Environmental Engineering Reference
In-Depth Information
P
Probability
q
Net.particle.charge
r
Effective.particle.radius
s
Solvent
t
Time
T
Absolute.temperature
W
Stability.coeficient
X
Hypothetical.nanoparticle.reactant
[ X ] f .
Concentration.of.nanoparticle.in.sol.form
[ X ] s .
Concentration.of.nanoparticle.in.solid.(non-sol).form
[ X ] aq .
Aqueous.concentration
v x
Velocity.of. X
V p
Particle.Volume
V x
Volume
Y
Hypothetical.product
z
Particle.separation
z 0 .
Distance.of.minimal.repulsion
a.
Aggregation.eficiency
Κ.
Inverse.Debye.length
η.
Viscosity
ρ aq .
Aqueous.density
ρ f .
Fluid.density
ρ x .
Particulate.density
ζ.
Zeta.potential
τ.
Time-step.for.the.duration.of.a.reaction
µ.
Potential.reaction.index
e 0 .
Vacuum.reference.dielectric.constant
e s .
Dielectric.constant.of.the.medium
h μ .
Number.of.distinct.reaction.combinations.for.reaction.μ
ћ.
Planck's.constant
ReFeRenCes
.
1.. Nurmi,.J.T.,.P.G..Tratnyek,.V..Sarathy,.et.al..2005..Characterization.and.properties.of.
metallic.iron.nanoparticles:.spectroscopy,.electrochemistry.and.kinetics.. Environ. Sci.
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.
2.. French,.R.H..2000..Origins.and.applications.of.London.dispersion.forces.and.Hamaker.
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3.. Baker,.M.N..1948..The.Quest.for.Pure.Water:.The.History.of.Water.Puriication.from.
the.Earliest.Records.to.the.Twentieth.Century,.p..299-320..New.York:.The.American.
Water.Works.Association,.Inc.
.
4.. Ackler,.H.D.,.R.H..French,.and.Y.M..Chiang..1996..Comparisons.of.Hamaker.constants.
for.ceramic.systems.with.intervening.vacuum.or.water:.from.force.laws.and.physical.
properties.. J. Colloid Interface Sci., .179:460-469.
.
5.. Rao,.C.N..R.,.B.C..Satishkumar,.A..Govindaraj,.and.M..Nath..2001..Nanotubes.. Chem.
Phys. Chem., .2:78-105.
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6.. Rudalevige,. T.,. A.H.. Francis,. and. R.. Zand.. 1998.. Spectroscopic. studies. of. fullerene.
aggregates.. J. Phys. Chem. A, 102:9797-9802.
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