In ages >45 years, the prevalence of COPD according to the BTS guidelines was 8%, and it was 14% according to the GOLD criteria. Fifty percent of elderly smokers had developed COPD. The large majority of subjects having COPD were symptomatic, while the proportion of those diagnosed as having COPD or similar diagnoses was small.
The effect of pressure on the relaxation processes in
poly(propylene glycol) of number-average
molecular weights 400 and 4000 g mol-1
(PPG-400 and PPG-4000) has been investigated using
dielectric
spectroscopy as well as thermal conductivity and heat capacity
measurements. The relaxations associated
with segmental motions within the polymer chain (α relaxation) and
whole chain motions (α‘ relaxation)
have been studied in the temperature range 200−400 K for pressures up
to 2 GPa. The two processes
display slightly different sensitivities to pressure, and as a
consequence, are better separated at high
pressures. As a result, high-pressure data exhibit the α‘
relaxation also in PPG-400, whereas previous
investigations at atmospheric pressure have detected it only in PPG of
molecular weights above about
1000 g mol-1. At atmospheric pressure,
the values for
(∂T/∂p)τ
=1s of
the α relaxation are, respectively,
140 and 192 K GPa-1 for PPG-400 and PPG-4000,
where τ is the relaxation time. Because of the
difference
in (∂T/∂p)τ, the relaxation of
the α motions and therefore the glass-transition temperature exhibits
a
more significant dependence on molecular weight at high pressures.
At 295 K and 0.3 GPa, the activation
volumes for the α and α‘ processes of PPG-4000 are about the same
(≈45 cm3 mol-1). At the
same
conditions, the activation volume for the α process of PPG-400 is
about half of that for PPG-4000. An
analysis of the α relaxation in terms of the strong-fragility
classification shows that the degree of fragility
of both PPG-400 and PPG-4000 increases slightly with increasing
pressure.
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