Keyphrases
Formic Acid
83%
Formic Acid Dehydrogenation
50%
MnOx Catalysts
50%
Regeneration Strategy
50%
Synthesis Study
50%
Chitosan
50%
Glucose Oxidation
50%
Oxygen Deficiency
50%
Characterization Studies
50%
Methylene Blue
50%
Bimetallic Nanoparticles
50%
Adsorption Behavior
50%
Wastewater Remediation
50%
Nitrogen-doped Carbon Catalyst
50%
Biochar Adsorption
50%
Room Temperature
50%
Enhanced Oxidation
50%
Catalyst Regeneration
50%
Tuneability
50%
Kinetic Study
50%
Catalyst Characterization
50%
Iron Oxide
50%
Novel Catalyst
50%
Fermentative Hydrogen Production
50%
Catalytic Kinetics
50%
Dye Wastewater
50%
Digestate
50%
Mechanistic Insight
50%
Catalyst Synthesis
50%
Hydrogen Production from Biomass
50%
Structure Basis
50%
Acid-base Properties
50%
Formic Acid Production
50%
MnOx
37%
Methyl Red
37%
MgO Catalyst
37%
Palladium Nanoparticles (PdNPs)
33%
Hydrogen Production Process
33%
Green Hydrogen Production
33%
Heterogeneous Catalyst
25%
Biochar
25%
Dark Fermentative Hydrogen Production
25%
Biomass Oxidation
25%
Hydrogen Energy Technologies
16%
Palladium Loading
16%
Formic Acid Decomposition
16%
Hydrogen Carrier
16%
N-doped Biochar
16%
Ultrafine Palladium Nanoparticles
16%
Carrier Interaction
16%
Improved Kinetics
16%
Comprehensive Kinetics
16%
Metal Carrier
16%
Reaction Time
16%
Excellent Catalytic Performance
16%
Loading Time
16%
Sustainable Development Goals
16%
C-H Bond
16%
Hydrogen Yield
16%
Activation Energy
16%
Reaction Rate
16%
Catalytic Performance
16%
Well-distributed
16%
Scission
16%
Simulation Calculation
16%
Hydrogen Pathway
16%
Hydrogen Production System
15%
Nickel Oxide
15%
Birnessite
12%
Regeneration Treatments
12%
Simple Precipitation Method
12%
Catalyst Recovery
12%
Environmental Solutions
12%
Multi-interaction
12%
Digestate Management
12%
Modified Biochar
12%
High Concentration
12%
Calcination Method
12%
Acid Yield
12%
Nitric Acid
12%
Precipitation Method
12%
Adsorption Performance
12%
Organic Adsorption
12%
Renewable Biomass
12%
Molecular Oxygen Activation
12%
Acidic pH
12%
Sustainable Biomass
12%
Reaction Conditions
12%
Valuable Insight
12%
Oxidation Mechanism
12%
Innovative Technique
12%
Oxidative Activity
12%
Interaction Process
12%
Organic Dyes
12%
Valuable Resources
12%
Oxygen Vacancy Concentration
12%
Micro-mesoporous Structure
12%
Dye Adsorption
12%
Specific Surface Area
12%
Mesoporous
12%
Biomass Materials
12%
Adsorption Capacity
12%
Dye Molecules
12%
Alkaline pH
12%
Synthetic Wastewater
12%
O2 Activation
12%
PH Control
12%
Acidization
12%
Sustainable Solutions
12%
Adsorption
12%
Oxygen Concentration
12%
Oxygen Vacancy
12%
Molecular Oxygen
12%
Water Pollution
12%
Adsorbent
12%
Low Temperature
12%
Vitamin C
12%
Adsorption Rate
12%
Mg2+
12%
Mixed Sugars
12%
Selective Dissociation
12%
Hydrogen from Biomass
12%
High Charge Density
12%
In Situ Hydrogen Production
12%
C-C Cleavage
12%
Enterobacter Species
10%
Bio-H2 Production
10%
Microbial Community
10%
Bimetallic Nanocomposites
5%
Ni Availability
5%
Hydrogen-producing Bacteria
5%
Hydrogenase Activity
5%
Species Proportion
5%
Microbiome Structure
5%
Bimetallic Nanomaterials
5%
Hydrogen Producers
5%
Transfer Deficit
5%
Co-precipitation Method
5%
Carbon Source
5%
Fermentation Technology
5%
Inorganic Nanoparticles
5%
Controlled Experiment
5%
Sustainable Use
5%
Microbial Community Analysis
5%
Oxide Composite
5%
Electron Transfer
5%
Coordinate System
5%
Electron Energy
5%
Living Cells
5%
Biohydrogen
5%
Energy Loss
5%
Glycolytic
5%
Physical Mixture
5%
Organic Waste
5%
Iron-nickel Alloy
5%
Transmembrane
5%
Hydrogen (H2) Production
5%
Oxide-oxide
5%
Fe Availability
5%
Fermentative Hydrogen
5%
Nanomaterials
5%
Chemical Engineering
Formic Acid
100%
Nanoparticle
75%
Biochar
58%
Kinetic Study
50%
Dehydrogenation
50%
Dye Wastewater
50%
Chitosan
50%
Hydrogen Production
50%
Hydrogen Production from Biomass
50%
Formic Acid Production
50%
Nickel Oxide
30%
Iron Oxide
30%
MgO Catalyst
30%
Molecular Oxygen
25%
Calcination
12%
Nitric Acid
12%
Adsorption Performance
12%
Organic Pollutant
12%
Hydrogen (H2) Production
10%
Co-precipitation Method
10%
Hydrogen Yield
8%