes
6%
Biochar
45%
Biodegradation
11%
Bioelectrochemical System
6%
Biogas
100%
Bioleaching
54%
Biooxidation
7%
Calcite
5%
Calcium Carbonate
11%
Capillary Suction Time
5%
Carbon Dioxide
38%
Carbon Nanotube
8%
Carbonization
23%
Chemical Oxygen Demand
19%
Degradation Efficiency
13%
Denitrification Carbon Source
5%
Desulfurization
8%
Dewaterability
23%
Fenton
11%
Granular Activated Carbon
12%
Graphene
22%
Heavy Metal
45%
Hexavalent Chromium Removal
11%
High Performance Liquid Chromatography
13%
Hydrochar
24%
Lime
6%
Liquid Chromatography Mass Spectrometry
6%
Maximum Power Density
7%
Membrane Reactor
17%
Methane
10%
Microbial Fuel Cell System
12%
Modified Carbon Nanotubes
5%
Nanoparticle
35%
Oxidation Efficiency
7%
Oxidation System
6%
Polysaccharide
7%
Polystyrene
5%
Pyrolysis
6%
Sewage Sludge
28%
Sludge
86%
Sludge Anaerobic Digestion
9%
Sludge Dewaterability
20%
Sludge Dewatering
7%
Sludge Retention Time
6%
Solids Retention Time
6%
Wastewater Treatment
9%
Xylose
5%
Engineering
Aeruginosa
11%
Alkalinity
14%
Anaerobic Digestion
5%
Anions and Cation
5%
Bioanodes
5%
Bioelectricity
5%
Bioenergy
5%
Biofilm Formation
5%
Biogas
11%
Bioleaching
11%
Capacitive
5%
Carbon-Based Anode
5%
Chromium Removal
11%
Closed Circuit
5%
Electricity Generation
13%
Energy Development
6%
Energy Storage
5%
Epoxide
5%
Extracellular Polymeric Substance
8%
Fenton
5%
Full Scale Plant
5%
Gasification
5%
Heating Coil
5%
Heavy Metal
5%
Hexavalent Chromium
11%
Hydrolysate
5%
Leaching
5%
Membrane Reactor
5%
Methane
5%
Microbial Fuel Cell
45%
Microchannel
5%
Mixers (Machinery)
5%
Mols
13%
Multi-Walled Carbon Nanotube
5%
Municipal Sewage Sludge
5%
Nanoparticle
11%
One Step
5%
Optimal Condition
7%
Phase Composition
5%
Phenolics
5%
Photosynthetic Bacteria
8%
Plug Flow
5%
Primary Sludge
19%
Reduced Graphene Oxide
5%
Remediation
5%
Removal Efficiency
8%
Response Surface Methodology
7%
Retention Time
11%
Sludge Retention Time
5%
Solids Retention Time
5%