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Keyphrases
Pulp
100%
Wood
100%
Kraft Pulp
100%
Spectroscopic Techniques
100%
Cellulose Crystallinity
87%
Residual Lignin
87%
Oxygen Delignification
75%
Lignin Structure
62%
Long Fiber
37%
Fiber Surface
37%
13C CPMAS NMR
37%
Ray Cells
37%
Lignin
25%
Cellulose
25%
Birch
25%
Ether Linkage
25%
Solid State
25%
Cellulose I
25%
Aryl Ethers
25%
Spruce
12%
Xylan
12%
Cellulose Nanofibrils
12%
Strength Properties
12%
Softwood
12%
Spent Liquor
12%
Structural Information
12%
Relative Proportion
12%
Fine Fraction
12%
No Significant Difference
12%
Pulping Process
12%
Sulfite
12%
Technical Lignin
12%
2D-HSQC
12%
Delignification
12%
Hemicellulose Content
12%
Pulp Yield
12%
Oxygen Effect
12%
Polymorph
12%
Condensed Lignin
12%
Chemical Pulp
12%
Fiber Fraction
12%
Fibril Aggregation
12%
Yield Properties
12%
Liquid State
12%
Relaxation Measurements
12%
Spin-lattice Relaxation
12%
2D to 3D
12%
NMR Studies
12%
HSQC-TOCSY
12%
Dibenzodioxocin
12%
Bleaching Sequences
12%
Original Structure
12%
Pulp Strength
12%
Swellability
12%
Soda-AQ Pulping
12%
Proton Spin
12%
Diphenylmethane
12%
Pulping Conditions
12%
Well-ordered
12%
Dipolar Dephasing
12%
Condensed Structure
12%
Condensed Aromatics
12%
Solution NMR
12%
Fine Fiber
12%
Polymeric Component
12%
In Cellulo Crystallization
12%
INIS
wood
100%
applications
100%
pulps
100%
cellulose
100%
nmr
100%
lignin
100%
fibers
84%
delignification
53%
oxygen
46%
comparative evaluations
23%
surfaces
23%
carbon 13
23%
interactions
15%
refining
15%
solids
15%
phenols
15%
ethers
15%
bleaching
15%
pines
7%
spruces
7%
solutions
7%
information
7%
optimization
7%
morphology
7%
xylans
7%
sodium carbonates
7%
spent liquors
7%
hemicellulose
7%
reactivity
7%
liquids
7%
yields
7%
methane
7%
aggregation
7%
drying
7%
cleavage
7%
sulfites
7%
crystallization
7%
protons
7%
spin-lattice relaxation
7%
condensed aromatics
7%
Material Science
Lignin
100%
Nuclear Magnetic Resonance
100%
Surface (Surface Science)
23%
Dephasing
7%
Kraft Pulp
7%
Cellulose Fibrils
7%